Electromechanical and solid-state relays Zelio Relay. Catalogue April 2010

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1 Electromechanical and solid-state relays Zelio Relay Catalogue April 00

2 Reduce the size of your enclosures and, at the same time, increase machine reliability The new Zelio Relay items Electromechanical relays RSL Only mm wide, thus saving considerable space in your enclosures mm wide Solid-state relays SSR Unlimited service life provided by electronic technology Unlimited service life Contents Presentation Choose compactness with Zelio Relay RSL... - Choose long life and silent operation with Zelio Relay SSR... - Electromechanical and solid-state relays panorama... - Technical characteristics Zelio Relay RSL... - Zelio Relay RSB, RXM, RUM, RPM... - Zelio Relay ABR, ABS Zelio Relay SSR Make the most of your energy

3 Choose compactness with Zelio Relay RSL > Reliability in any situation Protection integrated in the socket The assurance of reliable protection of the relay irrespective of the supply voltage used. LED indicator Only mm wide, thus reducing the size of your enclosures > A solution for any application Power on and relay status LED indicator. «Standard» and «low level» version relays For high breaking capacity or low level current application requirements. Up to A breaking capacity A complete offer > An offer with maximum flexibility, comprising: complete products: a single reference for a relay mounted on a socket, products for customer assembly: select the relay and associated socket according to your application. > Wide choice of sockets available covering a range of voltages from to 0 V. An offer that meets the most demanding standards Conformity with the European RoHS (Restriction of Hazardous Substances) directive. Conformity to international standards IEC/EN 0-, UL0, CSA C. N, GOST. > Simplicity of installation and cabling Simple maintaining of relay in socket and its release/removal Using locking/unlocking lever. Simplification of cabling Commoning link available as accessory. Simple mounting on DIN rail Choice of connection techniques Suitable for the majority of your applications. 00% RoHS Schneider Electric commits itself to reducing the environmental impact of its products Screw connector Spring terminal

4 Choose long life and silent operation with Zelio Relay SSR > Distinctive indication A green LED on the front face of the products provides instant indication of the relay input status. > Heat exchange guaranteed The new solid-state relays SSR with SCR (Semiconductor Controlled Rectifier) outputs offer you two alternatives: SSRD range Directly mounted with heat sink to provide heat exchange, they are easily mounted by clipping directly onto DIN rail and can also be panel mounted. SSRP range Panel mounted, either on their own or combined with a heat sink for applications requiring considerable heat exchange. > High performance High breaking capacities From 0 to A for relays SSRP From 0 to A for relays SSRD Wide supply voltage range From to VDC and 0 to 0 VAC Outputs suited to applications From to 0 VAC and to 0/0 VAC Extreme compactness Only. mm and up to. mm wide Unlimited service life No preventive maintenance, relays SSR have a unlimited service life Silence of electronic technology Complete silence when switching Insensitive to vibration Even in the event of excessive vibration, the relay will not change state Unlimited service life due to electronic relay technology Complete silence when switching providing suitability for building and hospital applications High switching frequency particularly on packaging and textile machines SSRAH ASSEMBLED IN MEXICO 0 > Conformity to international standards SSRP relay mounted on heat sink with thermal interface 00% RoHS Schneider Electric commits itself to reducing the environmental impact of its products

5 Panorama Zelio Relay Electromechanical relays Solid-state relays Number CO contacts CO or CO or CO, or CO, or CO,, or CO NO NO NO Current A -- A - A -0- A 0 A A A 0... A 0... A Mounting Plugs into socket On DIN rail Plugs into socket On DIN rail On DIN rail On pannel References RSL RSB ABR RXM RUM RPM ABS SSRD SSRP Pages to to 0 to to 0 to 0 to 0 to 0 to 0 to Electromechanical relay advantages Wide choice of number of contacts (up to ) Easy installation and maintenance: Plug-in relay for socket mounting (universal format) Contact status mechanical indicator and Relay On LED indicator Lockable Test button for testing relay operation Electrically separated inputs and outputs, allowing different voltages Solid-state relay (SSR) advantages Unlimited service life Wide supply voltage range and high breaking current (up to A), suited to packaging and textile machines Relay On LED indicator Completely silent switching, providing suitability for building and hospital applications Insensitive to vibration

6 Selection guide RSL slim interface relays Application PF00 Plug-in relays Number and type of contacts / conventional thermal current (Ith on N/O contact) C/O / A Control voltage range c 0 V Contact type Standard Yes Low level Yes Type of pins Operating voltage Durability (operating cycles) Relay type Flat (PCB type, reinforced) Up to a 00 V / c 00 V Electrical, resistive load Mechanical, no-load RSL pbpd Pages PF000 Conventional thermal current (Ith) Connection LED A Screw connector Yes Protection circuit Yes Accessories Socket identification legend Yes Bus jumper Yes Partition plate Yes Socket type RSL ZVpp Pages PF000 0 Slim interface relays, pre-assembled () RSL PVpp Pages () With a standard relay.

7 PF000 A Spring terminals Yes Yes Yes Yes Yes RSL ZRpp PF000 RSL PRpp 0

8 Presentation RSL slim interface relays Presentation RSL slim interface relays offer the advantages of compact size and modular design: their slim width ( mm) saves space when mounting on a rail at the back of an enclosure. RSL relays are available in two versions: b pre-assembled range: a single reference comprising a standard relay mounted on its socket. v The socket includes a protection circuit (against reverse polarity and surge) and an LED indicator as standard. v Two types of connector are available for wire connection: screw connectors or spring terminals. v This pre-assembled solution covers a wide range of operating voltages from to 0 V. b range for customer assembly: v The relay (standard or low level) and the socket are selected, as required, according to the operating voltage of the application. v For maintenance: an RSL slim relay can be replaced without any need to disconnect the socket wiring. Description RSL slim interface relays, pre-assembled A standard relay with C/O contact. Lever for retaining, or easy withdrawal of the relay from its socket. Sockets: wire connection by screw connector or by spring terminals. All sockets have a built-in protection circuit and LED indicator. PF00 RSL slim interface relay PF000 Five flat, reinforced pins (PCB type). Sockets for RSL slim interface relays Five female contacts for the relay pins. Retaining lever with marker label. Wire connection by screw connector or by spring terminals. Protection circuit and LED indicator (built into the socket) Locating slot for mounting on rail. 0 PF00 Presentation : page 0 Characteristics : page References : page Dimensions, schemes : page 0

9 Characteristics RSL slim interface relays General characteristics Conforming to standards IEC 0-, UL 0, CSA C- No. Product certifications UL, CSA, GOST Ambient air temperature around the device Storage C Relay only: Relay with packaging: Operation C Vibration resistance conforming to IEC/EN 00-- In operation 0 gn Not operating gn Degree of protection Conforming to IEC/EN 0 IP 0 (Relays) IP 0 (Sockets) Shock resistance conforming to IEC/EN 00-- Opening 0 gn Closing gn Protection category RT III Mounting position Any Insulation characteristics Rated insulation voltage (Ui) V 0 (IEC) Rated impulse withstand voltage (Uimp) kv Dielectric strength (rms voltage) Between coil and contact a V 000 Between contacts a V 000 0

10 Characteristics (continued) RSL slim interface relays Contact characteristics Relay type RSLABppp RSLGBppp Number and type of contacts C/O standard C/O low level Contact materials AgSnO AgSnO - gold plated Conventional thermal current (Ith) Rated operational current in utilisation categories AC- and DC- For ambient temperature y C A Conforming to IEC N/C A N/O A Conforming to UL A Switching current Minimum ma 00 (at 0 mw) Switching voltage Rated a V 0 0 Maximum V a 00, c 00 a 0, c 00 Minimum V (at 0 mw) Nominal load (resistive) A / a 0 V, 0. mm Switching capacity Maximum a VA 00 c W 0 (depending on the voltage) Maximum operating rate In operating cycles/hours Minimum mw 0 0 No-load 000 Under load 0 Mechanical durability In millions of operating cycles 0 Electrical durability In millions of operating cycles Resistive load Inductive load See curves below 0.0 (N/O contact /0 V, A, AC-) Maximum switching capacity on c load Electrical durability Voltage c Cycles 0 0 Resistive load a 0V Resistive load 0 AgSnO Coil characteristics Average consumption c W 0. Drop-out voltage threshold c u 0.0 Uc Operating time (response time) Between coil energisation and making of the On-delay contact c ms max 0 0 0, 0, 0, 0 0 Current c 0 0 Switching current (A) 0 Between coil de-energisation and making of the Off-delay contact c ms max Control circuit voltage Uc V 0 Relay control voltage codes JD BD ED ND DC supply Average resistance at C ± 0% Ω Operating voltage limits Min. V... Max. V... Presentation : page 0 Characteristics : page References : page Dimensions, schemes : page

11 Characteristics (continued) RSL slim interface relays Socket characteristics Socket type RSL ZVpp RSL ZRpp Relay types used RSL pppp RSL pppp Conforming to standards IEC, UL 0, CSA C- No. Product certifications UL, CSA, GOST Contact terminal arrangement Separate Separate Wire connection method Screw connector Spring terminals Width mm.. Electrical characteristics Conventional thermal current (Ith) A Maximum operating voltage V 00 Insulation characteristics Between adjacent output contacts Vrms 00 Between input and output contacts Vrms 00 Between contacts and rail Vrms 00 General characteristics Ambient air temperature around the device Operation C / for U > 0 V Storage C Degree of protection Conforming to IEC/EN 0 IP 0 Cabling Solid cable conductor mm² without cable end AWG Flexible cable with cable end Screw size mm M. conductor mm² AWG Maximum tightening torque Nm 0. 0 N 0 N (0.. mm²) Mounting Fixing on rail Terminal referencing LED indicator Protection circuit On mm rail By plastic compression spring IEC Yes (built-in) Yes (built-in) Wire connection method Screw connector Spring terminal Sockets operating voltage Operating voltage Tolerance Control circuit voltage (relay) V V Socket type RSLZVA, RSLZRA c/a + 0% / - % c c/a + 0% / - 0% c RSLZVA, RSLZRA c/a + 0% / - 0% c c/a 0 + 0% / - 0% c 0 RSLZVA, RSLZRA c/a 0 + % / - 0% c 0 RSLZVA, RSLZRA c/a 0 + % / - 0% c 0 0

12 References RSL slim interface relays PF000 PF000 Slim interface relays, pre-assembled Standard relays mounted on socket equipped with LED and protection circuit Sold in lots of 0 C/O contact - Thermal current (Ith) A Operating voltage Control circuit voltage Socket type Screw connector Spring terminal Unit reference Weight Unit reference Weight V V kg kg c/a c RSL PVJU 0.0 RSL PRJU 0.0 c/a c RSL PVBU 0.0 RSL PRBU 0.0 c/a c RSL PVEU 0.0 RSL PREU 0.0 RSL PVpp RSL PRpp c/a 0 c 0 RSL PVFU 0.0 RSL PRFU 0.0 c/a 0 c 0 RSL PVPU 0.0 RSL PRPU 0.0 PF00 RSL pppp Slim interface relays for customer assembly: relay + socket Relays with flat, reinforced pins (PCB type) Sold in lots of 0 C/O contact - Thermal current (Ith) A Standard Low level Control circuit voltage Unit reference Weight Unit reference Weight V kg kg c RSL ABJD 0.00 RSL GBJD 0.00 c RSL ABBD 0.00 RSL GBBD 0.00 c RSL ABED 0.00 RSL GBED 0.00 c 0 RSL ABND 0.00 RSL GBND 0.00 PF000 PF000 Sockets equipped with LED and protection circuit Sold in lots of 0 Socket type Screw connector Spring terminal Operating voltage For use with relays Unit reference Weight Unit reference Weight V kg kg c/a and c/a c/a and c/a 0 RSL pbjd RSL pbbd RSL pbed RSL pbnd RSL ZVA 0.0 RSL ZRA 0.0 RSL ZVA 0.0 RSL ZRA 0.0 c/a 0 RSL pbnd RSL ZVA 0.0 RSL ZRA 0.0 c/a 0 RSL pbnd RSL ZVA 0.0 RSL ZRA 0.0 RSL ZVAp RSL ZRAp RSL Z Accessories for sockets Description Compatibility Reference Weight kg Clip-in legends ( sheets of legends) Bus jumper (0 x 0-pole jumper) Partition plate (0 partition plates) With all sockets RSL Z 0.00 With all sockets RSL Z 0.00 With all sockets RSL Z RSL Z Presentation : page 0 Characteristics : page References : page Dimensions, schemes : page

13 Dimensions, schemes RSL slim interface relays Slim interface relays, pre-assembled RSL PVpp (screw connector) 0, RSL PRpp (spring terminals), 0,,,, Relays for customer assembly RSL pppp with flat, reinforced pins (PCB type) max max, ±0,, ()(),, ():.0 mm max C/O contact,,, Sockets equipped with LED and protection circuit RSL ZVpp (screw connector) RSL ZRpp (spring terminals) A A, 0,, 0, Socket connections,,,,,, RSL ZVpp (screw connector) RSL ZRpp (spring terminals) Side view, Example of RSL Z bus jumper mounting on sockets () () () A A A A Protection circuit A A A A Protection circuit () () A () A () Bus jumper polarity A () Bus jumper polarity A 0

14 Selection guide Application Plug-in relays Interface relays Miniature relays Number and type of contacts / conventional thermal current (Ith on N/O contact) C/O / A C/O / A C/O / A C/O / A C/O / 0 A C/O / A C/O / A (low level) Control circuit voltage a 0 V 0 V c 0 V 0 V Type of pins Flat (Faston type) Flat (Faston type) Operational voltage Up to a 00 V / c 00 V Up to 0 V Durability (operating cycles) Electrical, resistive load Mechanical, no-load Functions LED Yes (with protection modules) Yes (depending on version) Mechanical indicator Yes Lockable test button Yes Low level contacts Yes (depending on version) Type reference RSB RXM Pages 0 and Conventional thermal current (Ith) A () 0 A A () Contact terminal arrangements Separate Mixed Separate Connection Connector Screw clamp terminals or connector Connector 0 Accessories Protection modules Yes Yes Timer module Maintaining clamps Yes Yes Socket identification legend Yes Yes (except RXZ EM) Mounting adapters for rail Yes Mounting adapters with fixing lugs Yes Bus jumper, -pole (Ith = A) Yes Associated socket types RSZ ESppM RXZ EMppp RXZ ESppp Pages 0 () When using relay RSB A0pp with socket RSZ ESM, terminals must be linked. () Except for sockets RXZ ESpM: 0 A.

