TeSys D contactors. Selection guide. All types of control system. Rated operational voltage. Rated operational power in AC-3. Auxiliary contacts

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1 Selection guide TeSys D contactors Applications All types of control system Rated operational current le max AC- (Ue y 0 V) 9 A A A A A A le AC- (q y 0 C) 0/ A / A /0 A 0 A Rated operational voltage 90 V on a and c Number of poles or or or or Rated operational power in AC- Auxiliary contacts Thermal overload relays manual-auto compatible 0/0 V. kw kw kw. kw 7. kw 9 kw 0/00 V kw. kw 7. kw kw kw. kw /0 V kw. kw 9 kw kw kw. kw 00 V. kw 7. kw 0 kw kw. kw. kw 0/90 V. kw 7. kw 0 kw kw. kw. kw 000 V N/C and N/O instantaneous incorporated in the contactors, with add-on blocks common to the whole range comprising up to N/C or N/O instantaneous, up to N/O + N/C time delay and up to N/O or N/C protected contacts and screen continuity terminals. Class 0 A A 0.0 A 0.0 A 0.0 A 0.0 A 0.0 A Class 0. 0 A. A. A. A 7 Suppressor modules (c and low consumption contactors are fitted with a built-in bidirectional peak limiting diode suppressior as standard) Varistor p p p p p p Diode RC circuit p p p p p p Bidirectional peak limiting diode p p p p p p Interfaces Relay output p p p p p p Relay interface with manual override switch p p p p p p Solid state p p p p p p 9 Contactor type references Reversing contactor type references a or c pole D09 D D D D D a pole DT0/ DT/ DT/ DT0/ c pole D09 D D D a pole LC D09 LC D LC D LC D LC D LC D c pole LC D09 LC D LC D LC D LC D LC D a pole LC DT0 LC DT LC DT LC DT0 c pole LC DT0 LC DT LC DT LC DT0 0 Pages Contactors to 7 Reversing contactors to

2 0 A 0 A A 0 A 9 A A 0 A 0 A 0 A A 00 A 90 V a or c 000 V on a supply, 90 V on c supply kw kw. kw kw kw 0 kw 0 kw. kw kw 0 kw 7 kw kw kw 7 kw kw /0 kw 0 kw kw kw 9 kw 0 kw kw 0 kw 7 kw kw kw 7 kw 90 kw 0 kw kw 7 kw kw kw 0 kw 00 kw kw kw 7 kw 90 kw N/C and N/O instantaneous incorporated in the contactors, with add-on blocks common to the whole range comprising up to N/C or N/O instantaneous, up to N/O + N/C time delay and up to N/O or N/C protected contacts and screen continuity terminals. 0 A 0 A A 7 0 A 7 0 A 0 0 A 0 0 A 0 A 0 A A 7 0 A 0 0 A 0 0 A p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p p D0A D0A DA D0 D9 D D0 DT0A DT0A D0 D DT0A DT0A D0 D LC D0A LC D0A LC DA LC D0 LC D9 LC D LC D0 LC D0A LC D0A LC DA LC D0 LC D to 7 to 7 9 0

3 Selection guide TeSys D low consumption contactors Applications Automation systems Rated operational current le max AC- (Ue y 0 V) 9 A A A Rated operational voltage le AC- (q y 0 C) 0/ A 0/ A / A 90 V Number of poles or or or Rated operational power in AC- 0/0 V. kw kw kw 0/00 V kw. kw 7. kw /0 V kw. kw 9 kw 00 V. kw 7. kw 0 kw 0/90 V. kw 7. kw 0 kw Coil consumption. W (00 ma - V) Operating ranges Operating time at 0 C and at Uc Closing Opening 0.7. Uc 70 ms ms 7 Auxiliary contact block modules Interference suppression N/C and N/O instantaneous contacts incorporated in the contactors, with add-on blocks common to the whole range, comprising up to N/C or N/O instantaneous standard contacts Built-in suppression as standard, by bi-directional peak limiting diode Contactor type -pole D09 D D -pole DT0/D09 DT/D DT/D Reversing contactor type -pole LC D09 LC D LC D 9 -pole LC DT0 LC DT LC DT Pages Contactors to 7 Reversing contactors to 0 () With low consumption kit LA DBL (see page 7). () With low consumption kits LA DBL (see page 7).

4 A A A 0 A 0 A A /0 A 0 A 0 A 0 A 0 A 90 V 90 V or. kw 7. kw 9 kw kw kw. kw kw kw. kw. kw kw 0 kw kw kw. kw kw /0 kw 0 kw kw. kw. kw kw 0 kw 7 kw kw. kw. kw 0 kw kw 7 kw. W (00 ma - V) 0. W ( ma - V) for relay LA DFB + the power consumed by the contactor coil 0.7. Uc 70 ms ms N/C and N/O instantaneous contacts incorporated in the contactors, with add-on blocks common to the whole range, comprising up to N/C or N/O instantaneous standard contacts 7 Built-in suppression as standard, by bi-directional peak limiting diode D D D D0A () D0A () DA () DT0/D DT0A () LC D LC D LC D LC D0A () LC D0A () LC DA () LC DT0 to 7 9 to 0

5 Selection For utilisation category AC- Operational current and power conforming to IEC (q y 0 C) Contactor size Maximum operational current. in AC- Rated operational power P. (standard motor power ratings) / LP K0 / LP K09 K K y 0 V A /0 V kw /00 V kw V kw V kw D09 D D D D D D0A 00 V kw /90 V kw V kw Maximum operating rate in operating cycles/hour () On-load factor Operational power D09 D D D D D D0A y % P P y % P Operational current and power conforming to UL, CSA (q y 0 C) Contactor size Maximum operational current. in AC- Rated operational power P. (standard motor power ratings. 0 Hz) / LP K0 / LP K09 / LP K y 0 V A /0 V HP /0 V HP /0 V HP D09 D D D D D D0A 7/00 V HP () Depending on the operational power and the on-load factor (q y 0 C). 9 0 Characteristics : pages 0 to References : pages to 7 Dimensions, schemes : pages to 7

6 D0A DA D0 D9 D D0 F F F F F00 F00 F0 F70 F00 BL BM BP BR, D0A DA D0 D9 D D0 F F F F F00 F00 F0 F70 F00 BL BM BP BR D0A DA D0 D9 D D0 F F F F0 F00 F00 F0 F70 F

7 Selection (continued) For utilisation category AC- Selection according to required electrical durability, in category AC- (Ue y 0 V) Control of -phase asynchronous squirrel cage motors with breaking whilst running. The current broken (Ic) in category AC- is equal to the rated operational current (Ie) of the motor. Millions of operating cycles 0, LP, LP K0, LP, LP K09 -D09, LP, LP K D K D D D D, 0, 0, 0, Current broken in A 0 V 0, 0,7,, D0A, D0A 7, DA D0 D9 D D0, 0 kw 00 V 0,7,,,,,, 0 V kw 7, 7,,, kw 7 9 Operational power in kw-0 Hz. Example: Asynchronous motor with P =. kw - Ue = 00 V - Ie = A - Ic = Ie = A. or asynchronous motor with P =. kw - Ue = V - Ie = A - Ic = Ie = A. million operating cycles required.. The above selection curves show the contactor rating needed: D. Selection according to required electrical durability, in category AC- (Ue = 0/90 V) () Control of -phase asynchronous squirrel cage motors with breaking whilst running. The current broken (Ic) in category AC- is equal to the rated operational current (Ie) of the motor. Millions of operating cycles 0, 0, D09 0, 7 0, 9 D D D D, D D0A D0A DA D0 D9 D D Current broken in A () For Ue = 000 V, use the 0/90 V curves, but do not exceed the operational current at the operational power indicated for 000 V. 0 Characteristics : pages 0 to References : pages to 7 Dimensions, schemes : pages to 7

8 Selection (continued) For utilisation category AC- Selection according to required electrical durability, in category AC- (Ue y 0 V) Control of -phase asynchronous squirrel cage motors with breaking whilst running. The current broken (Ic) in category AC- is equal to the rated operational current (Ie) of the motor. Millions of operating cycles 0, 0, 0, F F F F0 F00 F00 F0 F00 F70 BL, BM () BP BR 0, Current broken in A 0 V 0 V, 7,, kw 0 V 00 V, kw 0 V, 0 7 Operational power in kw-0 Hz. Example: Asynchronous motor with P = kw - Ue = 0 V - Ie = A - Ic = Ie = A or asynchronous motor with P = kw - Ue = V - Ie = 0 A - Ic = Ie = 0 A. million operating cycles required. The above selection curves show the contactor rating needed: F kw () The dotted lines are only applicable to BL contactors. Selection according to required electrical durability, in category AC- (Ue = 0/90 V) Control of -phase asynchronous squirrel cage motors with breaking whilst running. The current broken (Ic) in category AC- is equal to the rated operational current (Ie) of the motor. 0 F F F F0 F00 F00 F0 F70 F00 BL, BM BP BR 7 Millions of operating cycles, 0, 0, () 0, Current broken in A 0 V 90 V Example: Asynchronous motor with P = kw - Ue = 0 V - Ie = 0 A - Ic = Ie = 0 A. million operating cycles required. The above selection curves show the contactor rating needed: F kw 9 0 () The dotted lines are only applicable to BL contactors. Characteristics : pages 0 to References : pages to 7 Dimensions, schemes : pages to 7 9

9 Selection For utilisation category AC- Maximum operational current (open-mounted device) Contactor size Maximum operating rate. in operating cycles/hour Connection conforming to IEC 097- Operational current in AC- in A, according to the. ambient temperature,. conforming to IEC 097- Maximum operational. power y 0 C () Please consult your Regional Sales Office. / LP K09 / LP K D09 DT0 D DT D DT D DT0 D D D0A DT0A Cable c.s.a. mm 0 0 Bar c.s.a. mm y 0 C A y 0 C A y 70 C A (at UC) () () 7 () 7 0/0 V kw V kw /00 V kw 0 7 V kw V kw 9 00 V kw /90 V kw V kw Increase in operational current by parallel connection of poles Apply the following coefficients to the currents or power values given above; these coefficients take into account an often unbalanced current distribution between the poles: b b b poles in parallel: K =. poles in parallel: K =. poles in parallel: K =. Selection according to required electrical durability, in category AC- (Ue y 0 V) 7 Millions of operating cycles 0, 0,, LP, LP K09, LP, LP K D09 D D D D, D D0A D0A DA, LP D0 D9 D D0 0, 0, 0, 9 0 Control of resistive circuits (cos φ u 0.9). The current broken (Ic) in category AC- is equal to the current (Ie) normally drawn by the load. Example: b b b 0, Ue = 0 V - Ie = 0 A q y 0 C - Ic. =. Ie. =. 0 A. million operating cycles required. The above selection curves show the contactor rating needed: either or LP D0. Current broken in A Characteristics : pages 0 to 0 Réferences : pages to 7 Dimensions, schemes : pages to 7

10 / D0A DA LP DT0A D0 D9 D D0 F F F F F00 F00 F0 F70 F00 BL BM BP BR x 0 x 0 x 00 x 0 x 0 x 0 x 00 x x 0 0 F F F F0 F00 F00 F0 F00 F70 BL, BM BP BR Millions of operating cycles 0, 0, 0, 0, () 7 0, Current broken in A Example: b Ue = 0 V - Ie = 00 A - q y 0 C - Ic = Ie = 00 A. b million operating cycles required. b The above selection curves show the contactor rating needed: F70. () The dotted lines are only applicable to F contactors. 9 0

11 Selection For utilisation categories AC- or AC- Maximum breaking current Category AC-: slip ring motors - breaking the starting current. Category AC-: squirrel cage motors - breaking the starting current. Contactor size / LP K0 / LP K09 In category AC- (le max) Ue y 0 V A le max broken =. x l motor 0 V < Ue y 90 V le max broken =. x l motor A Depending on the maximum operating rate () and the on-load factor, q y 0 C () From 0 and % to 00 and 0 % A From 0 and 0 % to 00 and 0 % A From 0 and 0 % to 00 and 0 % A / LP K D09 D D D D D D0A From 0 and % to 00 and 0 % A From 0 and % to 00 and 0 % A 0 0 () Do not exceed the maximum number of operating cycles.. () For temperatures higher than 0 C, use a maximum operating rate value equal to 0% of the actual value when selecting from the tables. Counter current braking (plugging) The current varies from the maximum plug-braking current to the rated motor current. The making current must be compatible with the rated making and breaking capacities of the contactor. As breaking normally takes place at a current value at or near the locked rotor current, the contactor can be selected using the criteria for categories AC- and AC-. Permissible AC- power rating for operating cycles Operational voltage LCp/ LPp K0 LCp/ LPp K09 0/0 V kw /00 V kw LCp LPp K LCp D09 LCp D LCp D LCp D LCp D LCp D LCp D0A V kw V kw V kw /90 V kw Characteristics : pages 0 to References : pages to 7 Dimensions, schemes : pages to 7

12 .. D0A DA D0 D9 D D0 F F F F0 F0 F00 F0 F70 F00 BL BM BP BR LCp LCp D0A DA LCp D0 LCp D9 D D0 F F F F F00 F00 F0 F70 F00 BL BM BP BR 7 9 0

13 Selection (continued) For utilisation categories AC- or AC- Selection according to required electrical durability, in categories AC- or AC- (Ue y 0 V) Control of -phase asynchronous squirrel cage motors (AC-) or slip ring motors (AC-) with breaking whilst motor stalled. The current broken (Ic) in AC- is equal to. x Ie. The current broken (Ic) in AC- is equal to x Ie. (Ie = rated operational current of the motor). 0,, LP, LP K0, LP, LP K09,K D09 D D D D et D D0A D0A DA D0 D9 D D0 Millions of operating cycles 0, 0, 0, 0, 0,0 0,0 0,0 0,0 0,0 0,0 () 0, Example: b Asynchronous motor with P =. kw - Ue = 00 V - Ie = A. Ic = x Ie = A b or asynchronous motor with P =. kw - Ue = V - Ie = A. Ic = x Ie = A. b operating cycles required. b The above selection curves show the contactor rating needed: D. () The dotted lines are only applicable to, LP K contactors. Current broken in A Selection according to required electrical durability, use in category AC- (0 V < Ue y 90 V) Control of -phase asynchronous squirrel cage motors with breaking whilst motor stalled The current broken (Ic) in AC- is equal to. x Ie. The current broken (Ic) in AC- is equal to x Ie. (Ie = rated operational current of the motor). 7 0, D09 D D D D, D D0A D0A DA D0 D9 D D0 9 Millions of operating cycles 0, 0, 0, 0, 0,0 0,07 0,0 0,0 0,0 0,0 0,0 0 0, Current broken in A Characteristics : pages 0 to References : pages to 7 Dimensions, schemes : pages to 7

14 Selection (continued) For utilisation categories AC- or AC- Selection according to required electrical durability, in categories AC- or AC- (Ue y 0 V) Control of -phase asynchronous squirrel cage motors (AC-) or slip ring motors (AC-) with breaking whilst motor stalled. The current broken (Ic) in AC- is equal to x Ie. (Ie = rated operational current of the motor). Millions of operating cycles 0, 0, 0, 0, 0, 0,0 F F F F0 F00 F00 F0 F00 F70 BL, BM BP BR 0,0 0,0 0,0 0, Current broken in A Example: b Asynchronous motor with P = 90 kw - Ue. = 0 0 V - Ie. = A. Ic = x Ie = A. or asynchronous motor with P = 90 kw - Ue = V - Ie = A. Ic = x Ie = 990 A. b operating cycles required. b The above selection curves show the contactor rating needed: F. Selection according to required electrical durability, use in category AC- (0 V < Ue y 90 V) Control of -phase asynchronous squirrel cage motors with breaking whilst motor stalled. The current broken (Ic) in AC- is equal to x Ie. (Ie = rated operational current of the motor). Millions of operating cycles 0, 0, 0, 0, 0, 0,0 F F F F0 F00 F00 F0 F70, F00 BL, BM BP BR 7 0,0 0,0 0,0 9 0, Current broken in A 0 Characteristics : pages 0 to References : pages to 7 Dimensions, schemes : pages to 7