15 Universal relays Power relays C/O / 0 A C/O / 0 A C/O / A (low level) C/O / 0 A C/O / 0 A C/O / A C/O / A C/O / A C/O / A 0 V 0 V 0 V 0 V 0 V Cylindrical Flat (Faston type) Flat (Faston type) Up to 0 V Up to 0 V () Yes (depending on version) Yes (depending on version) Yes Yes Yes Yes Yes (depending on version) RUM RPM A A Mixed Separate Mixed Connector Screw clamp terminals Yes Yes Yes Yes (for and -pole) Yes Yes (on socket RPZ F) Yes Yes Yes Yes Yes RUZ CpM RUZ SCpM RUZ SFM RPZ Fp 0 () for RPM and RPM; for RPM and RPM.

16 Presentation, characteristics RSB interface relays Presentation of the range The RSB interface relay range comprises: A relays with C/O contact, A relays with C/O contact and A relays with C/O contacts. Sockets with separate contact terminals. Protection modules (diode, diode + LED, RC circuit or varistor + LED). All these modules are common to all sockets. A plastic maintaining clamp for all sockets. Clip-in legends for the sockets. Inputs Outputs Socket description Sockets with separate contact terminals () Connection by connector. Five or eight female contacts for the relay pins. A fixing hole for panel mounting. Location for protection modules. Locking components for plastic maintaining clamp. Locating slot for mounting on rail. () The inputs and outputs are separated from the relay supply. 0 Relay supply General characteristics Conforming to standards IEC/EN 0-, UL 0, CSA C- n Product certifications UL, CSA Ambient air temperature Storage C around the device Operation C c - 0 +, a Vibration resistance Conforming to IEC/EN gn (0..0 Hz) Degree of protection Conforming to IEC/EN 0 IP 0 Shock resistance Opening gn conforming to IEC/EN 00-- Closing 0 gn Protection category RT I Mounting position Any Insulation characteristics Rated insulation voltage (Ui) Conforming to IEC/EN 0 V 00 Rated impulse withstand voltage (Uimp) kv. (./0 µs) Dielectric strength (rms voltage) Between coil and contact a V 000 Between poles a V 00 Between contacts a V 000 Contact characteristics Relay type RSB A0pp RSB A0pp RSB A00pp Number and type of contacts C/O C/O C/O Contact materials AgNi Conventional thermal For ambient A current (Ith) temperature y 0 C Rated operational current Conforming to IEC N/O A in utilisation categories AC- and DC- N/C A Switching current Minimum ma Switching voltage Maximum V a 00, c 00 Minimum V Nominal load (resistive) A / 0 a V / 0 a V / 0 a V A / c V / c V / c V Switching capacity Maximum a VA c W Minimum mw 00 Maximum operating rate In operating cycles/hour Presentation: page No-load 000 Under load 00 References: page 0 Characteristics: page Dimensions, schemes: page

17 Characteristics RSB interface relays Contact characteristics (continued) Relay type RSB A0pp RSB A0pp RSB A00pp Mechanical durability In millions of operating cycles 0 Electrical durability In millions of op. cycles Electrical durability of contacts Resistive load a Durability (Number of operating cycles) 0 0 C , 0,,, Resistive load Inductive load See curves below Reduction coefficient for inductive load a (depending on power factor cos j) 0, Maximum switching capacity on resistive load c A RSB A00pp B RSB A0pp C RSB A0pp. Durability (inductive load) = durability (resistive load) x reduction coefficient. Coil characteristics Average consumption c 0. W, a 0. VA Drop-out voltage threshold c 0. Uc, a 0. Uc Operating time Between coil energisation and a ms (response time) making of the On-delay contact c ms Between coil de-energisation and a ms 0 making of the Off-delay contact c ms Control circuit voltage Uc V Relay control voltage codes RD JD BD ED ND FD d.c. supply Average resistance at 0 C ± 0% W Operating Min. V.... voltage limits Max. V.... Relay control voltage codes B E F M P U a.c. supply 0 Hz A B Switching capacity (kva) Average resistance at 0 C ± % W Operating Min. 0 Hz V.. voltage limits 0 Hz Max. 0/0 Hz V.. Socket characteristics Socket type RSZ ESM RSZ ESM Relay types used RSB A0pp RSB A00pp, RSB A0pp () Contact terminal arrangement Separate Wire connection method Connector Product certifications e Conforming to standards Electrical characteristics Conventional thermal current (Ith) A Maximum operating voltage V 00 Insulation characteristics Between adjacent output contacts Vrms 00 Between input and output contacts Vrms 00 Between contacts and rail Vrms 00 General characteristics Ambient air temperature around the device 0, 0, 0, 0, IEC, UL, CSA Operation C - + Storage C Degree of protection Conforming to IEC/EN 0 IP 0 Cabling Solid cable conductor 0.. mm - AWG 0 AWG screw connector without cable end conductors 0.. mm - AWG 0 AWG Flexible cable conductor 0.. mm - AWG AWG with cable end conductors 0. mm - AWG AWG Maximum tightening torque / Screw size Nm 0. / M screw Mounting On mm rail / on panel Fixing on rail By plastic compression spring Terminal referencing IEC Bus jumper (Ith: A) No Compatibility with the metal maintaining clamp Yes, plastic Timer module No Protection module All RZM ppp Clip-in legends Yes Wire connection method Screw connector Reduction coefficient (A) 0, 0, 0, Current c 0 0, B A C 0, Voltage c 0 () When using the relay with socket RSZ ESM, terminals must be linked. See connection schemes on page.

18 References RSB interface relays 0 Relays for standard applications Control circuit voltage Sold in lots of Number and type of contacts - Thermal current (Ith) C/O - A C/O - A C/O - A Unit reference () Unit reference () Unit reference () Weight V kg c 0 RSB A0RD RSB A0RD RSB A00RD 0.0 c 0 RSB A0JD RSB A0JD RSB A00JD 0.0 c 0 RSB A0BD RSB A0BD RSB A00BD 0.0 c 0 RSB A0ED RSB A0ED RSB A00ED 0.0 RSB A0JD + RZM 0FPD + RSZ ESM c 0 0 RSB A0ND RSB A0ND RSB A00ND 0.0 c 0 0 RSB A0FD RSB A0FD RSB A00FD a 0 RSB A0B RSB A0B RSB A00B 0.0 a 0 RSB A0E RSB A0E RSB A00E 0.0 a 0 0 RSB A0F RSB A0F RSB A00F 0.0 a 0 0 RSB A0M RSB A0M RSB A00M 0.0 a 0 0 RSB A0P RSB A0P RSB A00P RSB A0BD + RSZ ESM RSB A00BD + RSZ ESM RSZ R a 0 0 RSB A0U RSB A0U RSB A00U 0.0 Sockets A, a 00 V Contact terminal arrangement Connection Relay type Sold in lots of Unit reference Weight kg Separate Connector RSB A0pp 0 RSZ ESM 0.00 RSB A0pp () 0 RSZ ESM 0.00 RSB A00pp Protection modules Description Voltage Weight For use with Sold in lots of Unit reference V kg Diode All sockets c 0 0 RZM 00W 0.00 RC circuit All sockets a 0 0 RZM 0BN 0.00 a RZM 0FU 0.00 Diode + green LED All sockets c 0 RZM 0RB 0.00 c 0 0 RZM 0BN 0.00 c RZM 0FPD 0.00 Varistor + green LED All sockets c or a 0 RZM 0RB 0.00 c or a 0 0 RZM 0BN 0.00 c or a RZM 0FP 0.00 Accessories Description For use with Sold in lots of Unit reference Weight kg Plastic maintaining clamp All sockets 0 RSZ R 0.00 Legend All sockets 0 RSZ L () To order a relay complete with socket (sold in lots of 0): add suffix S to one of the following voltage codes JD, BD, B, P or F. Example: RSB A00BD + RSZ ESM becomes RSB A00RBS. () When using the relay with socket RSZ ESM, terminals must be linked. See connection schemes on page. 0 Presentation: page References: page 0 Characteristics: page Dimensions, schemes: page 0

19 Dimensions, schemes RSB interface relays Dimensions Interface relays RSB A0pp RSB A00pp, RSB A0pp,,,,,,,,,,,,, Sockets RSZ ESM RSZ ESM () () () (),, () (), () (), A A A A () Relays () Protection module () Maintaining clamp () Legend Schemes Interface relays,, 0,,, 0 RSB A0pp RSB A0pp RSB A00pp, A A A A A A A A / / / A A A A Protection modules When using relay RSB A0pp with socket RSZ ESM terminals and, and, and must be linked RZM 00W RZM 0ppp RZM 0ppp RZM 0ppp A A A A 0 + A + A + A + A

20 Presentation RXM miniature relays or Presentation of the range The RXM miniature relay range comprises: A relays with C/O contacts, 0 A relays with C/O contacts, A relays with C/O contacts and A low level relays with C/O contacts. All these relays have the same dimensions. Sockets with mixed or separate contact terminals. Protection modules (diode, RC circuit or varistor). All these modules are common to all sockets. A metal maintaining clamp for all sockets. A plastic maintaining clamp for all sockets. A -pole bus jumper that can be used on sockets with separate contact terminals in order to simplify cabling when creating an equipotential link between the coil terminals. Clip-in legends for all the sockets except RXZ EM Relay description Spring return pushbutton for testing the contacts (green: c, red: a). Mechanical relay status indicator. Removable lock-down door enabling forced maintaining of the contacts for test sequences or maintenance purposes. During operation, this lock-down door must always be in the closed position. LED (depending on version) indicating the relay status. Removable legend for relay identification. Four notches for rail mounting adapter or panel mounting adapter with fixing lugs. Eight, eleven or fourteen Faston type pins. Area by which the product can be easily gripped. Mounting adapter enabling direct mounting of the relay on a panel. 0 Mounting adapter enabling direct mounting of the relay on a rail. 00 Outputs Socket description Sockets with mixed contact terminals () Connection by screw clamp terminals or screw connector. Fourteen female contacts for the relay pins. Location for protection modules. Locking components for plastic and metal maintaining clamps. Locating slot for mounting on rail with its compression spring or fixing clip. Two or four fixing holes for panel mounting. 00 Inputs Relay supply Inputs Outputs Sockets with separate contact terminals () Connection by screw connector. Eight, eleven or fourteen female contacts for the relay pins. Location for protection modules. Locking components for plastic and metal maintaining clamps. Locating slot for mounting on rail with its compression spring or fixing clip. Two fixing holes for panel mounting. Location for bus jumpers (see mounting on sockets on page ). 0 () The inputs are mixed with the relay's supply, with the outputs being located on the opposite side of the socket. () The inputs and outputs are separated from the relay supply. Relay supply Presentation : page Characteristics : pages and References : pages and Dimensions : pages and Schemes : page