15 Selection For utilisation categories DC- to DC- + pole + poles + poles + poles Rated operational current (Ie) in Amperes, in utilisation category DC-, resistive loads: time constant L y ms, ambient temperature y 0 C R Rated operational voltage Ue V No. of poles connected in series Contactor rating () D09 DT0 D DT D DT D DT0 D D D0A / DT0A Rated operational current (Ie) in Amperes, in utilisation category DC- to DC-, inductive loads: time constant L y ms, ambient temperature y 0 C R Rated operational voltage Ue V No. of poles connected in series Contactor rating () D09 DT0 D DT D DT D DT0 D D D0A / , 0, 0, 0, 0, 0, 0, DT0A () For rated operational currents of contactors and LP K: please consult your Regional Sales Office. Characteristics: pages 0 to References: pages to 7 Dimensions, schemes: pages to 7

16 D0A DA DT0A D0 D9 D D0 F F F F0 F00 F00 F0 F70 F00 BL BM BP BR ,, D0A DA DT0A D0 D9 D D0 F F F F0 F00 F00 F0 F70 F00 BL BM BP BR Characteristics: pages 0 to References: pages to 7 Dimensions, schemes: pages to 7 7

17 Selection For utilisation categories DC- to DC- Selection according to required electrical durability, use in categories DC- to DC- The criteria for contactor selection are: b the rated operational current Ie, b the rated operational voltage Ue, b the utilisation category and the time constant L/R, b the required electrical durability. Maximum operating rate (operating cycles) The following limits must not be exceeded: 0 operating cycles/hour at rated operational current Ie. Electrical durability Millions of operating cycles 0 0, 0, D09 D D D D, D D0A, DT0A D0A DA, DT0A, LP D0 D9 D, D0 0, 0, 0, 0,0 0,0 0,0 0,0 0,0 0, 0, 0, 0, 0, 0, 0,7 0, Power broken per pole in kw Example Series wound motor - P =. kw - Ue = 00 V - Ie = 7. A. Utilisation: reversing, inching. b Utilisation category = DC-. b Select contactor D09 with poles in series. b The power broken is: Pc total =. x 00 x 7. =.7 kw. b The power broken per pole is:. kw. b The electrical durability read from the curve is u millions of operating cycles. Use of poles in parallel Electrical durability can be increased by using poles connected in parallel. With N poles connected in parallel, the electrical durability becomes: electrical durability read from the curves x N x 0.7. Note: When the poles are connected in parallel, the maximum operational currents indicated on pages et 7 must not be exceeded. Note: Ensure that the connections are made in such a way as to equalise the currents in each pole. Characteristics: pages 0 to References: pages to 7 Dimensions, schemes: pages to 7

18 Selection (continued) For utilisation categories DC- to DC- Selection according to required electrical durability, use in categories DC- to DC- Determining the electrical durability The electrical durability can be read directly from the curves below, having previously calculated the power broken as follows:. P broken = U broken x l broken.. The tables below give the values of Uc and Ic for the various utilisation categories. Power broken Utilisation categories U broken I broken P broken DC- Non inductive or slightly inductive loads Ue Ie Ue x Ie DC- Shunt wound motors, breaking whilst motor running 0. Ue Ie 0. Ue x Ie DC- Shunt wound motors, reversing, inching Ue. Ie Ue x. Ie DC- Series wound motors, breaking whilst motor running 0. Ue Ie 0. Ue x Ie DC- Series wound motors, reversing, inching Ue. Ie Ue x. Ie Millions of operating cycles 0 0, 0, 0, F, F F F0 F00 F00 F0, F00 F70 BL, BM BP BR 0, 0, 0,0 0,0 0,0 0,0 0, Power broken per pole in kw Example Series wound motor: P = 0 kw - Ue = 00 V - Ie = 00 A. Utilisation: reversing, inching. Utilisation category = DC-. b b b b Select contactor F with poles in series. The power broken is: Pc total =. x 00 x 00 = 00 kw. The power broken per pole is 0 kw. The electrical durability read from the curve is operating cycles. Characteristics: pages 0 to References: pages to 7 Dimensions, schemes: pages to 7 9

19 Characteristics TeSys D contactors Contactor type D09 D DT0 and DT Environment Rated insulation voltage (Ui) Conforming to IEC 097--, overvoltage category III,. degree of pollution: Conforming to UL, CSA V 00 D D DT and DT0 D0A DA DT0A and DT0A V D0 D9 D and D0 Rated impulse withstand voltage (Uimp) Conforming to standards Conforming to IEC 097 kv IEC/EN 097--, IEC/EN 097--, UL 0, CSA C. n. Product certifications Degree of protection () (front face only) Conforming to VDE 00. and IEC 09 Power circuit connections Coil connection UL, CSA (), CCC, GOST GL, DNV, RINA, BV, LROS (pending for contactors D0A to DA) Protection against direct finger contact IP X Protection against direct finger contact IP X Protective treatment Conforming to IEC TH Ambient air temperature around the device Storage C Operation C Permissible C , for operation at Uc Maximum operating altitude Without derating m 000 Operating positions () Without derating. in the following positions a/c a c Positions that are. not permissible For c contactors D09 to DA. Flame resistance Conforming to UL 9 V Conforming to IEC 09-- C 0 Shock resistance () / sine wave = ms Vibration resistance () 00 Hz Contactor open 0 gn gn 0 gn gn gn Contactor closed gn gn gn 0 gn gn Contactor open gn Contactor closed gn gn gn gn gn () Contactor D9 with d.c. coil is not UL/CSA certified. () Protection provided for the cabling c.s.a.'s indicated on the next page and for connection by cable. () When mounting on a vertical rail, use a stop. () Without modifying the contact states, in the most unfavourable direction (coil energised at Ue). 0

20 Characteristics (continued) TeSys D contactors Contactor type D09 and D DT0 and DT D (P) Power circuit connections Screw clamp terminal connections D (P) D D D and D (P) DT and DT0 Tightening Screw clamp terminals Connector inputs Flexible cable without cable end Flexible cable with cable end Solid cable without cable end D0A to DA DT0A and DT0A () Screw clamp terminals D0 and D9 Connector input D and D0 Connector inputs conductor mm conductors mm and conductor mm conductors mm... 0 and conductor mm conductors mm.. 0. and Screwdriver Philips N N N N Flat screwdriver Ø Ø Ø Ø Ø Ø Ø Hexagonal key Tightening torque N.m : y mm Spring terminal connections () Flexible cable without cable end conductor mm. (: DT) conductors mm. (except DT) Connection by bars or lugs : mm 0 9 Bar c.s.a. x x Lug external Ø mm Ø of screw mm M. M. M M M. M M M Screwdriver Philips N N N N N Flat screwdriver Ø Ø Ø Ø Ø Ø Ø Key for hexagonal headed screw 0 0 Tightening torque N.m Control circuit connections Connection by cable (tightening via screw clamps) Flexible cable without cable end Flexible cable with cable end Solid cable without cable end conductor mm. conductors mm. conductor mm.. conductors mm conductor mm. conductors mm. Screwdriver Philips N N N N N N N N Flat screwdriver Ø Ø Ø Ø Ø Ø Ø Ø Ø Tightening torque N.m Spring terminal connections () Flexible cable without cable end Connection by bars or lugs conductor mm conductors mm Lug external Ø mm Ø of screw mm M. M. M. M. M. M. M. M. Screwdriver Philips N N N N N N N N Flat screwdriver Ø Ø Ø Ø Ø Ø Ø Ø Ø Tightening torque N.m () BTR screws: hexagon socket head. In accordance with local electrical wiring regulations, a size insulated Allen key must be used (reference LAD ALLEN, see page 7). () If cable ends are used, choose the next size down (example: for. mm, use. mm ) and square crimp the cable ends using a special tool.