21 Characteristics RXM miniature relays General characteristics Conforming to standards IEC/EN 0- (iss. ), UL 0, CSA C- n Product certifications UL, CSA Ambient air temperature around the device Storage C Operation C Vibration resistance In operation gn (0...0 Hz/± mm / g/ cycles) conforming to IEC/EN 00-- Not operating gn (0...0 Hz/± mm / g/ cycles) Degree of protection Conforming to IEC/EN 0 IP 0 Shock resistance Opening gn conforming to IEC/EN 00-- Closing gn Protection category RT I Mounting position Any Insulation characteristics Rated insulation voltage (Ui) V 0 (IEC), 00 (UL, CSA) Rated impulse withstand voltage (Uimp) kv (./0 ms) Dielectric strength (rms voltage) Between coil and contact a V 0 Between poles a V 0 Between contacts a V 00 Contact characteristics Relay type RXM ABppp RXM ABppp RXM ABppp RXM GBppp Number and type of contacts C/O C/O C/O C/O low level Contact materials AgNi AgAu - bifurcated Conventional thermal current (Ith) Rated operational current in utilisation categories AC- and DC- For ambient temperature y C A 0 Conforming to IEC N/O 0 N/C Conforming to UL 0 Switching current Minimum ma 0 Switching voltage Maximum V a/c 0 (IEC) Minimum V Nominal load (resistive) A / 0 a V 0 / 0 a V / 0 a V / 0 a V A / c V 0 / c V / c V / c V Switching capacity Maximum a VA c W 0 Minimum mw 0 Maximum operating rate In operating cycles No-load 000 Under load 00 Utilisation coefficient 0 % Mechanical durability In millions of operating cycles 0 Electrical durability In millions of operating cycles Electrical durability of contacts Resistive load a Durability (Number of operating cycles) 0 0 D A B 0 C 0 Switching capacity (kva) Resistive load 0. Inductive load See curves below Reduction coefficient for inductive load a (depending on power factor cos j) 0, 0, 0, Reduction coefficient (A) 0, 0, 0, 0, 0, Maximum switching capacity on resistive load c Current c 0 D C A 0, B 00 0 Voltage c A RXM ABppp B RXM ABppp C RXM ABppp D RXM GBppp Durability (inductive load) = durability (resistive load) x reduction coefficient. 0

22 Characteristics (continued) RXM miniature relays Coil characteristics Average consumption a VA. c W 0. Drop-out voltage threshold a u 0. Uc c u 0. Uc Operating time (response time) Between coil energisation and making of the On-delay contact Between coil de-energisation and making of the Off-delay contact a ms 0 c ms 0 a ms 0 c ms 0 Control circuit voltage Uc V Relay control voltage codes JD BD ED FD GD MD d.c. supply Average resistance at 0 C ± 0% W Operating voltage limits Min. V Max. V... Relay control voltage codes B E F P U a.c. supply Average resistance at 0 C ± % W Operating voltage limits Min. V.. Max. V.. Socket characteristics Socket type RXZ ES0M RXZ ESM RXZ ESM RXZ EMM RXZ EM Relay types used RXM ppppp RXM ppppp RXM ppppp RXM ppppp () RXM ppppp RXM ppppp () RXM ppppp Contact terminal arrangement Separate Mixed Wire connection method Connector Screw clamp terminals Product certifications UL, CSA Conforming to standards IEC, e Electrical characteristics Conventional thermal current (Ith) A 0 Maximum operating voltage V 0 (IEC) Insulation characteristics Between adjacent output contacts Vrms 00 Between input and output contacts Vrms 00 Between contacts and rail Vrms 00 General characteristics Ambient air temperature around the device Operation C Storage C Degree of protection Conforming to IEC/EN 0 IP 0 Cabling Solid cable without conductor 0.. mm - AWG 0 AWG 0.. mm AWG 0 AWG cable end conductors 0.. mm - AWG 0 AWG Flexible cable with cable end conductor 0.. mm - AWG AWG 0. mm AWG AWG conductors 0. mm - AWG AWG Maximum tightening torque / Screw size Nm / M screw Mounting On mm rail / on panel Fixing on rail By red plastic clip By metal By red plastic clip compression spring Terminal referencing IEC, NEMA Bus jumper (Ith: A) Yes No Compatibility with the plastic maintaining clamp Yes Compatibility with the metal maintaining clamp Yes Protection module All RXM 00W, RXM 0pp, RXM 0pp Clip-in legends Yes No Wire connection method Screw connector Screw clamp terminals 0 () When mounting relay RXM ppppp on socket RXZ EMpppp, the thermal current must not exceed 0 A. Presentation : page Characteristics : pages and References : pages and Dimensions : pages and Schemes : page

23 References RXM miniature relays 0 Miniature relays without LED (sold in lots of 0) Control circuit voltage Number and type of contacts - Thermal current (Ith) C/O - A C/O - 0 A C/O - A Unit reference Weight Unit reference Weight Unit reference Weight V kg kg kg c RXM ABJD 0.0 RXM ABJD 0.0 RXM ABJD 0.0 c RXM ABBD 0.0 RXM ABBD 0.0 RXM ABBD 0.0 c RXM ABED 0.0 RXM ABED 0.0 RXM ABED 0.0 c 0 RXM ABFD 0.0 RXM ABFD 0.0 RXM ABFD 0.0 c 0 RXM ABMD 0.0 RXM pabf a RXM ABB 0.0 RXM ABB 0.0 RXM ABB 0.0 a RXM ABE 0.0 RXM ABE 0.0 RXM ABE 0.0 a 0 RXM ABF 0.0 RXM ABF 0.0 RXM ABF 0.0 a 0 RXM ABP 0.0 RXM ABP 0.0 RXM ABP 0.0 a 0 RXM ABU RXM pabf RXM GBF Miniature relays with LED (sold in lots of 0) c RXM ABJD 0.0 RXM ABJD 0.0 RXM ABJD 0.0 c RXM ABBD 0.0 RXM ABBD 0.0 RXM ABBD 0.0 c RXM ABED 0.0 RXM ABED 0.0 RXM ABED 0.0 c 0 RXM ABFD 0.0 RXM ABFD 0.0 RXM ABFD 0.0 c RXM ABGD 0.0 a RXM ABB 0.0 RXM ABB 0.0 RXM ABB 0.0 a RXM ABE 0.0 RXM ABE 0.0 RXM ABE 0.0 a 0 RXM ABF 0.0 RXM ABF 0.0 RXM ABF 0.0 a 0 RXM ABP 0.0 RXM ABP 0.0 RXM ABP 0.0 Miniature relays with low level contacts, without LED (sold in lots of 0) Control circuit voltage V Number and type of contacts Thermal current (Ith) C/O - A Unit reference Weight c RXM GBJD 0.0 c RXM GBBD 0.0 c RXM GBED 0.0 c 0 RXM GBFD 0.0 a RXM GBB 0.0 a RXM GBE 0.0 a 0 RXM GBF 0.0 a 0 RXM GBP 0.0 kg 0 RXM GBF Miniature relays with low level contacts, with LED (sold in lots of 0) c RXM GBJD 0.0 c RXM GBBD 0.0 c RXM GBED 0.0 c 0 RXM GBFD 0.0 a RXM GBB 0.0 a RXM GBE 0.0 a 0 RXM GBF 0.0 a 0 RXM GBP 0.0 a 0 RXM GBU 0.0 0

24 References (continued) RXM miniature relays RXZ EMM + Relais RXM ABF RXZ ESM + Relais RXM ABF RXM 0pp RE XLpp RXZ 00 Miniature relays without LED (sold in lots of 00) Control circuit voltage Number and type of contacts - Thermal current (Ith) C/O - A C/O - A Unit reference Weight Unit reference Weight V kg kg c RXM ABJDTQ 0.0 c RXM ABBDTQ 0.0 RXM ABBDTQ 0.0 c RXM ABEDTQ 0.0 c 0 RXM ABFDTQ 0.0 c 0 RXM ABMDTQ 0.0 a RXM ABBTQ 0.0 RXM ABBTQ 0.0 a RXM ABETQ 0.0 a 0 RXM ABFTQ 0.0 RXM ABFTQ 0.0 a 0 RXM ABPTQ 0.0 RXM ABPTQ 0.0 Miniature relays with LED (sold in lots of 00) c RXM ABBDTQ 0.0 a RXM ABBTQ 0.0 RXM ABBTQ 0.0 a 0 RXM ABPTQ 0.0 RXM ABPTQ 0.0 Sockets Contact terminal arrangement Connection Relay type Sold in lots of Unit reference Weight kg Mixed Screw clamp terminals RXM pppp () 0 RXZ EM () 0.0 RXM pppp Screw connector RXM pppp () 0 RXZ EMM () 0.0 RXM pppp Separate Screw connector RXM pppp 0 RXZ ES0M () 0.0 RXM pppp 0 RXZ ESM () 0.0 RXM pppp 0 RXZ ESM () 0.00 Protection modules Description Voltage For use with V Sold in lots of Unit reference Weight kg Diode c...0 All sockets 0 RXM 00W 0.00 RC circuit a...0 All sockets 0 RXM 0BN 0.00 a All sockets 0 RXM 0FU 0.00 Varistor a/c... All sockets 0 RXM 0RB 0.00 a/c...0 All sockets 0 RXM 0BN 0.00 a/c All sockets 0 RXM 0FP 0.00 Timing relays Description or timed C/O contacts (function A) Accessories Description For use with Unit reference Weight kg Sockets RXZ Eppppp RE XLpp () RE XLpp () For use with Sold in lots of Unit reference Weight kg Metal maintaining clamp All sockets 0 RXZ Plastic maintaining clamp All sockets 0 RXZ R 0.00 Bus jumper -pole (Ith: A) All sockets with separate contacts 0 RXZ S 0.00 Mounting adapter for rails () All relays 0 RXZ EDA 0.00 Mounting adapter All relays 0 RXZ EFA 0.00 with fixing lugs for panel Clip-in legends All relays (sheet of 0 legends) 0 RXZ L All sockets except RXZ EM 0 RXZ L () Thermal current Ith: 0 A () Thermal current Ith: A () When mounting relay RXM ppppp on socket RXZ EMpppp, the thermal current must not exceed 0 A. () Please consult the "Zelio Time timing relays" catalogue. () Test button becomes inaccessible. Presentation : page Characteristics : pages and References : pages and Dimensions : pages and Schemes : page

25 Dimensions RXM miniature relays Dimensions Miniature relays RXM pppppp RXM RXM RXM Common view Pin side view,,,,,,,,, 0,,,,,,,,,, Sockets RXZ EM RXZ EMM 0 (), () () () 0, A A 0 0, () () () () 0 0 A 0, A 0 Common side view RXZ ES0M RXZ ESM RXZ ESM () () () 0 (), A A, A A, 0 A A, () Relays () Protection module () Maintaining clamp () elongated holes Ø. x. () bus jumpers 0

26 Dimensions (continued) RXM miniature relays Dimensions (continued) Plastic clamp and clip-in legends RXZ R RXZ L0 Mounting on all sockets (),, (), Bus jumper RXZ S Mounting on sockets with separate contacts (view from below) Example of bus jumper mounting on sockets () Clip-in legends for all sockets except RXZ EM Metal clamp RXZ 00,,, () () () () 0, () bus jumpers (polarity A) () bus jumpers (polarity A) Mounting adapter for rails () RXZ EDA Mounting adapter for panel RXZ EFA () Test button becomes inaccessible,, 0 Presentation : page Characteristics : pages and References : pages and Dimensions : pages and Schemes : page

27 Schemes RXM miniature relays Schemes Miniature relays RXM ppppp RXM ppppp RXM ppppp A A A A A A A A A A A 0 A Symbols shown in blue correspond to Nema marking. Sockets RXZ EM RXZ EMM A A 0 Symbols shown in blue correspond to Nema marking. A A 0 RXZ ES0M RXZ ESM RXZ ESM 0 A A A A A A A INPUT A A INPUT A A INPUT A Symbols shown in blue correspond to Nema marking. Protection modules RXM 00W RXM 0ppp RXM 0ppp A A A + A + A + A 0

28 Presentation RUM universal relays Presentation of the range The RUM universal relay range comprises: 0 A relays with and C/O contacts, with cylindrical or flat (Faston type) pins, and A low level relays with C/O contacts, with cylindrical pins. All these relays have the same dimensions. Sockets with mixed or separate contact terminals. Protection modules (diode, RC circuit or varistor) or timer module. All these modules are common to all sockets. A metal maintaining clamp for all sockets. A -pole bus jumper that can be used on sockets with separate contact terminals in order to simplify cabling when creating an equipotential link between the coil terminals. Clip-in legends for the sockets. 0 Relay description Spring return pushbutton for testing the contacts (green: c, red: a). Mechanical relay status indicator. Removable lock-down door enabling forced maintaining of the contacts for test sequences or maintenance purposes. During operation, this lock-down door must always be in the closed position. LED (depending on version) indicating the relay status. Removable legend for relay identification. Area by which the product can be easily gripped. Eight or eleven cylindrical pins. Eight or eleven flat (Faston type) pins 00 Outputs Socket description Sockets with mixed contact terminals () Connection by screw connector. Eight or eleven female contacts for the relay cylindrical pins. Location for protection modules or the timer module. Locking component for metal maintaining clamp. A locating slot for mounting on rail. Two fixing holes for panel mounting. Relay supply Inputs Relay suppy 0 00 Inputs 00 Outputs a Relay supply Relay supply Inputs Outputs b Sockets with separate contact terminals () Connection by screw connector. a Eight or eleven female contacts for the relay cylindrical pins. b Eleven female contacts for the relay flat pins. Location for protection modules or the timer module. Locking component for metal maintaining clamp. Locating slot for mounting on rail with fixing clip. Two fixing holes for panel mounting. Location for bus jumpers (see mounting on sockets on page ). () The inputs are mixed with the relay's supply, with the outputs being located on the opposite side of the socket. () The inputs and outputs are separated from the relay supply. Characteristics : pages and References : pages and Dimensions : page Schemes : page Setting-up : page 0

29 Characteristics RUM universal relays General characteristics Conforming to standards IEC/EN 0- (iss. ), UL 0, CSA C- n Product certifications UL, CSA Ambient air temperature around the device Storage C Operation C Vibration resistance In operation gn (0...0 Hz/± mm / g/ cycles) conforming to IEC/EN 00-- Not operating gn (0...0 Hz/± mm / g/ cycles) Degree of protection Conforming to IEC/EN 0 IP 0 Shock resistance Opening 0 gn conforming to IEC/EN 00-- Closing 0 gn Protection category RT I Mounting position Any Insulation characteristics Rated insulation voltage (Ui) Conforming to IEC/EN 0 V 0 (IEC), 00 (UL, CSA) Rated impulse withstand voltage (Uimp) kv (./0 µs) Dielectric strength (rms voltage) Between coil and contact a V 0 Between poles a V 0 Between contacts a V 00 Contact characteristics Relay type RUM Fppp RUM Fppp RUM Cppp RUM CApp RUM CGpp Number and type of contacts C/O C/O C/O C/O C/O low level Contact materials. AgNi AgAu Conventional thermal For ambient A 0 current (Ith) temperature y C Rated operational current Conforming to IEC N/O A 0 in utilisation categories N/C A AC- and DC- Conforming to UL A / a V / c V Switching current Minimum ma 0 Switching voltage Maximum V a/c 0 (IEC) Minimum V Nominal load (resistive) A 0 / 0 a V / 0 a V A 0 / c V / c V Switching capacity Maximum a VA 00 0 c W 0 Minimum mw 0 Maximum operating rate No-load 000 In operating cycles/hour Under load 00 Utilisation coefficient 0 % Mechanical durability In millions of operating cycles Electrical durability Resistive load 0. In millions of operating cycles Inductive load See curves below Electrical durability of contacts Resistive load a Reduction coefficient for inductive load a (depending on power factor cos ϕ) Maximum switching capacity on resistive load c Durability (Number of operating cycles) 0 0 B A 0 0 Switching capacity (kva) Reduction coefficient (A) 0, 0, 0, 0, 0, 0, 0, 0, Current c 0 B A 0, Voltage c A RUM Fppppp, RUM Cppp, RUM CAppp B RUM CGppp Durability (inductive load) = durability (resistive load) x reduction coefficient. 0

30 Characteristics (continued) RUM universal relays Coil characteristics Average consumption a VA... c W. Drop-out voltage threshold a u 0. Uc c u 0. Uc Operating time (response time) Between coil energisation and making of the On-delay contact Between coil de-energisation and making of the Off-delay contact a ms 0 c ms 0 a ms 0 c ms 0 Control circuit voltage Uc V Relay control voltage codes JD BD ED ND FD GD MD d.c. supply Average resistance at 0 C ± 0% Ω Operating voltage limits Min. V Max. V.... Relay control voltage codes B E F P a.c. supply Average resistance at 0 C ± % Ω Operating voltage limits Min. V.. Max. V.. Socket characteristics Socket type RUZ CM RUZ CM RUZ SCM RUZ SCM RUZ SFM Relay types used RUM Cppppp RUM Cppppp RUM Cppppp RUM Cppppp RUM Fppppp Contact terminal arrangement Mixed Separate Wire connection method Product certifications Conforming to standards Connector UL, CSA IEC, e Electrical characteristics Conventional thermal current (Ith) A 0 Maximum operating voltage V 0 (IEC) Insulation characteristics Between adjacent output contacts Vrms 00 Between input and output contacts Vrms 00 Between contacts and rail Vrms 00 General characteristics Ambient air temperature around the device Operation C Storage C Degree of protection Conforming to IEC/EN 0 IP 0 Cabling Solid cable without cable end Flexible cable with cable end conductor 0.. mm - AWG 0 AWG conductors 0.. mm - AWG 0 AWG conductor 0.. mm - AWG AWG conductors 0. mm - AWG AWG Maximum tightening torque / Screw size Nm / M. screw Mounting Fixing on rail Terminal referencing On mm rail / on panel By red plastic clip IEC, NEMA Bus jumper (Ith: A) No Yes Compatibility with the metal maintaining clamp Timer module Protection module Yes Yes All RUW ppp Clip-in legends No Yes Wire connection method Screw connector 0 Presentation : page 0 References : pages and Dimensions : page Schemes : page Setting-up : page

31 References RUM universal relays 0 References Relays for standard applications, without LED (sold in lots of 0) Pins Control circuit voltage Number and type of contacts - Thermal current (Ith) C/O - 0 A C/O - 0 A Unit reference Weight Unit reference Weight V kg kg Cylindrical c RUM CABJD 0.0 RUM CABJD 0.0 c RUM CABBD 0.0 RUM CABBD 0.0 c RUM CABED 0.0 RUM CABED 0.0 c 0 RUM CABND 0.0 c 0 RUM CABFD 0.0 RUM CABFD 0.0 c RUM CABGD 0.0 c 0 RUM CABMD 0.0 RUM ppabf a RUM CABB 0.0 RUM CABB 0.0 a RUM CABE 0.0 RUM CABE 0.0 a 0 RUM CABF 0.0 RUM CABF 0.0 a 0 RUM CABP 0.0 RUM CABP 0.0 Flat (Faston type) c RUM FABJD 0.00 RUM FABJD 0.0 c RUM FABBD 0.00 RUM FABBD 0.0 c RUM FABED 0.00 RUM FABED 0.0 c 0 RUM FABFD 0.00 RUM FABFD RUM ppabf a RUM FABB 0.00 RUM FABB 0.0 a RUM FABE 0.00 RUM FABE 0.0 a 0 RUM FABF 0.00 RUM FABF 0.0 a 0 RUM FABP 0.00 RUM FABP 0.0 Relays for standard applications, with LED (sold in lots of 0) Cylindrical c RUM CABJD 0.0 RUM CABJD 0.0 c RUM CABBD 0.0 RUM CABBD 0.0 c RUM CABED 0.0 RUM CABED 0.0 c 0 RUM CABND 0.0 c 0 RUM CABFD 0.0 RUM CABFD 0.0 c RUM CABGD 0.0 a RUM CABB 0.0 RUM CABB 0.0 a RUM CABE 0.0 RUM CABE 0.0 a 0 RUM CABF 0.0 RUM CABF 0.0 a 0 RUM CABP 0.0 RUM CABP 0.0 Flat (Faston type) c RUM FABJD 0.0 RUM FABJD 0.0 c RUM FABBD 0.0 RUM FABBD 0.0 c RUM FABED 0.0 RUM FABED 0.0 c 0 RUM FABFD 0.0 RUM FABFD 0.0 a RUM FABB 0.0 RUM FABB 0.0 a RUM FABE 0.0 RUM FABE 0.0 a 0 RUM FABF 0.0 RUM FABF 0.0 a 0 RUM FABP 0.0 RUM FABP 0.0 Relays with low level contacts, with LED (sold in lots of 0) Pins Control circuit voltage V Number and type of contacts Thermal current (Ith) C/O - A Unit Weight reference kg Cylindrical c RUM CGBBD 0.0 c RUM CGBED 0.0 a RUM CGBB 0.0 a RUM CGBE 0.0 a 0 RUM CGBF 0.0 a 0 RUM CGBP 0.0 0

32 References (continued) RUM universal relays RUZ CM + relais RUM Cppppp References (continued) Sockets Contact terminal arrangement Connection Relay type Sold in lots of Unit reference Weight kg Mixed Screw connector RUM Cppppp 0 RUZ CM 0.0 RUM Cppppp 0 RUZ CM 0.0 Separate Screw connector RUM Cppppp 0 RUZ SCM 0.0 Protection modules Description For use with RUM Cppppp 0 RUZ SCM 0.00 RUM Fpppp 0 RUZ SFM 0.0 RUM Fpppp Voltage V Sold in lots of Unit reference Weight Diode All sockets c 0 0 RUW 0BD 0.00 RC circuit All sockets a RUW P 0.00 kg RUW P Varistor All sockets a/c 0 RUW B 0.00 a/c 0 0 RUW P Timer module Description For use with Voltage Reference Weight V Multifunction All sockets a/c 0 RUW 0MW 0.00 kg RUW 0MW Timing relays Description For use with timed C/O contacts On sockets RUZ CpM (single-function or multifunction) Reference RE A pp () Weight kg Accessories Description For use with Sold in lots of Unit reference Weight kg Metal maintaining clamp All sockets 0 RUZC Bus jumper -pole (Ith : A) All sockets with separate contacts 0 RUZ S RUZ C00 RUZ S Clip-in legends () Please consult the "Zelio Time timing relays" catalogue. All relays 0 RXZ L (sheet of 0 legends) All sockets with separate contacts 0 RUZ L Presentation : page 0 Characteristics : pages and Dimensions : page Schemes : page Setting-up : page

33 Dimensions RUM universal relays Dimensions Universal relays RUM Cpp RUM Fpp Sockets Common side view RUZ CM RUZ CM () () () INPUT A INPUT A A A A 0 0 INPUT A INPUT A 0 A A A RUZ SCM RUZ SCM () () () Ø 0 () () () Ø 0 0 () A A () A 0 A () Relays () Protection module () Maintaining clamp () bus jumpers 0

34 Dimensions (continued) RUM universal relays Dimensions (continued) Sockets (continued) RUZ SFM () () () () A B A A 0 () Relays () Protection module () Maintaining clamp () bus jumpers Metal maintaining clamps and plastic legends RUZ C00 Mounting 0,, 0 RUZ L0, Bus jumper RUZ S,,, Mounting on sockets with separate contacts (view from below) Example of bus jumper mounting on sockets () (), () () 0 () bus jumpers (polarity A) () bus jumpers (polarity A) Presentation : page 0 Characteristics : pages and Dimensions : page Schemes : page Setting-up : page

35 Schemes RUM universal relays Schemes Universal relays RUM pabppp RUM Cppppp RUM FABppp A A A A A A RUM CABppp RUM FABppp RUM Cppppp RUM FABppp A A + A (+) B ( ) A A A + 0 A A (+) A B ( ) A Symbols shown in blue correspond to Nema marking. Sockets RUZ CM RUZ CM RUZ SCM RUZ SCM 0 0 A A A 0 A 0 A A A A 0 A A Symbols shown in blue correspond to Nema marking. RUZ SFM B A A A Symbols shown in blue correspond to Nema marking. 0

36 Schemes (continued) RUM universal relays Schemes (continued) Protection modules RUW 0BD RUW P RUW pp A A A + A + A + A 0 Presentation : page 0 Characteristics : pages and References : pages and Setting-up : page

37 Setting-up RUM universal relays Multifunction timer module RUW 0MW Programming Timing range selection Function Timing range selection selection 0. s 0. 0 s 0. min 0 min 0. h 0 h 0. day 0 days Function selection Selection Function Control Function diagram Control scheme On-delay Timer E Series control U./../. t U A Monostable with maintained control Wu Series control U./../. t R A Flashing relay, starting On-delay phase Bi Series control U./../. t t Flashing relay, starting Off-delay phase Bp Series control U./../. t t Off-delay timer R Control by external contact (S) U S./../. t U A S B Monostable with pulse control Ws Control by external contact (S) U S./../. t R A Monostable, starting on de-energisation Wa Control by external contact (S) U S./../. t On-delay Timer Es Control by external contact (S) U S./../. t Power off Contact open U : voltage S : external control Power on Contact closed R : relay RUM ppp t : adjustable time delay 0

38 Presentation RPM power relays 00 Presentation of the range The RPM power relay range comprises: A relays with,, and C/O contacts. Sockets with mixed contact terminals. Protection modules (diode, RC circuit or varistor) or timer module. All these modules are common to all the sockets except for the timer module, which can only be used on the -pole or -pole sockets. A metal maintaining clamp for single-contact relays Relay description Spring return pushbutton for testing the contacts (green: c, red: a). Mechanical relay status indicator. Removable lock-down door enabling forced maintaining of the contacts for test sequences or maintenance purposes. During operation, this lock-down door must always be in the closed position. LED (depending on version) indicating the relay status. Removable legend for relay identification. Four notches for rail mounting adapter or panel mounting adapter with fixing lugs. Five, eight, eleven or fourteen Faston type pins. Area by which the product can be easily gripped. Mounting adapter enabling direct mounting of the relay on a panel. 0 Mounting adapter enabling direct mounting of the relay on a rail Outputs Socket description Sockets with mixed contact terminals () Connection by screw clamp terminals. Five, eight, eleven or fourteen female contacts for the relay pins. Location for protection modules or the timer module. Locating slot for mounting on rail with fixing clip. Two or four fixing holes for panel mounting. () The inputs are mixed with the relay's supply, with the outputs being located on the opposite side of the socket. Inputs Relay supply 0 Characteristics : page References : page Dimensions : page Schemes : page 0