21 Characteristics (continued) TeSys D contactors Contactor type D09 (P) Pole characteristics Rated operational current (Ie) (Ue y 0 V) DT0 D09 D (P) DT D D (P) DT D In AC-, q y 0 C A 9 In AC-, q y 0 C A () 0 () () 0 () 0 Rated operational voltage (Ue) Up to V Frequency limits Of the operational current Hz Conventional thermal current (Ith) q y 0 C A () 0 () () 0 () 0 Rated making capacity (0 V) Conforming to IEC 097 A Rated breaking capacity (0 V) Conforming to IEC 097 A Permissible short time rating No current flowing for preceding minutes with q y 0 C Fuse protection against short-circuits. (U y 90 V) For s A For 0 s A For min A 0 For 0 min A Without thermal overload relay,. gg fuse type A 0 0 type A 0 0 With thermal overload relay A See pages 0 to, for am or gg fuse ratings corresponding to the associated thermal overload relay Average impedance per pole At Ith and 0 Hz mw... Power dissipation per pole for the above operational currents AC- W AC- W.... Control circuit characteristics, a.c. supply Rated control circuit voltage (Uc) 0/0 Hz V 90 Control voltage limits 0 or 0 Hz coils Operation Drop-out 0/0 Hz coils Operation 0.. Uc on 0 Hz and 0.. Uc on 0 Hz at 0 C D (P) DT0 D Average consumption at 0 C and at Uc Drop-out Uc at 0 C a 0 Hz Inrush 0 Hz coil VA Cos j 0.7 0/0 Hz coil VA 70 Sealed 0 Hz coil VA Cos j 0. 0/0 Hz coil VA 7 a 0 Hz Inrush 0 Hz coil VA Cos j 0.7 0/0 Hz coil VA 70 Sealed 0 Hz coil VA Cos j 0. 0/0 Hz coil VA 7. Heat dissipation 0/0 Hz W Operating time () Mechanical durability in millions of operating cycles Closing "C" ms Opening "O" ms 9 0 or 0 Hz coil 0/0 Hz coil on 0 Hz Maximum operating rate at ambient temperature y 0 C In operating cycles per hour 00 () Versions with spring terminal connections: A for D09 and D (0 A possible with x. mm in parallel), A for D to D ( A possible for D connected with x mm cables in parallel; 0 A possible for D and D connected with x mm in parallel). () The closing time "C" is measured from the moment the coil supply is switched on to closure of the main poles. The opening time "O" is measured from the moment the coil supply is switched off to the moment the main poles separate. Selection : pages to 7 References: pages to 7 Dimensions: pages to Schemes: pages and 7

22 D D D0A DT0A D0A DA DT0A D0 D9 D D () See pages 0 to for am or gg fuse ratings corresponding to the associated thermal overload relay Uc at C Uc at C Uc at C 0.. Uc on 0 Hz and. 0.. Uc on 0 Hz. at 0 C 0.. Uc on 0 Hz and 0.. Uc on 0 Hz at 0 C 0.. Uc on 0 Hz and 0.. Uc on 0 Hz. at C 0.. Uc on 0/0 Hz at C Uc at 0 C Uc at 0 C Uc at C Uc at C

23 Characteristics (continued) TeSys D contactors Contactor type d.c. control circuit characteristics Rated control circuit voltage (Uc) D09 D DT0 DT0 D0A DA DT0 and DT0 or LP D0 D9 D and D0 c V Rated insulation voltage Conforming to IEC 097- V 90 Conforming to UL, CSA V 00 Control voltage limits Operation Standard coil Average consumption at 0 C and at Uc Operating time () average at Uc Drop-out Wide range coil 0.7. Uc at 0 C 0.7. Uc at 0 C 0.. Uc at C 0.7. Uc at C Uc at 0 C Uc. at 0 C Uc. at C 0.7. Uc at C Uc at C c Inrush W Sealed W Closing "C" ms ± % 0 ± % Opening O ms 0 ± 0 % 0 ± 0% Note: The arcing time depends on the circuit switched by the poles. For all normal -phase applications, the arcing time is less than 0 ms. The load is isolated from the supply after a time equal to the sum of the opening time and the arcing time. Time constant (L/R) ms 7 Mechanical durability at Uc In millions of operating cycles Maximum operating rate at ambient temperature y 0 C In operating cycles per hour Low consumption control circuit characteristics Rated insulation voltage Conforming to IEC 097- V 90 Conforming to UL, CSA V 00 Maximum voltage Of the control circuit on c V 0 Average consumption d.c. at 0 C and at Uc Wide range coil (0.7. Uc) Inrush W. Sealed W. Operating time () at Uc and at 0 C Voltage limits (q y 0 C) of the control circuit Closing "C" ms 77 ± % Opening O ms ± 0 % Operation 0. to. Uc Drop-out Uc Time constant (L/R) ms 0 Mechanical durability In millions of operating cycles 0 Maximum operating rate at ambient temperature y 0 C In operating cycles per hour 00 () The operating times depend on the type of contactor electromagnet and its control mode. The closing time "C" is measured from the moment the coil supply is switched on to initial contact of the main poles. The opening time "O" is measured from the moment the coil supply is switched off to the moment the main poles separate Selection : pages to 9 References: pages to 7 Dimensions: pages to Schemes: pages and 7

24 Characteristics (continued) TeSys D contactors Characteristics of auxiliary contacts incorporated in the contactor Mechanically linked contacts Conforming to IEC Each contactor has N/O and N/C contacts mechanically linked on the same movable contact holder Mirror contact Conforming to IEC The N/C contact on each contactor represents the state of the power contacts and can be connected to a PREVENTA safety module Rated operational voltage (Ue) Rated insulation voltage (Ui) Conventional thermal current (Ith) Up to V 90 Conforming to IEC 097- V 90 Conforming to UL, CSA V 00 For ambient temperature y 0 C A 0 Frequency of the operational current Hz 00 Minimum switching U min V 7 capacity l = 0 I min ma Short-circuit protection Conforming to IEC gg fuse: 0 A Rated making capacity Conforming to IEC 097--, I rms A a: 0, c: 0 Short-time rating Permissible for s A ms A 0 00 ms A 0 Insulation resistance MW > 0 Non-overlap time Guaranteed between. N/C and N/O contacts Operational power of contacts conforming to IEC ms. (on energisation and on de-energisation) a.c. supply, categories AC- and AC- Electrical durability (valid for up to 00 operating cycles/hour) on an inductive load such as the coil of an electromagnet: making current (cos j 0.7) = 0 times the power broken (cos j 0.). d.c. supply, category DC- Electrical durability (valid for up to 00 operating cycles/hour) on an inductive load such as the coil of an electromagnet, without economy resistor, the time constant increasing with the load. V V 0 0 million operating cycles VA W million operating cycles VA W 0 million operating cycles VA W AC- Millions of oprating cycles 0 0, 0, 0, 0, 0, DC- Millions of oprating cycles 0 0, 0, 0, 0, 0, 0 V V V V 0 V 0, 0, 0, 0, 0, 0, 0, 0, 0 Current broken in A 0, 0, 0, 0, 0, 0, 0, 0, 0 Current broken in A Selection : pages to 9 References: pages to 7 Dimensions: pages to Schemes: pages and 7

25 Characteristics Auxiliary contact blocks without dust and damp protected contacts for TeSys D contactors Contact block type LAD N or LAD C LAD T and LAD S LAD R LAD Environment Conforming to standards IEC 097--, NF C -0, VDE 00, BS 79, EN Product certifications UL, CSA Protective treatment Conforming to IEC 00 TH Degree of protection Conforming to VDE 00 Protection against direct finger contact IP X Ambient air temperature around the device Storage C Operation C Permissible for operation at Uc C Maximum operating altitude Without derating m 000 Connection by cable Phillips N and Ø mm Flexible or solid cable. with or without cable end Spring terminal connections Flexible or solid cable. without cable end mm Min: x ; max: x. mm Max: x. Instantaneous and time delay contact characteristics Number of contacts, or Rated operational voltage (Ue) Rated insulation voltage. (Ui) Up to V 90 Conforming to IEC V 90 Conforming to UL, CSA V 00 Conventional thermal current (Ith) For ambient temperature. y 0 C A 0 Frequency of the operational current Hz 00 Minimum switching capacity U min V 7 Short-circuit protection Conforming to IEC and VDE 00. gg fuse Rated making capacity Conforming to. IEC I min ma A 0 I rms A a: 0; c: 0 Short-time rating Permissible for s A ms A 0 00 ms A 0 Insulation resistance MW > 0 Non-overlap time Guaranteed between. N/C and N/O contacts Overlap time Time delay (LADT, R and S contact blocks) Accuracy only valid for. setting range indicated. on the front face Guaranteed between N/C and N/O contacts on LAD C Ambient air temperature. for operation ms. (on energisation and on de-energisation) ms. C Repeat accuracy ± % ± % Drift up to 0. million. operating cycles Drift depending on. ambient air temperature + % + % 0. % per C 0. % per C Mechanical durability In millions of operating cycles 0 0 Operational power of contacts See page References : pages 9 and 70 Dimensions : pages and Schemes : pages and 7