39 Characteristics RPM power relays General characteristics Conforming to standards IEC/EN 0- (iss. ), UL 0, CSA C- n Product certifications UL, CSA Ambient air temperature around the device Storage C Operation C Vibration resistance In operation gn (0...0 Hz/± mm / g/ cycles) conforming to IEC/EN 00-- Not operating gn (0...0 Hz/± mm / g/ cycles) Degree of protection Conforming to IEC/EN 0 IP 0 Shock resistance Opening gn conforming to IEC/EN 00-- Closing gn Protection category RT I Mounting position Any Insulation characteristics Rated insulation voltage (Ui) Conforming to IEC/EN 0 V 0 (IEC), 00 (UL, CSA) Rated impulse withstand voltage (Uimp) kv (./0 µs) Dielectric strength (rms voltage) Between coil and contact a V 0 Between poles a V 0 Between contacts a V 00 Contact characteristics Relay type RPM ppp RPM ppp RPM ppp RPM ppp Number and type of contacts C/O C/O C/O C/O Contact materials AgNi Conventional thermal current (Ith) Rated operational current in utilisation categories AC- and DC- For ambient temperature y C A Conforming to IEC N/O A N/C A. Conforming to UL A Switching current Minimum ma 0 Switching voltage Maximum V a/c 0 (IEC) Minimum V Nominal load (resistive) A / 0 a V A / c V Switching capacity Maximum a VA 0 c W 0 Minimum mw 0 Maximum operating rate In operating cycles/hour No-load 000 Under load 00 Utilisation coefficient 0 % Mechanical durability In millions of 0 operating cycles Electrical durability In millions of operating cycles Electrical durability of contacts Resistive load a Resistive load Inductive load See curves below Reduction coefficient for inductive load a (depending on power factor cos ϕ) Maximum switching capacity on resistive load c Durability (Number of operating cycles) , Switching capacity (kva) Reduction coefficient (A) 0, 0, 0, 0, 0, 0, 0, 0, Current c 0 0, Voltage c Durability (inductive load) = durability (resistive load) x reduction coefficient. 0

40 Characteristics (continued) RPM power relays 0 Coil characteristics Relay type RPM ppp RPM ppp RPM ppp RPM ppp Average consumption a VA c W Drop-out voltage threshold a u 0. Uc c u 0. Uc Operating time (response time) Between coil energisation and making of the On-delay contact a ms 0 0 c ms 0 0 Between coil de-energisation a ms 0 and making of the c Off-delay contact ms 0 Control circuit voltage Uc V Relay control voltage codes JD BD ED FD d.c. supply Average resistance RPM ppp Ω at 0 C ± 0% RPM ppp Ω RPM ppp Ω RPM ppp Ω 0 0 Operating voltage limits Min. V... Max. V... Relay control voltage codes B E F P a.c. supply Average resistance RPM ppp Ω at 0 C ± % RPM ppp Ω RPM ppp Ω RPM ppp Ω. 0 0 Operating voltage limits Min. V.. Max. V.. Socket characteristics Socket type RPZ F RPZ F RPZ F RPZ F Relay types used RPM ppp RPM ppp RPM ppp RPM ppp Protection module types used Contact terminal arrangement Wire connection method Product certifications Conforming to standards RXM 0ppp RXM 0ppp Electrical characteristics Conventional thermal current (Ith) A Maximum operating voltage V 0 (IEC) Insulation characteristics Between adjacent output contacts Vrms 00 Between input and output contacts Vrms 00 Between contacts and rail Vrms 00 General characteristics Ambient air temperature around the device Operation C Storage C Mixed Screw clamp terminals UL, CSA IEC, e RXM 0ppp RXM 0ppp RUW ppp Degree of protection Conforming to IEC/EN 0 IP 0 Cabling Solid cable conductor 0.. mm - AWG 0 AWG 0.. mm - AWG 0 AWG without cable end conductors 0.. mm - AWG 0 AWG 0.. mm - AWG 0 AWG Flexible cable with cable end conductor 0. mm - AWG AWG 0.. mm - AWG AWG conductors 0. mm - AWG AWG 0.. mm - AWG AWG Maximum tightening torque / Screw size Nm / M screw / M. screw Mounting On mm rail / on panel Fixing on rail By red plastic clip Terminal referencing IEC, NEMA Compatibility with the metal maintaining clamp Yes No Timer module No Yes Protection module RXM 00W, RXM 0pp, RXM 0pp RUW pp Clip-in legends No Wire connection method Screw clamp terminals RUW ppp Presentation : page 0 References : page Dimensions : page Schemes : page

41 References RPM power relays 00 Power relays without LED (sold in lots of 0) Control circuit voltge Number and type of contacts - Thermal current (Ith) C/O - A C/O - A C/O - A C/O - A Unit reference Weight Unit reference Weight Unit reference Weight Unit reference Weight V kg kg kg kg c RPM JD 0.0 RPM JD 0.0 RPM JD 0.0 RPM JD 0.0 c RPM BD 0.0 RPM BD 0.0 RPM BD 0.0 RPM BD 0.0 c RPM ED 0.0 RPM ED 0.0 RPM ED 0.0 RPM ED 0.0 RPM BD c 0 RPM FD 0.0 RPM FD 0.0 RPM FD 0.0 RPM FD 0.0 a RPM B 0.0 RPM B 0.0 RPM B 0.0 RPM B 0.0 a RPM E 0.0 RPM E 0.0 RPM E 0.0 RPM E 0.0 a 0 RPM F 0.0 RPM F 0.0 RPM F 0.0 RPM F a 0 RPM P 0.0 RPM P 0.0 RPM P 0.0 RPM P 0.0 Power relays with LED (sold in lots of 0) c RPM JD 0.0 RPM JD 0.0 RPM JD 0.0 RPM JD 0.0 c RPM BD 0.0 RPM BD 0.0 RPM BD 0.0 RPM BD 0.0 RPM BD c RPM ED 0.0 RPM ED 0.0 RPM ED 0.0 RPM ED 0.0 c 0 RPM FD 0.0 RPM FD 0.0 RPM FD 0.0 RPM FD 0.0 a RPM B 0.0 RPM B 0.0 RPM B 0.0 RPM B 0.0 a RPM E 0.0 RPM E 0.0 RPM E 0.0 RPM E 0.0 a 0 RPM F 0.0 RPM F 0.0 RPM F 0.0 RPM F 0.0 a 0 RPM P 0.0 RPM P 0.0 RPM P 0.0 RPM P 0.0 0

42 References (continued) RPM power relays 00 Sockets Contact terminal arrangement Mixed Connection Relay type Sold in lots of Screw clamp terminals Unit reference Weight kg RPM ppp 0 RPZ F 0.0 RPM ppp 0 RPZ F 0.0 RPM ppp 0 RPZ F 0.0 RPM ppp 0 RPZ F RPZ F + relay RPM F RUW ppp Protection modules Description Voltage Socket type Sold in lots of V Unit reference Weight kg Diode c...0 RPZ FRPZ F 0 RXM 00W 0.00 RPZ F 0 RUW 0BD 0.00 RPZ F RC circuit a...0 RPZ FRPZ F 0 RXM 0BN 0.00 a RPZ FRPZ F 0 RXM 0FU 0.00 RPZ F 0 RUW P 0.00 RPZ F Varistor a/c... RPZ FRPZ F 0 RXM 0RB 0.00 a/c...0 RPZ FRPZ F 0 RXM 0BN 0.00 a/c RPZ FRPZ F 0 RXM 0FP 0.00 a/c RPZ F 0 RUW B 0.00 RPZ F a/c 0 RPZ F RPZ F 0 RUW P 0.00 Timer module () Description Voltage Socket type Reference Weight RPZ DA V Multifunction a/c 0 RPZ F RPZ F Accessories Description For use with Sold in lots of kg RUW 0MW 0.00 Unit reference Weight kg Metal maintaining clamp RPZ F 0 RPZ R 0.00 (for single-pole relays) Mounting adapters for rail () RPM ppp 0 RPZ DA 0.00 RPM ppp 0 RXZ EDA 0.00 RPM ppp 0 RPZ DA 0.00 RPM ppp 0 RPZ DA 0.00 Mounting adapters with fixing lugs for panel RPM ppp 0 RPZ FA 0.00 RPM ppp 0 RXZ EFA 0.00 RPM ppp 0 RPZ FA 0.00 RPM ppp 0 RPZ FA 0.00 Clip-in legends (sheet of 0 legends) All relays 0 RXZ L RPZ FA () See timer module description (selection of functions and time delays) on page () Test button becomes inaccessible. 0 Presentation : page 0 Characteristics : page Dimensions : page Schemes : page

43 Dimensions RPM power relays Dimensions Power relays RPM,,,,, 0 Common side view RPM RPM RPM,,,,,,,,,,, Sockets RPZ F, 0, RPZ F Ø, x () 0 () () () A A 0 () A A Ø, x Common side view RPZ F RPZ F Ø, x Ø, x () () A 0 A 0 A 0 A Ø, x 0 Ø, x 0 () Relays () Protection module () Maintaining clamp

44 Dimensions (continued) RPM power relays Dimensions (continued) Mounting adapters for rail RPZ DA RXZ EDA RPZ DA RPZ DA, 0 0, Mounting adapters with fixing lugs for panel RPZ FA RXZ EFA RPZ FA RPZ FA, 0,,,,,, Mounting Mounting adapters for rail () Mounting adapters with fixing lugs for panel () Test button becomes inaccessible 0 Presentation : page 0 Characteristics : page References : page Schemes : pages

45 Schemes RPM power relays Schemes Power relays RPM ppp RPM ppp RPM ppp RPM ppp A A A A A A A A (+) ( ) A A (+) ( ) A A 0 (+) ( ) A A (+) A 0 ( ) A Symbols shown in blue correspond to Nema marking. Sockets RPZ F RPZ F RPZ F RPZ F A A INPUT A Symbols shown in blue correspond to Nema marking. A A 0 A A 0 A Protection modules RXM 00W, RUW 0BD RXM 0ppp, RUW P RXM 0ppp, RUW pp A + A A + A A + A 0

46 Technical presentation Relays Contact types Symbol Configuration EU USA Make contact (Normally Open) NO SPST-NO DPST-NO npst-no () Break contact (Normally Closed) NC SPST-NC DPST-NC npst-nc () Changeover Contact CO SPDT DPDT npdt () Utilisation categories Category Type of current Applications AC- a single-phase a -phase Resistive or slightly inductive loads. AC- a -phase Starting and braking of squirrel cage motors; reversing direction of rotation only after stopping of motor. AC- a -phase Starting of squirrel cage motors, inching. Plugging, reversing direction of rotation. DC- c Resistive or slightly inductive loads (). AC- a single-phase Control of electromagnetic loads (< VA), auxiliary control relays, power contactors, electromagnetic solenoid valves and electromagnets. AC- a single-phase Control of electromagnetic loads (> VA), auxiliary control relays, power contactors, electromagnetic solenoid valves and electromagnets. DC- c Control of electromagnetic loads, auxiliary control relays, power contactors, magnetic solenoid valves and electromagnets. Protection categories Category Explanation Condition RT 0 Unenclosed relay Relay not provided with a protective case. RT I Dust protected relay Relay provided with a case which protects its mechanism from dust. RT II Flux-proof relay Relay capable of being automatically soldered without allowing the migration of solder fluxes beyond the intended areas. RT III Wash-tight relay Relay capable of being automatically soldered and then washed to remove flux residues without risk of ingress of flux or washing solvents. RT IV Sealed relay Relay provided with a case which has no venting to the outside atmosphere. RT V Hermetically sealed relay Sealed relay having an enhanced level of sealing. () n = number of contacts. () The switchable voltage can be doubled, for an equal current, by connecting two contacts in series. 0