26 Characteristics (continued) Auxiliary contact blocks with dust and damp protected contacts for TeSys D contactors Contact block type LA DX LA DZ LA DY Environment Conforming to standards IEC097--, VDE00 Protected Non protected Product certifications UL, CSA Protective treatment Conforming to IEC 00 TH Degree of protection Conforming to VDE 00 Protection against direct finger contact IP X Ambient air temperature Storage and operation C Cabling Phillips N and Ø mm Flexible or solid conductor. with or without cable end mm Min: x ; max: x. Number of contacts Contact characteristics Rated operational voltage (Ue) Rated insulation voltage. (Ui) Conventional thermal current (Ith) Maximum operational current (Ie) Up to V Conforming to IEC V Conforming to UL, CSA V 00 For ambient temperature. y 0 C A 0 ma Frequency of the operational current Hz 00 Minimum switching capacity U min V Short-circuit protection Conforming to IEC 097- gg fuse Rated making capacity Conforming to. IEC 097- I min ma A 0 I rms A a:0; c: 0 Short-time rating Permissible for s A ms A 0 00 ms A 0 Insulation resistance MW > 0 > 0 > 0 > 0 Mechanical durability In millions of operating cycles 0 Materials and technology used for dust and damp protected contacts Silver - Single.break Silver - Single.break Gold - Single break with.crossed bars References : page 9 Dimensions : pages and Schemes : pages and 7 7

27 Characteristics (continued) Auxiliary contact blocks with dust and damp protected contacts for TeSys D contactors Rated operational power of contacts (conforming to IEC 097--) a.c. supply, categories AC- and AC- Electrical durability (valid for up to 00 operating cycles/hour) on an inductive load such as the coil of an electromagnet:. making current (cos j 0.7) = 0 times the power broken (cos j 0.). V million operating cycles VA million operating cycles VA million operating cycles VA Millions of oprating cycles 0 7 0, 0,7 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,7 0, Current broken in A d.c. supply, category DC- Electrical durability (valid for up to 00 operating cycles/hour) on an inductive load such as the coil of an electromagnet, without economy resistor, the time constant increasing with the load. V 0 0 million operating cycles W million operating cycles W million operating cycles W 0 Millions of operating cycles V V V V 0, 0,7 0, 0, 0, 0, 0 V 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,7 0, Current broken in A References : pages 9 and 70 Dimensions : pages and Schemes : pages and 7

28 Characteristics Control modules, coil suppressor modules and mechanical latch blocks for TeSys D contactors Environment Conforming to standards IEC Product certifications UL, CSA Protective treatment Conforming to IEC 00 TH Degree of protection Conforming to VDE 00 Protection against direct finger contact IP X Ambient air temperature around the device Storage C Operation C + Permissible for operation at Uc C + 70 Suppressor modules Module type LA DA, LAD RC, LAD RC LA DB, LAD T, LAD T Type of protection RC circuit Bidirectional. peak limiting diode LA DC, LAD D LA DE, LAD V, LAD V Rated control circuit voltage (Uc) V a a or c 0 c 0 a or c 0 Maximum peak voltage Uc Uc Uc Uc Natural RC frequency / V Hz 00 Diode 0/7 V Hz 00 0/0 V Hz 00 0/ V Hz 0 Varistor Mechanical latch blocks () Mechanical latch block type LAD K0 LA DK0 For use on contactor D09 DA DT0 DT0A Product certifications UL, CSA UL, CSA Rated insulation voltage Conforming to IEC V Rated control circuit voltage a 0/0 Hz and c V Power required For unlatching a VA c W 0 0 Maximum operating rate In operating cycles/hour D0 D0 LP D0 and D On-load factor 0 % 0 % Mechanical durability at Uc In millions of operating cycles () Unlatching can be manually operated or electrically controlled (pulsed). The LA DK or LAD K latch coil and the D operating coil must not be energised simultaneously. The duration of the LA DK or LAD K and D control signals must be u 00 ms. References : pages 70 to 7 Dimensions : pages and Schemes : pages and 7 9

29 Characteristics Electronic serial timer module. for TeSys D contactors Module type LA DT (On-delay) Environment Conforming to standards IEC 0- Product certifications UL, CSA Protective treatment Conforming to IEC 00 TH Degree of protection Conforming to VDE 00 Protection against direct finger contact IP X Ambient air temperature around the device Storage C Operation C + For operation at Uc C + 70 Rated insulation voltage (Ui) Conforming to IEC 097- V 0 Cabling Phillips n and Ø mm Flexible or solid conductor. with or without cable end mm Min: x ; max: x. Control circuit characteristics Built-in protection Of the input By varistor Contactor coil suppression By varistor Rated control circuit voltage (Uc) V a or c : 0 Permissible variation 0.. Uc Type of control By mechanical contact only Timing characteristics Timing ranges s 0. ;. 0; 00 Repeat accuracy 0 0 C ± % (0 ms minimum) Reset time During time delay period ms 0 After time delay period ms 0 Immunity to microbreaks During time delay period ms 0 After time delay period ms Minimum control pulse duration ms Time delay signalling By LED Illuminates during time delay period Switching characteristics (solid state type) Maximum power dissipated W Leakage current ma < Residual voltage V. Overvoltage protection kv; 0. joule Electrical durability In millions of operating cycles 0 Function diagram Electronic on-delay timer LA DT U supply (A-A) 0 Time delay output Contactor coil 0 t Red LED References : page 7 0 Dimensions : pages and Schemes : page 7

30 Characteristics Interface modules for TeSys D contactors Environment Conforming to standards IEC 0- Product certifications UL, CSA Protective treatment Conforming to IEC 00 TH Degree of protection Conforming to VDE 00 Protection against direct finger contact IP X Ambient air temperature around the device Other characteristics Module type Conventional thermal current (Ith) Storage C Operation C + Permissible for operation at Uc C + 70 For ambient temperature y 0 C A Rated insulation voltage Conforming to IEC V 0 Rated operational voltage Conforming to IEC V 0 LA DFB With relay LA DWB Solid state Indication of input state By integral LED which illuminates when the contactor coil is energised Input signals Control voltage (E-E) V c c Permissible variation V Current consumption at 0 C ma. for V for V State 0 guaranteed for U V <. <. I ma < < State guaranteed for U V 7 Built-in protection Against reversed polarity By diode By diode Electrical durability at 0 A/0 V Of the input By diode By diode In millions of operating cycles 0 0 Maximum immunity to microbreaks ms Power dissipated At 0 C W Direct mounting on contactor Mounting with cabling adapter LAD BB Mounting with cabling adapter LAD BB Total operating time at Uc. (of the contactor) With coil a 0 V D0 D0 a 00 0 V D0 D a 0 V With coil a 0 V D09 D, DT0 DT0 a 0 V D09 D, DT0 DT0 With coil a 0 V D0A DA D0A DA a 0 V D0A DA D0A DA The operating times depend on the type of contactor electromagnet and its control mode. The closing time "C" is measured from the moment the coil supply is switched on to initial contact of the main poles. The opening time "O" is measured from the moment the coil supply is switched off to the moment the main poles separate. D09 D, DT0 DT0 D0A DA With LA DFB "C" ms 0 0 O ms 0 D0 and D9 Cabling Phillips N and Ø mm Flexible or solid cable. with.or without cable end mm Min: x ; max: x. References : page 7 Dimensions : pages and Schemes : page 7

31 References TeSys D contactors for motor control. up to 7 kw at 00 V, in category AC- For connection by screw clamp terminals and lugs D09pp Dpp -pole contactors Standard power ratings of -phase motors 0-0 Hz in category AC- (q y 0 C) 0 V 0 V V 0 V 00 V 0 V 000 V 0 V 00 V 90 V Rated operational current in AC- 0 V up to Instantaneous auxiliary contacts Basic reference, to be completed by adding the control voltage code () Fixing () Weight () kw kw kw kw kw kw kw A kg Connection by screw clamp terminals... 9 D09pp Dpp Dpp 0.0. Dpp Dpp Dpp 0.0 Power connections by EverLink BTR screw connectors () and control by spring terminals. 0 0 D0App () D0App () DApp () 0.0 Connection by screw clamp terminals or connectors 7 0 D0pp.90 9 D9pp Dpp D0pp.00 Connection by lugs or bars In the references selected above, insert a figure before the voltage code. Example: D09pp becomes D09pp DApp D9pp Dpp Separate components Auxiliary contact blocks and add-on modules: see pages to 7. () D09 to DA: clip-on mounting on mm rail AM DP or screw fixing. D0 to D9 a: clip-on mounting on mm rail AM DP or 7 mm rail AM DL or screw fixing. D0 to D9 c : clip-on mounting on 7 mm rail AM DL or screw fixing. D and D0: clip-on mounting on x mm rails AM DP or screw fixing. () Standard control circuit voltages (for other voltages, please consult your Regional Sales Office): a.c. supply Volts D09 D0 (D and D0 coils with built-in suppression as standard, by bi-directional peak limiting diode). 0/0 Hz B7 D7 E7 F7 FE7 M7 P7 U7 Q7 V7 N7 R7 S7 D0 D 0 Hz B D E F FE M P U Q V N R S 0 Hz B E F M U Q R d.c. supply Volts D09 DA (coils with integral suppression device fitted as standard) U 0.7. Uc JD BD CD ED ND SD FD GD MD UD RD D0 D9 U 0.. Uc JD BD CD ED ND SD FD GD MD UD RD U 0.7. Uc JW BW CW EW SW FW MW D and D0 (coils with integral suppression device fitted as standard) U 0.7. Uc BD ED ND SD FD GD MD UD RD Low consumption Volts c D09...D (coils with integral suppression device fitted as standard) U 0.. Uc AL JL ZL BL EL FL ML UL For other voltages between and 90 V, see pages 7 to. () The weights indicated are for contactors with a.c. control circuit. For d.c. or low consumption control circuit, add 0.0 kg from D09 to D, 0.07 kg from D0A to DA and kg for D0 and D9. () BTR screws: hexagon socket head. In accordance with local electrical wiring regulations, a size insulated Allen key must be used (reference LAD ALLEN, see page 7). () For low consumption kit LA DBL (see page 7). Selection : pages to 9 Characteristics : pages 0 to Dimensions : pages to Schemes : pages and 7

32 References TeSys D contactors for motor control. up to 0 kw at 00 V, in category AC- For connection by spring terminals 07 -pole contactors Standard power ratings of -phase motors 0-0 Hz in category AC- (q y 0 C) 0 V 0 V V 0 V 00 V 0 V 000 V 0 V 00 V 90 V Rated operational current in AC- 0 V up to Instantaneous auxiliary contacts Basic reference, to be completed by adding the control voltage code () Fixing () Weight () Dpp kw kw kw kw kw kw kw A kg Power and control connections by spring terminals... 9 D09pp Dpp Dpp 0.0. Dpp () Dpp Power connections by EverLink BTR screw connectors () and control by spring terminals. 0 0 D0App () D0App () DApp () 0.0 Connection by Faston connectors These contactors are fitted with Faston connectors: x. mm on the power poles and x. mm on the coil and auxiliary terminals. For contactors D09 and D only, replace the figure with a 9 in the references selected above. Example: D09pp becomes D099pp. Separate components Auxiliary contact blocks and add-on modules: see pages to 7. DApp () D09 to D: clip-on mounting on mm rail AM DP or screw fixing. () Standard control circuit voltages (for other voltages, please consult your Regional Sales Office): a.c. supply Volts D09 DA 0/0 Hz B7 D7 E7 F7 FE7 M7 P7 U7 Q7 V7 N7 R7 d.c. supply Volts D09 DA (coils with built-in suppression as standard, by bi-directional peak limiting diode) U 0.7. Uc JD BD CD ED ND SD FD GD MD UD RD Low consumption Volts c D09...D (coils with integral suppression device fitted as standard) U 0.. Uc AL JL ZL BL EL FL ML UL For other voltages between and 90 V, see pages 7 to. () The weights indicated are for contactors with a.c. control circuit. For d.c. or low consumption control circuit, add 0.0 kg from D09 to D and 0.07 kg from D0A to DA. () Must be wired with x mm cables in parallel on the upstream side. On the downstream side, outgoing terminal block LAD may be used (Quickfit technology, see page 7). When wired with a single cable, the product is limited to A ( kw/00 V motors). () BTR screws: hexagon socket head. In accordance with local electrical wiring regulations, a size insulated Allen key must be used (reference LAD ALLEN, see page 7). () For low consumption kit LA DBL (see page 7). Selection : pages to 9 Characteristics : pages 0 to Dimensions : pages to Schemes : pages and 7

33 References TeSys D, -pole contactors for control in category AC-, from to 00 A 0 -pole contactors Non inductive loads maximum current (q y 0 C) utilisation category AC- Number of poles Instantaneous auxiliary contacts Basic reference, to be completed by adding the control voltage code () Fixing () Weight () D09pp A kg Connection by screw clamp terminals D09pp 0.0 or Dpp 0. Dpp Dpp Dpp 0.7 or Dpp Connection by EverLink, BTR screw connectors () 0 D0App (7) D0App (7) 0. or DApp () (7) 0.0 Connection by screw clamp terminals or connectors D0pp.90 or D9pp ().0 00 Dpp.00 or D0pp ().00 -pole contactors for connection by lugs In the references selected above, insert a figure before the voltage code. Example: D09pp becomes D09pp. DApp () Standard control circuit voltages (for other voltages, please consult your Regional Sales Office): a.c. supply Volts D09...D0 (coils D and D0 fitted with integral suppression device as standard) 0/0 Hz B7 D7 E7 F7 FE7 M7 P7 U7 Q7 V7 N7 R7 D0...D0 0 Hz B D E F FE M P U Q V N R S 0 Hz B E F M U Q R d.c. supply Volts D09...DA (coils with integral suppression device fitted as standard) U 0.7. Uc JD BD CD ED ND SD FD GD MD UD RD or LP D0 and D9 U 0.. Uc JD BD CD ED ND SD FD GD MD UD RD U 0.7. Uc JW BW CW EW SW FW MW D and D0 (coils with integral suppression device fitted as standard) U 0.7. Uc BD ED ND SD FD GD MD UD RD Low consumption Volts c D09...D (coils with integral suppression device fitted as standard) U 0.. Uc AL JL ZL BL EL FL ML UL For other voltages between and 90 V, see pages 7 to. () D09 to DA: clip-on mounting on mm rail AM DP or screw fixing. D0 and D9 a: clip-on mounting on mm rail AM DP or 7 mm rail AM DL or screw fixing. or LP D0 to D9 c: clip-on mounting on 7 mm rail AM DL or screw fixing. D and D0: clip-on mounting on x mm rails AM DP or screw fixing. () The weights indicated are for contactors with a.c. control circuit. For d.c. or low consumption control circuit, add 0.0 kg from D09 to D, 0.07 kg from D0 to D and kg for D0 and D9. () BTR screws: hexagon socket head. In accordance with local electrical wiring regulations, a size insulated Allen key must be used (reference LAD ALLEN, see page 7). () Selection according to the number of operating cycles, see AC- curve, page 0. () A with x mm cables connected in parallel. (7) For low consumption kit LA DBL (see page 7). Selection : pages to 9 Characteristics : pages 0 to Dimensions : pages to Schemes : pages and 7

34 References (continued) TeSys D, -pole contactors For control in category AC-, to 00 A 0 -pole contactors for connection by Faston connectors These contactors are fitted with Faston connectors: x. mm on the power poles and x. mm on the coil terminals. For contactors D09 and D only, in the references selected from the previous page, insert a figure 9 before the voltage code. Example: D09pp becomes D099pp. -pole contactors Non inductive loads maximum current (q y 0 C) utilisation category AC- Number of poles Instantaneous auxiliary contacts Basic reference, to be completed by adding the control voltage code () Fixing () Weight () Dpp A kg Connection by spring terminals D09pp () 0.0 or Dpp () 0. Dpp () 0. or Dpp () 0. or Dpp () Power connections by EverLink BTR screw connectors and control by spring terminals 0 D0App () D0App (7) () 0. or DApp (7) () 0.0 Separate components Auxiliary contact blocks and add-on modules: see pages to 7. DApp () Standard control circuit voltages (for other voltages, please consult your Regional Sales Office): a.c. supply Volts D09...D0 (coils D and D0 fitted with integral suppression device as standard) 0/0 Hz B7 D7 E7 F7 FE7 M7 P7 U7 Q7 V7 N7 R7 D0...D 0 Hz B D E F FE M P U Q V N R S 0 Hz B E F M U Q R d.c. supply Volts D09...DA (coils with integral suppression device fitted as standard) U 0.7. Uc JD BD CD ED ND SD FD GD MD UD RD or LP D0 and D9 U 0.. Uc JD BD CD ED ND SD FD GD MD UD RD U 0.7. Uc JW BW CW EW SW FW MW D and D0 (coils with integral suppression device fitted as standard) U 0.7. Uc BD ED ND SD FD GD MD UD RD Low consumption Volts c D09...D (coils with integral suppression device fitted as standard) U 0.. Uc AL JL ZL BL EL FL ML UL For other voltages between and 90 V, see pages 7 to. () D09 to DA: clip-on mounting on mm rail AM DP or screw fixing. D0 and D9 a: clip-on mounting on mm rail AM DP or 7 mm rail AM DL or screw fixing. or LP D0 and D9 c: clip-on mounting on 7 mm rail AM DL or screw fixing. D and D0: clip-on mounting on x mm rails AM DP or screw fixing. () The weights indicated are for contactors with a.c. control circuit. For d.c. or low consumption control circuit, add 0.0 kg from D09 to D and 0.07 kg from D0A to DA. () 0 A with x. mm cables connected in parallel. () A with x mm cables connected in parallel. () 0 A with x mm cables connected in parallel. (7) Selection according to the number of operating cycles, see AC- curve, page 0. () For low consumption kit LA DBL (see page 7). Selection : pages to 9 Characteristics : pages 0 to Dimensions : pages to Schemes : pages and 7