47 Presentation U Break Supply voltage Energy released t Coil voltage with diode protection module (c only) U Break Protection modules Whenever an inductive load is de-energised (coil of a relay or of a contactor), an overvoltage appears at its terminals. This voltage peak can reach several thousand volts and a frequency of several MHz. It is likely to disturb the operation of automation systems which contain electronic devices. Protection modules are used to reduce the voltage peak on de-energisation and they therefore limit the energy of interference signals to a level that will not disturb surrounding coils and electronic devices. These modules are used to avoid: v electromagnetic compatibility problems, v the deterioration of contact materials, v the destruction of insulation due to overvoltage, v the destruction of electronic components. Diode protection module (with or without LED) b Advantages v accumulation of energy allowing current flow in the same direction, v absence of any voltage peaks at the coil terminals, v low cost. b Disadvantages v increase in relay drop-out time ( to times the usual time), v no polarity protection, v de-energisation of the relay. Protection module with varistor b Advantages v can be used with a and c supply, v voltage peak limited to about Un, v little effect on relay drop-out time. Energy released t Limitation of voltage peaks b Disadvantages v no modification of coil s own oscillating frequency, v limitation of switching frequency. Coil voltage with varistor protection module (a and c) U Break t S (with RC) U Protection module with RC circuit b Advantages v coil oscillating frequency reduced to about 0 Hz, v voltage peak limited to Un, v little effect on relay drop-out time. b Disadvantages v no protection for low voltages. U S Coil voltage with RC circuit protection module (a only) S = S = Energy released 0

48 Selection guide Interfaces Interfaces for discrete signals Applications Electromechanical interface modules Functions Input Width (mm).. Contact arrangement N/O N/O C/O N/O Thermal current Control voltages c 0 V z V, V a V a 0/0 V c V, V a /0 Hz a /0 Hz a 0 0/0-0 Hz Indication Mechanical for contacts and/or LED for control LED for control References ABR E ABR E Pages 0 0

49 Solid state interface modules Output Input and output Very low level switching Input Output..../. N/O N/O C/O N/C + N/O N/O C/O A A A c V z V, V a V a 0 V Mechanical for contacts and/or LED for control c V LED for control c,, V a /0 Hz a 0 /0 Hz a 0 0/0 Hz a 0 0/0 Hz c V ABR S ABR S ABR pbb ABS E ABS S 0

50 Presentation Interfaces For discrete signals Electromechanical interface modules ABR- electromechanical interface modules are supplied in the form of compact modules,. mm wide. They are designed for interfacing discrete digital control signals exchanged within an automated system between the processing unit (PLC, numerical controller, etc) and the other components (contactors, solenoid valves, indicator lamps, proximity sensors, etc). These products are based on contactor technology and are notable for their excellent adaptation to industrial environments, ensured by the fact that they conform to the most recent IEC -- standards. Composition The ABR- range comprises families : Input interfaces Input interfaces are designed for switching input signals to the processor and are characterized by their high degree of contact reliability : less than fault per 00 million operating cycles at c V, ma. The switching level is sufficiently high to ensure that the interfaces can directly control most contactors and indicator lamps. Output interfaces Output interfaces are designed for the control of preactuators (contactors, solenoid valves, etc) for signalling devices (indicators lamps, audible warnings, etc). They are characterized by a high switching capacity and an average durability times greater than that of traditional interface modules which incorporate standard relays. Override contacts by pressing button (not holding it down) for a simple and quick test during setting up or maintenance operations on the installation Green indicator showing the mechanical position of the contacts LED indicating the control signal state Channel identification : individual characters for AB-R/G or one AB-SA marker tag Connection by screw clamp terminal enabling easy attachment of wires per terminal. The layout of the connection terminals for both families (input and output) is designed for rational wiring and a clear separation between the incoming (processing) and outgoing (power and process control) circuits. 0 Characteristics: pages and Curves: page References: page Dimensions, schemes: page

51 Characteristics Interfaces For discrete signals Electromechanical interface modules Examples of applications with PLCs PLC Positive logic discrete inputs / +/ PLC Positive logic transistor (or relay) outputs +/ / A A A A A A A A A A A A A A +... V...0 V + Pushbuttons Series contacts -wire sensors -wire sensors Pushbuttons Series contacts -wire sensors () () () Essential on inductive loads (can be replaced with peak limiter ). Environment Conforming to standards IEC -- Product certifications UL, CSA, BV, LROS, DNV Degree of protection Conforming to IEC IP 00 (protection against direct contact) Protective treatment TC Flame resistance Conforming to IEC -- Incandescent wire C 0 Conforming to UL V0 Shock resistance Conforming to IEC -- Semi-sinusoidal waves ms 0 gn Vibration resistance Conforming to IEC -- 0 Hz gn Resistance to electrostatic Conforming to IEC 0- Level kv charges Resistance to rapid Conforming to IEC 0- On power supply kv transients On I/O kv Resistance to shock Conforming to IEC - Waveform U 0 V kv 0. waves./0 ms ; 0. J U > 0 V kv. Cross-sections which Flexible cable with no cable end or -wire mm 0.. may be connected Flexible cable with cable end or -wire mm 0.. Rigid cable -wire mm 0. -wire mm 0.. Operating position Any Ambient air temperature Unrestricted operation C around the device Permissible at Un C Storage C Operating altitude m 000 Installation category Conforming to IEC - II Degree of pollution Conforming to IEC -- Mounting Standard rails 0 Presentation: page Curves: page References: page Dimensions, schemes: page

52 Characteristics (continued) Interfaces For discrete signals Electromechanical interface modules Control circuit characteristics (0 C ambient temperature) Type of interface ABR Sp0B ABR pppb ABR pppe ABR EpF Rated voltage (Uc) V c z z c 0... ABR pppf a... ABR EpM a Current frequency Hz 0/0 0/0 0/0 0/0 0/0 Energization threshold (at ± %) V. 0 Maximum operating voltage c / a V Maximum drop-out (at ± %) voltage (Uo) c / a V... Maximum current (Un) c / a ma / /. Minimum holding current c / a ma../../.... Maximum dissipated power 0 Hz/0 Hz W Disappearance of voltage maximum time up to which contact is maintained ms 0 0 Display of control circuit by LED No Yes Yes Yes Yes Yes No Built-in protection reversed polarity Yes Yes Yes Yes Contact characteristics Type of interface ABR Epppp ABR Spppp Maximum switching voltage a V c V Maximum rated operating voltage Ue Conforming to IEC -- a V 0 0 c V Operating current frequency Hz 0/0 0/0 Thermal current Ith Conforming to IEC - A Rated operating current (Ie) per million operating cycles Conforming to IEC -- Ue : a 0 V Conforming to IEC -- Ue : c V AC A AC A AC A AC A DC A DC A Minimum switching capacity ma Minimum switching voltage V Protection against short-circuits Low power switching reliability of contacts ( V - ma) Other characteristics Operating time at Un and at 0 C For Ik. ka (a) and 00 A (c) Type and value of recommended fuse Number of faults per n million operating cycles Between energization of coil and closing of N/O contact Between energization of coil and opening of N/C contact Between de-energization of coil and opening of N/O contact Between de-energization of coil and closing of N/C contact A gg/gf : gg/gf : ms ms ms ms Duration of bounce ms Contact bridging times Maximum make before break or break ms between contact N/C before make time and N/O Maximum operating rate Mechanical durability in millions of operating cycles At no-load Hz At Ie Hz 0. ABR- ( N/O or N/O) 0 million ABR- ( C/O or N/C + N/O) 0 million Rated isolation voltage Conforming to IEC - V 0 Conforming to VDE 00 group C V 0 Insulation test voltage for min. Between coil circuit and contact circuits kv Between wired interface and earth kv. Between independent contacts kv ABR Ep0M a Presentation: page Curves: page References: page Dimensions, schemes: page

53 Curves Interfaces For discrete signals Electromechanical interface modules Electrical durability of contacts Test conditions : in accordance with standard IEC -- set up for rated control voltage, operating rate : 00 cycles/hour. (0. Hz). a.c. loads Operating cycles in millions Operating cycles in millions 0 0 (A) AC- : control of resistive loads and isolated solid state loads via optocoupler cos j (A) AC- : control of isolated solid state loads via transformer cos j 0. Operating cycles in millions 0 0 0,,, d.c. loads (A) AC- : control of weak electromagnetic loads of electromagnets VA make: cos j = 0. break: cos j = 0. AC- : control of electromagnetic loads of electromagnets > VA make: cos j = 0. break: cos j = 0. V V V 0 V Operating cycles in millions Operating cycles in millions V V V 0 0 (A) DC- : control of resistive loads and isolated solid state loads via optocoupler L/R ms 0 0 0,,, DC- : control of electromagnets L/R x (Ue x Ie) in ms. Ue: rated operating voltage Ie: rated operating current (A) 0 Presentation: page Characteristics: pages and References: page Dimensions, schemes: page

54 References Interfaces For discrete signals Electromechanical interface modules Control circuit : a.c. or d.c. ABR E0M ABR EB ABR S0B ABF C0Rppp Input interface modules () (. mm pitch) Display Composition Control circuit Enclosure Reference colour Weight V kg Mechanical () N/O a 0/0 Grey ABR E0M 0.00 C/O a 0/0 Grey ABR E0M 0.00 Mechanical () + LED () N/O z Grey ABR EB 0.0 z Grey ABR EE 0.0 c 0... () Grey ABR EF 0.0 a... Grey ABR EF 0.0 a 0/0 Grey ABR EM 0.0 N/O z Grey ABR EB 0.0 z Grey ABR EE 0.0 c 0...() Grey ABR EF 0.0 a... Grey ABR EF 0.0 a 0/0 Grey ABR EM 0.0 C/O z Grey ABR EB 0.0 z Grey ABR EE 0.0 c 0...() Grey ABR EF 0.0 a... Grey ABR EF 0.0 a 0/0 Grey ABR EM 0.0 Output terminals-relays () (. mm pitch) Display Composition Control circuit Enclosure Reference Weight colour V kg Mechanical () N/O c Grey ABR S0B 0.00 N/O c Grey ABR S0B 0.00 C/O c Grey ABR S0B 0.00 N/C + N/O c Grey ABR S0B 0.00 Mechanical () + LED () N/O z Grey ABR SB 0.0 z Grey ABR SE 0.0 a... Grey ABR SF 0.0 N/O z Grey ABR SB 0.0 z Grey ABR SE 0.0 a 0 Grey ABR SF 0.0 C/O z Grey ABR SB 0.0 z Grey ABR SE 0.0 a 0 Grey ABR SF 0.0 N/C + N/O z Grey ABR SB 0.0 z Grey ABR SE 0.0 a 0 Grey ABR SF 0.0 Commoning links Description For common Colour Distance between cable ends Reference Weight cm kg Commoning Coil White ABF C0RW 0.00 links in modules ABF C0R0W 0.00 x mm a Red ABF C0RR 0.00 ABF C0R0R 0.00 c Blue ABF C0RB 0.00 ABF C0R0B 0.00 () Connection by screw-clamp. () By green mechanical indicator light for contact(s) activated electrically or mechanically by pressing the test button. () By green LED illuminated when control signal is present. () With polarization (+ on A, - on A). 0 Presentation: page Characteristics: pages and Curves: page Dimensions, schemes: page

55 Dimensions, schemes Interfaces For discrete signals Electromechanical interface modules Dimensions ABR E ABR S 0,, 0,, Schemes c V or a 0 V interfaces with mechanical indication N/O C/O N/O N/C + N/O A A A A A A A A z V or z V interfaces with mechanical indication + LED N/O C/O N/O N/C + N/O A A A A A A A A c / a 0 V or a 0 V interfaces with mechanical indication + LED N/O C/O N/O N/C + N/O A A (+) A A (+) A A (+) A A (+) 0 Presentation: page Characteristics: pages and Curves: page References: page

56 Presentation Interfaces For discrete signals Slim electromechanical interface modules ABR- electromechanical interface modules complement the ABR- range. They are characterised by micro relay technology which allows reduced dimensions and very low switching levels (TTL, HCMOS, analogue signals). The ABR- family is in the form of slim compact modules,. mm wide for input interface modules, mm wide for output interface modules and. mm wide for very low level switching products. Description The ABR- comprises families : Input interfaces (. mm pitch) Input interfaces are designed for switching input signals to a processor and are characterized by their high degree of contact reliability : less than fault per 00 million operating cycles at c V, ma. An assured immunity to current leakages ma, and a wide coil voltage range (0. to. Un). Output interfaces ( mm pitch) Output interfaces are designed for the control of preactuators (contactors, solenoid valves, etc) for signalling devices (indicators lamps, audible warnings etc). They are characterized by a high switching capacity and an assured immunity to current leakages ma. A lower cost version without LED signalling is available. Low level switching input and output interfaces (. mm pitch) with C/O contact. These interfaces are designed for switching logic (TTL or HCMOS) and analogue signals. Warning : never switch inductive loads with this type of interface. The front panel of the ABR- electromechanical interface module comprises : LED indicating the control signal state Channel identification : individual characters for AB-R/G or AB-SA marker tag Connection by screw clamp terminal enabling easy attachment of wires per terminal. The layout of the connection terminals for both families (input and output) is designed for rational wiring and a clear separation between the incoming (processing) and outgoing (power and process control) circuits. ABR-SBB 0 Characteristics: pages and 0 Curves: page References: page Dimensions, schemes: page