35 References (continued) TeSys D, -pole contactors For control in category AC-, to 00 A -pole contactors for connection by screw clamp terminals or connectors Non inductive loads maximum current (q y 0 C) utilisation category AC- Number of poles Instantaneous auxiliary contacts Basic reference, to be completed by adding the control voltage code () Fixing () Weight () DT0pp DT0App D00pp A Connection by screw clamp terminals 0 DT0pp 0. D09pp 0. DTpp 0. Dpp 0. DTpp 0. Dpp 0. 0 DT0pp 0. Dpp 0. Connection by EverLink, BTR screw connectors 0 DT0App DT0App.0 Connection by screw clamp terminals or connectors 0 D000pp.0 or LP D000pp.0 0 D00pp.0 or LP D00pp.0 D000pp.70 or LP D000pp. D000pp.0 or LP D000pp D00pp.0 -pole contactors for connection by lugs or bars In the references selected above, insert a figure before the voltage code. Example: DT0pp becomes DT0pp. () Standard control circuit voltages (for other voltages, please consult your Regional Sales Office): a.c. supply Volts D09...D0 and DT0...DT0A (coils D and D0 fitted with integral suppression device as standard) 0/0 Hz B7 D7 E7 F7 FE7 M7 P7 U7 Q7 V7 N7 R7 D0...D 0 Hz B D E F FE M P U Q V N R S 0 Hz B E F M U Q R d.c. supply Volts D09...DA and DT0...DT0A (coils with integral suppression device fitted as standard) U 0.7. Uc JD BD CD ED ND SD FD GD MD UD RD or LP D0 U 0.. Uc JD BD CD ED ND SD FD GD MD UD RD U 0.7. Uc JW BW CW EW SW FW MW D (coils with integral suppression device fitted as standard) U 0.7. Uc BD ED ND SD FD GD MD UD RD Low consumption Volts c D09...D and DT0...DT0 (coils with integral suppression device fitted as standard) U 0.. Uc AL JL ZL BL EL FL ML UL For other voltages between and 90 V, see pages 7 to. () D09 to D and DT0 to DT0A: clip-on mounting on mm rail AM DP or screw fixing. D0 a: clip-on mounting on mm rail AM DP or 7 mm rail AM DL or screw fixing. or LP D0 c: clip-on mounting on 7 mm rail AM DL or screw fixing. D and D0: clip-on mounting on x mm rails AM DP or screw fixing. () The weights indicated are for contactors with a.c. control circuit. For d.c. or low consumption control circuit, add 0.0 kg from D09 to D, 0.07 kg from DT0A and D0A and kg for D0. kg Selection : pages to 9 Characteristics : pages 0 to Dimensions : pages to Schemes : pages and 7

36 References (continued) TeSys D, -pole contactors For control in category AC-, to 00 A -pole contactors Non inductive loads maximum current (q y 0 C) utilisation category AC- Number of poles Instantaneous auxiliary contacts Basic reference, to be completed by adding the voltage code () Fixing () Weight () A Connection by spring terminals 0 DT0pp 0.0 D09pp 0.0 DTpp 0.0 Dpp 0.0 DTpp 0. Dpp 0. 0 DT0pp 0. Dpp 0. Connection by by EverLink, BTR screw connectors and control circuit by spring terminals 0 DT0App DT0App.0 Separate components Auxiliary contact blocks and add-on modules: see pages to 7. () Standard control circuit voltages (for other voltages, please consult your Regional Sales Office): a.c. supply Volts D09...D and DT0...DT0A (coils with integral suppression device fitted as standard) 0/0 Hz B7 D7 E7 F7 FE7 M7 P7 U7 Q7 V7 N7 R7 d.c. supply Volts D09...D and DT0...DT0A (coils with integral suppression device fitted as standard) U 0.7. Uc JD BD CD ED ND SD FD GD MD UD RD Low consumption Volts c D09...D and DT0...DT0 (coils with integral suppression device fitted as standard) U 0.. Uc AL JL ZL BL EL FL ML UL For other voltages between and 90 V, see pages 7 to. () D09 to D and DT0 to DT0A: clip-on mounting on mm rail AMDP or screw fixing. () The weights indicated are for contactors with a.c. control circuit. For d.c. or low consumption control circuit, add 0.0 kg from D09 to D, 0.07 kg for DT0A and DT0A. kg Selection : pages to 9 Characteristics : pages 0 to Dimensions : pages to Schemes : pages and 7 7

37 Presentation for the North American market, conforming to UL and CSA M Motor Disconnect (Disconnect switch) Motor Branch Circuit Protection. (Short-circuit protection) Motor Controller (Contactor) Motor Overload Protection (Thermal overload relay) Starters for the North American market In recent years, the North American market has started to harmonise UL, CSA and ANCE standards, as well as the industrial installation codes provided by national regulations (NEC for the United States, CEC for Canada and MEC for Mexico). () Major improvements, carried out by the Canena () are aimed at harmonising product requirements based on IEC () standards. However, the North American codes use specific terminology for defining the functions of a starter. These functions can be fulfilled by standard IEC products, accompanied by appropriate certifications. Combination Starters Combination Starters are the most common type of packaged motor starter. They are called "Combination" because of their structure and their combined functions. The figure opposite shows the four combined functions that constitute a complete motor starter circuit, defined as a Motor branch circuit by the NEC (US National Electric Code) in article 0. Standard UL0 currently gives different types of combination starter that meet the requirements of a "Motor branch circuit". Type E, called self-protected combination starter, covers all these functions and can be controlled manually (thermal-magnetic circuit-breaker) or remotely (starter-controller). Type E starters withstand faults within their declared nominal rating without sustaining damage, after which they can be put back into service. In addition, they can withstand more severe short-circuit and durability performance tests without welding or excessive wear of the contact tips. Type F, called Combination motor starter, consists of a type E manual starter (thermal-magnetic circuit-breaker) combined with a contactor. These starters are evaluated by means of basic short-circuit tests, but are not considered as self-protected. For this combination, the type E starter must be marked Combination Motor Controller when used with..., followed by the reference of the load side contactor. () UL: Underwriters Laboratories, CSA: Canadian Standards Association, ACNE: Association of Standardization and Certification, NEC: National Electric Code, CEC: Canadian Electrical Code, MEC: Mexican Electrical Code. () Canena: Council for Harmonization of Electrotechnical Standardization of North America. () IEC: International Electrotechnical Commission.