57 Characteristics Interfaces For discrete signals Slim electromechanical interface modules Examples of applications with PLCs PLC Positive logic discrete inputs / Processing power supply +/ + A A PLC Positive logic transistor (or relay) outputs A A A A A A PLC Analogue inputs Channel X OV A A A A A A + Process power supply +/ Pushbuttons Series contacts ABR Epppp -wire sensors -wire sensors ABR Spppp () () C C Analogue sensors ABR SBB () Essential on inductive loads (can be replaced with peak limiter ). Environment Conforming to standards IEC -- Product certifications UL, CSA, BV, LROS, DNV Degree of protection Conforming to IEC IP 0 (protection against direct contact) Protective treatment TC Flame resistance Conforming to IEC -- Incandescent wire C 0 Conforming to UL V0 Shock resistance Conforming to IEC -- Semi-sinusoidal waves ms 0 gn Vibration resistance Conforming to IEC Hz gn Resistance to electrostatic Conforming to IEC 0- Level kv discharges Resistance to Conforming to IEC 0- Level ; 000 MHz V/m 0 electromagnetic fields Resistance to rapid Conforming to IEC 0- On power supply kv transients Level On I/O kv Resistance to shock Conforming to IEC - Waveform U < 0 V kv 0. waves./0 ms ; 0. J U < 0 V kv. U < 00 V kv. Cross-sections which Flexible cable with no cable end or -wire mm 0.. may be connected Flexible cable with cable end or -wire mm 0.. Rigid cable -wire mm 0. Operating position Any Ambient air temperature Unrestricted operation C Operation from 0... Us C - + (assigned voltage) Operation restricted to Us C () (assigned voltage) Storage C Operating altitude m 000 Installation category Conforming to IEC - II Degree of pollution Conforming to IEC - Mounting Standard rails () Leave space of mm between ABR-Sppp for an ambient temperature C 0 Presentation: page Curves: page References: page Dimensions, schemes: page

58 Characteristics (continued) Interfaces For discrete signals Slim electromechanical interface modules 0 Control circuit characteristics (0 C ambient temperature) Type of interface ABR EB ABR EE ABR EF ABR EF Rated voltage (Us) V c c z z 0... ABR EM ABR SB ABR S0B a c c c Current frequency Hz 0 0 0/0 Energization threshold V..... Maximum operating voltage V Maximum drop-out voltage (Uo) V Maximum current (at Us) ma. Minimum holding current ma.... Maximum dissipated power (at Us) 0 Hz W Hz W Disappearance of voltage ms maximum time up to which contact is maintained Display of control circuit by LED Yes Yes Yes Yes Yes Yes No Yes ABR pbb () Built-in protection reversed polarity Yes Yes Yes Yes Yes Contact characteristics (0 C ambient temperature) Type of interface ABR Epppp ABR SB ABR S0B ABR pbb () Composition N/O N/O N/O C/O Maximum rated operating voltage (Ue max) Conforming to IEC -- a V 0 0 c V Maximum switching voltage a V c V Operating current frequency Hz 0/0 0/0 0/0 0/0 Thermal current Ith Conforming to IEC - A 0.0 Rated operating current (Ie) for million operating cycles Conforming to IEC -- Ue max Conforming to IEC -- Ue : c V AC A AC A 0. AC A 0. DC A.. DC A.. Minimum switching current ma 0.0 Minimum switching voltage V 0.0 Protection against short-circuits For Ik ka (a) and 00 A (c) Type and value of recommended fuse Low level contact Number of faults reliability ( V, ma)/ per n million operating cycles ABR-pB (0 mv, 0 µa) Other characteristics Maximum operating time at Us (bounce included) Between energization of coil and closing of N/O contact Between energization of coil and opening of N/C contact Between de-energization of coil and opening of N/O contact Between de-energization of coil and closing of N/C contact Type : quick-blow fuse with high breaking capacity A.. 0. per 00 million c ms a ms 0 ms c ms a ms 0 ms Maximum duration of bounce ms No make before break Maximum make On energization ms guaranteed between before break or On deenergization ms N/C and N/O contacts break before make time Maximum operating rate Mechanical durability in millions of operating cycles Rated insulation voltage Insulation test voltage for min At no-load Hz At Ie Hz Conforming to IEC - V Conforming to VDE 00 group C V Coil circuit/contact circuits kv rms. Wired interface/earth kv rms.... Between open contacts kv rms 0. () Do not switch inductive loads. Presentation: page Curves: page References: page Dimensions, schemes: page 0

59 Curves Interfaces For discrete signals Slim electromechanical interface modules Electrical durability of contacts (ABR S) Test conditions : in accordance with standard IEC -- set up for rated control voltage. a.c. loads Operating cycles in millions Operating cycles in millions V V V 0 V 0 0 (A) AC : control of resistive loads and isolated solid state loads via optocoupler cos j ,,, (A) AC : control of weak electro-magnetic loads of electro-magnets y VA make : cos j = 0. break : cos j = 0. AC : control of electro-magnetic loads of electro-magnets > VA make : cos j = 0. break : cos j = 0. d.c. loads Operating cycles in millions Operating cycles in millions V V V 0 0 0,,, (A) DC : control of resistive loads and isolated solid state loads via optocoupler L/R ms 0 0 0,,, DC : control of electro-magnets L/R x (Ue x Ie) in ms. Ue : rated operating voltage Ie : rated operating current (with a load protection diode) (A) 0 Presentation: page Characteristics: pages and 0 References: page Dimensions, schemes: page

60 References Interfaces For discrete signals Slim electromechanical interface modules Control circuit : a.c. or d.c. ABR EB ABR SB Input modules (. mm pitch) Indication Composition Control circuit Sold in lots of Unit reference Weight V kg With LED N/O c ABR EB 0.0 c ABR EE 0.0 a... (0 Hz) ABR EF 0.0 a 0... (0 Hz) ABR EF 0.0 a (0/0 Hz) ABR EM 0.0 Output modules ( mm pitch) Indication Composition Control circuit Sold in lots of Unit reference Weight V kg Without N/O c ABR S0B 0.00 With LED N/O c ABR SB 0.0 Modules for very low level switching (. mm pitch) Indication Composition Control circuit Reference Weight V kg Input With LED C/O () c ABR EBB 0.0 Output With LED C/O () c ABR SBB 0.0 Flexible comb accessories Description For common Colour Distance between cable ends Flexible comb modularity x mm Reference Weight cm kg Coil White ABF C0RW 0.00 ABF C0R0W 0.00 a Red ABF C0RR 0.00 ABR EBB ABF C0R0R 0.00 c Blue ABF C0RB 0.00 ABF C0R0B 0.00 () Do not switch inductive loads. ABF C0Rppp 0 Presentation: page Characteristics: pages and 0 Curves: page Dimensions, schemes: page

61 Dimensions, schemes Interfaces For discrete signals Slim electromechanical interface modules Dimensions ABR Epp ABR SpB 0,, 0, ABR EBB ABR SBB 0,, 0,, Circuit diagrams ABR EB (c V) ABR EE (c V) ABR EpF/M (a...0 V) +A A +A ABR S0B (c V) ABR SB (c V) ABR pbb (c V) A A A A +A A +A A +A 0 Presentation: page Characteristics: pages and 0 Curves: page References: page

62 Presentation Interfaces For discrete signals Slim solid-state interface modules The ABS- solid-state interface relays are supplied in the form of compact modules which appear identical to the ABR- electromechanical family. They are designed for interfacing discrete digital control signals exchanged within an automated system between the processor (PLC, numerical controller, etc) and the other components (contactors, solenoid valves, indicator lamps, proximity sensors, etc). They are suitable for use in equipment which requires the benefits of electronic technology : a high operating rate, virtually unlimited durability, silent operation, etc. These products are notable for their high performance and excellent adaptation to industrial environments, ensured by the fact that they conform to the most recent IEC standards. 0 Composition The ABS- range comprises families : Input interfaces The. mm wide input interfaces are designed for switching input signals to processors. They offer a wide choice of electrical isolation between signals due to the wide range of input voltages from c V to a 0 V. Output interfaces Output interfaces are designed for the control of preactuators (contactors, solenoid valves, etc) for the signalling devices (indicator lamps, audible warnings, etc). Two widths are available,. and. mm, depending on the switched current. The. mm version comprises a. mm interface and an integrated mm spacer. This device can, with its increased ventilation, switch high levels of currents. The front panel of the ABS- slim solid-state interface modules comprises: LED indicating the state of the control signal. Channel identification : individual characters for AB-/G or one AB-SA marker tag. Connection by screw clamp terminal enabling easy attachment of wires per terminal. The layout of the connection terminals for both families (input and output) is designed for rational wiring and a clear separation between the incoming (processing) and outgoing (power and process control) circuits. Integrated spacer. ABS- 0 Characteristics: pages to References, curves: page Dimensions, schemes: page

63 Characteristics Interfaces For discrete signals Slim solid-state interface modules Examples of applications with PLCs Interfacing PLC discrete inputs Processing power supply PLC Positive logic discrete inputs Interfacing PLC discrete outputs + PLC Positive logic transistor (or relay) outputs + A A A A A A ABS - E ABS - S A A A A A A A A A A + Process power supply Pushbuttons Series contacts -wire sensors -wire sensors PNP / 0 V Pushbuttons Series contacts -wire sensors + F Environment Conforming to standards IEC -- Draft standard IEC B secretariat 00 Product certifications UL, CSA, BV, LROS, DNV Degree of protection Conforming to IEC IP 0 (protection against direct contact) Protective treatment TC Flame resistance Conforming to IEC -- Incandescent wire C 0 Conforming to UL V0 Shock resistance Conforming to IEC -- Semi-sinusoidal waves ms 0 gn Vibration resistance Conforming to IEC Hz gn Resistance to electrostatic Conforming to IEC 0- Level kv discharges Resistance to Conforming to IEC 0- Level ; 000 MHz V/m 0 electromagnetic fields Resistance to rapid Conforming to IEC 0- On power supply kv transients Level On I/O kv Resistance to shock Conforming to IEC - Waveform U < 0 V kv 0. waves./0 ms ; 0. J U < 0 V kv. U < 00 V kv. Cross-sections which Flexible cable with no cable end or -wire mm 0.. may be connected Flexible cable with cable end or -wire mm 0.. Rigid cable -wire mm 0. Operating position Any Ambient air temperature Unrestricted operation C - + around the device Operation at Us C Storage C Operating altitude m 00 Installation category Conforming to IEC - II Degree of pollution Conforming to IEC - Mounting Standard rails 0 Presentation: page References, curves: page Dimensions, schemes: page

64 Characteristics (continued) Interfaces For discrete signals Slim solid-state interface modules Control circuit characteristics ( C ambient temperature) Type of interface ABS EC0EA ABS EC0EB ABS EC0EE ABS EA0EF ABS EA0EF ABS EA0EM Rated voltage Us c V a V / 0 Hz Maximum voltage c V Negative logic (TTL) 0/ 0 Hz 0/0 0 Hz.. a V 0 0 Maximum current at Us c ma. 0. a ma. State assured c V.. ma... a V. 0 ma.... State 0 assured c V. 0. ma 0.0 a V.. ma.... State display Yes Yes Yes Yes Yes Yes Yes Internal protection reversed polarity Yes Yes Yes Output circuit characteristics Rated operating voltage Ue c V... Min/max voltage c V /0 Min/max current switched ma /0 Maximum residual current at state 0 ma 0. Maximum volt drop at state V Internal protection Reversed polarity External protection Other characteristics Type of interface Time delay characteristics Response time max Ue 0 V Ie ma Maximum switching rate Duty cycle 0 % Ue 0 V Ie ma Rated insulation voltage Insulation test voltage for minute I/O kvrms Wired interface/earth kvrms. Against short-circuits for Ik 00 A (c) Quick-blow fuse, ref. : HA 0. A or equivalent ABS EC0EA ABS EC0EB ABS EC0EE ABS EA0EF ABS EA0EF ABS EA0EM 0 V ms V 0 ms Hz Conforming to IEC - : 00 V Conforming to VDE 00 : 0 V group C ABS EA0EM 0/0 0 Hz ABS EA0EM 0 Presentation: page References, curves: page Dimensions, schemes: page

65 Characteristics (continued) Interfaces For discrete signals Slim solid-state interface modules Control circuit characteristics ( C ambient temperature) Type of interface ABS SC0EB ABS SC0EB ABS SA0MB ABS SA0MB Rated voltage Us c V Maximum voltage V.. Maximum current at Us ma. State assured V.. ma.. State 0 assured V.. ma State display Yes Yes Internal protection reversed polarity Yes Yes Output circuit characteristics Rated operating voltage Ue V c... c... a...0 a...0 Maximum voltage V c. c. a a Maximum continuous current (Ith) () at 0 C Rated operating voltage (Ie) Conforming to IEC -- Single/touching product at C vertical position A. A DC./0../. AC./0../. A DC./0../. AC./0../. A DC 0./0. 0./0. AC./0../. A AC /0. / Minimum current c/a ma 0 Maximum residual current c/a ma. Maximum volt drop V. (Ie 0 ma). (Ie 00 ma) 0 crossing voltage V 0 peak Solid-state dv/dt V/ms 00 Internal protection Reversed polarity External protection Against short-circuits for Ik ka (a) and 00 A (c) Quick-blow fuse with high breaking capacity:. A Other characteristics Maximum response time at Ie 0 ma Maximum switching rate Rated operating voltage Rated Insulation voltage for minute At C ; at Ie: module alone duty cycle 0 % On resistive load duty cycle 0 % 0 V ms (0 Hz) ; (0Hz) V 0 ms 0. 0 (0 Hz) ; (0Hz) Hz DC AC Hz DC AC Hz AC Hz 00 0 Conforming to IEC - : z 00 V Conforming to VDE 00 : 0 V group C I/O kvrms Wired interface/earth kvrms. () See temperature derating curves. 0 Presentation: page References, curves: page Dimensions, schemes: page

66 References, curves Interfaces For discrete signals Slim solid-state interface modules Solid-state input modules Width Input circuit Output circuit Sold in Unit reference Weight Current Nominal voltage Current Nominal voltage lots of mm V V kg. c c ABS EC0EA 0.0 c ABS EC0EB 0.0 c ABS EC0EE 0.0 a (0 Hz) c ABS EA0EF (0 Hz) c ABS EA0EF (0 Hz) c ABS EA0EM (0 Hz) c ABS EA0EM 0.0 Solid-state output modules Width Input circuit Output circuit Sold in Accessories Unit reference Weight Current Nominal voltage Current Nominal voltage lots of mm V A V kg. c c ABS SC0EB 0.0 a. 0 ABS SA0MB 0.0. c c ABS SC0EB 0.0 a 0 ABS SA0MB 0.0 For connecting commons, use ABF C0ppp flexible combs (Please consult your Regional Sales Offices). Temperature derating curve for solid-state output modules Uc = Us = c V ABS SC0EB d.c. ABS SC0EB d.c. Ie (A) Ie (A) / / / T C ambient ABS SA0MB a.c T C ambient ABS SA0MB a.c. Ie (A) Ie (A) / 0 0 / / T C ambient Vertical module alone or adjacent to modules with low heat dissipation T C ambient Horizontal module alone or adjacent to modules with low heat dissipation. 0 Vertical module mounted with modules with identical heat dissipation on both sides. Horizontal module mounted with modules with identical heat dissipation on both sides. Presentation: page Characteristics: pages to Dimensions, schemes: page

67 Dimensions, schemes Interfaces For discrete signals Slim solid-state interface modules Dimensions ABS E/ABS Sp0pp ABS Sp0pp 0,, 0,, Circuit diagrams Solid-state input modules ABS ECpppp ABS EApppp ABS Epppp V +A A A A Solid-state output modules ABS SC0pEB ABS SA0pMB ABS SC0pEB ABS SA0pMB A + A +A A +A A - V - V - V - V + A A A A A A A A F F () F F () Resistive load Inductive load Resistive load Inductive load F: fuse DF SS. () or peak limiter 0 Presentation: page Characteristics: pages to References, curves: page

68 Selection guide Zelio Relay - Solid State Relays SSR solid state relays Applications Panel mounted PF00--Q Contact type N/O SPST contact Control voltage ranges a 0 0 V c SCR output : V Mosfet output :. V Operating voltages a 0 V, 0 V, 0 V c 00 V Type of switching a Zero voltage switching c DC switching Current a 0,, 0,, 0, A c,, 0 A Degree of protection IP0 LED indication Yes () Cooling Thermal protection or with heat sink accessory Solid state relay type SSR P Page () Except for SSR PCDS0A and SSR PCDSA relays. 0 0

69 PF--Q rail mounted N/O SPST contact 0 0 V for SSR DFSA relay, 0 0 V for all the others V for SSR DCDSA relay, V for all the others 0 V Zero voltage switching 0, 0, 0, A IP0 Yes Built-in heat sink SSR D 0

70 Presentation, description, general characteristics Zelio Relay - Solid State Relays SSR solid state relays Presentation The SSR solid state relay range comprises: b relays for panel mounting: SSR P. b relays for rail mounting: SSR D. Description SSR P relays for panel mounting x Ø. holes for fixing. Connection terminals. Connection terminal screws. Input voltage indicator LED, green. Thermal interface which must be via the back of the product. SSR D relays for rail mounting Lugs for plate mounting. Built-in heat sink. Connection terminals. Connection terminal screws. Input voltage indicator LED, green. Bracket for mounting on mm rail. 0 General characteristics SSR P solid state relays, panel mounting Product certifications UR E, CSA LR 0, IEC 00-, IEC Product marking Ambient air temperature around the device Operation C Storage C Encapsulation Thermally conductive epoxy Degree of protection Terminal screw torque Nm Inputs:. (screw: Ø. / length mm) Outputs:. (screw: Ø / length. mm) SSR D solid state relay, rail mounting Product certifications UR E, CSA LR 0, IEC 00-, IEC Product marking Ambient air temperature around the device Encapsulation Degree of protection e IP0 Operation C Storage C e Thermally conductive epoxy Terminal screw torque 0 0 A relays Nm Inputs: / Outputs: IP0 A relays Nm Inputs: / Outputs:.. Max. wire size 0 0 A relays Inputs:. mm - AWG 0 / Outputs:. mm - AWG 0 A relays Inputs:. mm - AWG / Outputs:. mm - AWG Presentation: page Characteristics: page... References: page Dimensions: page Curves: page

71 Characteristics (continued) Zelio Relay - Solid State Relays SSR solid state relays Panel mounting SSR P solid state relays, panel mounting Relay type SCR output, Zero voltage switching SSR PCDS0A SSR PCDSA SSR PCDS0A Input specification Control voltage range c V Minimum turn-on voltage c V Maximum turn-off voltage c V Maximum typical input current ma 0 at c V 0 at c V 0 at c V Output specification Operating voltage a V Load current range A Transient overvoltage Vpk Maximum surge current (. ms) Apk 0 0 Maximum On-state voltage drop at rated current Vrms... Thermal resistance junction to base plate C/W Maximum I²t for fusing (. ms) A²sec Maximum off-state leakage current at rated voltage ma Minimum off-sate dv/dt at maximum rated voltage V/µsec Maximum turn-on time Cycle / / / Maximum turn-off time Cycle / / / Relay type SCR output, Zero voltage switching SSR PCDSA SSR PCDS0A SSR PCDSA Input specification Control voltage range c V Minimum turn-on voltage c V Maximum turn-off voltage c V Typical input current ma 0 at c V 0 at c V 0 at c V Output specification Operating voltage a V Load current range A Transient overvoltage Vpk Maximum surge current (. ms) Apk Maximum On-state voltage drop at rated current Vrms... Thermal resistance junction to base plate C/W Maximum I²t for fusing (. ms) A²sec Maximum off-state leakage current at rated voltage ma Minimum off-sate dv/dt at maximum rated voltage V/µsec Maximum turn-on time Cycle / / / Maximum turn-off time Cycle / / / Relay type SCR output, Zero voltage switching SSR PPS0A SSR PPSA SSR PPS0A Input specification Operating voltage a V Minimum turn-on voltage Vrms Maximum turn-off voltage Vrms Typical input current ma at 0 Vrms at 0 Vrms at 0 Vrms Output specification Operating voltage a V Load current range A Transient overvoltage Vpk Maximum surge current (. ms) Apk Maximum On-state voltage drop at rated current Vrms... Thermal resistance junction to base plate C/W Maximum I²t for fusing (. ms) A²sec Maximum off-state leakage current at rated voltage ma 0 max. 0 max 0 max Minimum off-sate dv/dt at maximum rated voltage V/µsec Maximum turn-on time ms 0 max. 0 max. 0 max. Maximum turn-off time ms 0 max. 0 max. 0 max. Relay type Mosfet output SSR PCDMD SSR PCDMD SSR PCDM0D Input specification Control voltage range (input voltage) c V Minimum turn-on voltage c V... Maximum turn-off voltage c V Typical input current ma. (c V), (c V). (c V), (c V). (c V), (c V) Output specification Control voltage range c V Load current range A 0 Minimum load current ma Maximum surge current (. ms) Apk 0 Maximum On-state voltage drop at rated current Vpk... Thermal resistance junction to base plate C/W Maximum off-state leakage current at rated voltage ma On-state resistance Ω Maximum turn-on time µsec Maximum turn-off time msec

72 Characteristics (continued) Zelio Relay - Solid State Relays SSR solid state relays Panel mounting (continued) rail mounting SSR P solid state relays, panel mounting (continued) Relay type SCR output, Zero voltage switching SSR PPSA SSR PPS0A SSR PPSA Input specification Operating voltage a V Minimum turn-on voltage Vrms Maximum turn-off voltage Vrms Typical input current ma at 0 Vrms at 0 Vrms at 0 Vrms Output specification Operating voltage a V Load current range A Transient overvoltage Vpk Maximum surge current (. ms) Apk Maximum On-state voltage drop at rated current Vrms... Thermal resistance junction to base plate C/W Maximum I²t for fusing (. ms) A²sec Maximum off-state leakage current at rated voltage ma 0 max. max. max. Minimum off-sate dv/dt at maximum rated voltage V/µsec Maximum turn-on time ms 0 max. 0 max. 0 max. Maximum turn-off time ms 0 max. 0 max. 0 max. SSR D solid state relay, rail mounting Relay type SCR output, Zero voltage switching SSR DPS0A SSR DPS0A SSR DPS0A SSR DFSA Input specification Operating voltage a V Minimum turn-on voltage Vrms Maximum turn-off voltage Vrms Typical input current ma (0 Vrms), (0 Vrms) Output specification (0 Vrms), (0 Vrms) (0 Vrms), (0 Vrms) (0 Vrms) Operating voltage a V Load current range A Transient overvoltage Vpk Maximum surge current (. ms) Apk 0 0 Maximum On-state voltage drop at rated current Vrms.... Maximum I²t for fusing (. ms) A²sec Maximum off-state leakage current at rated voltage ma Minimum off-sate dv/dt at maximum rated voltage V/µsec Maximum turn-on time ms 0 max. 0 max. 0 max. 0 max. Maximum turn-off time ms 0 max. 0 max. 0 max. 0 max. Relay type SCR output, Zero voltage switching SSR DCDS0A SSR DCDS0A SSR DCDS0A SSR DCDSA Input specification Control voltage range c V Minimum turn-on voltage c V Maximum turn-off voltage c V Typical input current ma Output specification Operating voltage a V Load current range A Transient overvoltage Vpk Maximum surge current (. ms) Apk 0 0 Maximum On-state voltage drop at rated current Vrms.... Maximum I²t for fusing (. ms) A²sec Maximum off-state leakage current at rated voltage ma Minimum off-sate dv/dt at maximum rated voltage V/µsec Maximum turn-on time Cycle / / / / Maximum turn-off time Cycle / / / / 0

73 Reference Zelio Relay - Solid State Relays SSR solid state relays PF00--Q PF--Q SSR PCDSA Solid state relays, N/O SPST contact b Panel mounting Switching Voltage range Load Input Output current range SCR output Zero voltage switching Reference Weight V V A kg c a 0 0 SSR PCDS0A 0. SSR PCDSA 0. 0 SSR PCDS0A 0. a 0 SSR PCDSA 0. a 0 0 SSR PCDS0A 0. SSR PCDSA 0. a 0 0 a 0 0 SSR PPS0A 0. PF0--Q SSR DCDS0A SSR DCDSA PF0-0-Q PF0--Q SSR AH SSR AT Mosfet output SSR PPSA 0. 0 SSR PPS0A 0. a 0 SSR PPSA 0. a 0 0 SSR PPS0A 0. SSR PPSA 0. DC switching c. c 00 SSR PCDMD 0. b rail mounting SCR output Zero voltage switching SSR PCDMD 0. 0 SSR PCDM0D 0. a 0 0 a 0 0 SSR DPS0A 0. 0 SSR DPS0A 0. 0 SSR DPS0A 0. a 0 0 a 0 SSR DFSA 0. c a 0 0 SSR DCDS0A 0. 0 SSR DCDS0A 0. 0 SSR DCDS0A 0. c a 0 SSR DCDSA 0. Accessories for panel mounted relays Description Heat sink Thermal interface Sold in lots of 0 For use with 0 0A relays () SSR PPSpppp, SSR PCDSpppp, SSR PCDMpppp SSR PPSpppp, SSR PCDSpppp, SSR PCDMpppp Unit reference Weight kg SSR AH 0. SSR AT 0.0 () for load current range, 0 and A relays, please contact your Customer Care Centre. 0 Presentation: page Characteristics: page... References: page Dimensions: page Curves: page

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