38 Presentation (continued) for the North American market, conforming to UL and CSA Control panels To help users properly coordinate their motor control equipment with their distribution system in the event of a fault, article 09 of the 00 NEC requires panel builders to list the short-circuit withstand rating of their motor control panels. According to standard UL0A, manufacturers must use the short-circuit withstand value of the lowest rated device as the nominal withstand rating of the panel, unless the devices have been tested together for a higher coordinated rating. The minimum short-circuit current rating (SCCR), on motor control components for horsepower ratings of 0 hp or below is 000 A. Using a type E or type F combination starter eliminates the coordination problems of using individual components for the motor branch circuit protection, motor controller and motor overload protection functions. The panel builder uses the declared short-circuit current rating for the combination starter. This value is generally higher than 000 A. This makes it easier to list the short-circuit current ratings and to check the compatibility of a UL0A motor control panel within a given distribution system. 9

39 Presentation (continued) for the North American market, conforming to UL and CSA Group protection Article 0. of the NEC allows a single short-circuit protection device to be used for more than one motor circuit if the components used are marked and listed for such use. Components suitable for use in group protection, known as motor group installations, can be marked in one of the following two ways: Case n The contactor and the motor overload relay are both listed as suitable for group installation. An inverse time circuit-breaker can be used as the short-circuit protection device if it is also listed as suitable for group installation. The panel builder must therefore make sure that the short-circuit protection device selected (fuses or inverse time circuit-breaker) does not exceed the value allowed by article 0.0 for the smallest overload relay used in the circuit. Once these conditions have been met, the panel builder can reduce the size of the conductor connecting the short-circuit protection device to the individual motor contactor/overload relay, to one third of the size of the upstream circuit conductor supplying the protection device. The panel builder must limit the length of the motor starter conductor (connecting the short-circuit protection device to the motor contactor/overload relay) to a maximum of 7. m ( feet). Case n The motor contactor and overload relay are listed as suitable for tap conductor protection in group installations. This category allows the panel designer to reduce the size of the conductor connecting the short-circuit protection device to the individual motor contactor/overload relay, to one tenth of the size of the upstream circuit conductor supplying the protection device. The designer must limit the length of this conductor to a maximum of.0 m (0 feet). In both cases, the supply circuits must not be less than % of the connected motor FLA (Full Load Amps) rating. For panel builders, using type F combination starters in group installations simplifies group motor considerations. Each starter is a fully coordinated motor branch circuit. The panel builder follows the same NEC requirements for sizing the supply conductors as those required for single motor branch circuits. The size of the supply conductors can be reduced in accordance with the specifications of article 0.. This allows the same flexibility in conductor sizing as that offered in article 0. (D), without a requirement to check the short-circuit protection rating marked on the components and the overload relay limit. A UL0A panel does not need a short-circuit protection device when each motor starter installed is a type F. The upstream short-circuit protection device supplying the starter protects the panel. The panel builder only has to consider the panel/enclosure disconnect requirements specified by the NEC or local codes. 0

40 Reference for the North American market, conforming to UL and CSA standards, 0 to D09pp Dpp DApp D9pp Contactors Standard power ratings of motors 0/0 Hz Size Associated Continuous Single-phase -phase cable current Ø Ø type 7 C-Cu V 0 V 0 V 00 V 0 V 0 V 0 V 0 V 0 V 7 V 00 V HP HP HP HP HP HP A Connection by screw clamp terminals AWG0 0 D09pp AWG0 Dpp 0 0 AWG Dpp 7. 0 AWG 0 Dpp AWG 0 Dpp Type of contactor required Basic reference, to be completed () Fixing, connection () Power connections by EverLink BTR screw connectors () and control by spring terminals AWG 0 D0App AWG 70 D0App AWG 0 DApp Connection by screw clamp terminals or connectors AWG 0 D0pp AWG 0 D9pp AWG/0 7 Dpp AWG/0 00 D0pp Applications with High-Fault Short-Circuit ratings For contactors D0A to DA, the High-Fault Short-Circuit ratings are 0 ka at 0 V and ka at 00 V. If these contactors are used, stick the LAD UL warning sticker on the enclosure door.. Description Language Sold in lots of Reference Warning sticker English, Spanish, French 0 LAD UL Application example For a HP-0 V motor Select a contactor type D0A. Information: the contactor rating selected corresponds to size, the associated cable is type AWG 7 C-Cu. () Standard control circuit voltages (for other voltages, please consult your Regional Sales Office): a.c. supply Volts D09 D0 (D and D0 coils with integral suppression device fitted as standard) 0/0 Hz B7 D7 E7 F7 FE7 M7 P7 U7 Q7 V7 N7 R7 S7 D0 D 0 Hz B D E F FE M P U Q V N R S 0 Hz B E F M U Q R d.c. supply Volts D09 DA (coils with integral suppression device fitted as standard) U 0.7. Uc JD BD CD ED ND SD FD GD MD UD RD D0 and D9 U 0.. Uc JD BD CD ED ND SD FD GD MD UD RD U 0.7. Uc JW BW CW EW SW FW MW D and D0 (coils with integral suppression device fitted as standard) U 0.7. Uc BD ED ND SD FD GD MD UD RD Low consumption Volts c D09 D (coils with integral suppression device fitted as standard) U 0.7. Uc AL JL ZL BL EL FL ML UL () D09 to DA: clip-on mounting on mm rail AM DP or screw fixing. D0 and D9: clip-on mounting on mm rail AM DP or 7 mm rail AM DL or screw fixing. D and D0: clip-on mounting on x mm rails AM DP or screw fixing.

41 References TeSys D, -pole reversing contactors for motor control. up to 7 kw at 00 V, in category AC-. Horizontally mounted, pre-assembled 09 -pole reversing contactors for connection by screw clamp terminals Pre-wired power connections. LC Dpp Standard power ratings of -phase motors 0-0 Hz in category AC- (q y 0 C) 0 V 0 V V 0 V 00 V 0 V 0 V 00 V 90 V 000 V Rated operational current in AC- 0 V up to Instantaneous auxiliary contacts per contactor Contactors supplied with coil Basic reference, to be completed by adding the control voltage code () Fixing () Weight () LC DApp LC Dpp kw kw kw kw kw kw kw A kg With mechanical interlock, without electrical interlocking, for connection by screw clamp terminals or connectors... 9 LC D09pp () LC Dpp () LC Dpp () LC Dpp () LC Dpp () LC Dpp () LC D0App () LC D0App () LC DApp () LC D0pp.00 9 LC D9pp.00 With mechanical interlock and electrical interlocking, for connection by screw clamp terminals or connectors LC Dpp LC D0pp.00 Connection by lugs or bars For reversing contactors LC D09 to LC D, LC D and LC D0, in the references selected above, insert a figure before the voltage code. Example: LC D09pp becomes LC D09pp. To build a 0 to A reversing contactor, for connection by lugs, order contactors DppA and mechanical interlock LAD CM (see page ). Component parts Auxiliary contact blocks and add-on modules: see pages to 7. () LC D09 to D: clip-on mounting on mm rail AM DP or screw fixing. LC D0 to D9: clip-on mounting on mm rail AM DP or 7 mm rail AM DL or screw fixing. LC D and D0: clip-on mounting on mm rail AM DP or screw fixing. () Standard control circuit voltages (for other voltages between and 90 V, please consult your Regional Sales Office): a.c. supply Volts LC D09 D0 (D and D0 coils with integral suppression device fitted as standard)) 0/0 Hz B7 D7 E7 F7 FE7 M7 P7 U7 Q7 V7 N7 R7 S7 LC D0 D 0 Hz B D E F FE M P U Q V N R S 0 Hz B E F M U Q R d.c.supply Volts LC D09 DA (coils with integral suppression device fitted as standard) U 0.7. Uc JD BD CD ED ND SD FD GD MD UD RD Low consumption Volts c LC D09...D (coils with integral suppression device fitted as standard) U 0.. Uc AL JL ZL BL EL FL ML UL For other voltages between and 90 V, see pages 7 to. () The weights indicated are for contactors with a.c. control circuit. For d.c. or low consumption control circuit, add 0.0 kg for LC D09 to D, 0.0 kg for D0A to DA. () For reversing contactors with electrical interlocking pre-wired at the factory, add suffix V to the references selected above. Example: LC D09P7 becomes LC D09P7V. () For low consumption kit LA DBL (see page 7). Note: when assembling a reversing contactor, it is good practice to incorporate a 0 ms time delay. Selection : pages to 9 Characteristics : pages 0 to Dimensions, schemes : pages to 9

42 References TeSys D, -pole reversing contactors for motor control. up to kw at 00 V, in category AC-. Horizontally mounted, pre-assembled -pole reversing contactors, for connection by spring terminals Pre-wired power connections. Mechanical interlock without electrical interlocking. LC Dpp Standard power ratings of -phase motors 0-0 Hz in category AC- (q y 0 C) 0 V 0 V V 0 V 00 V 0 V 0 V 00 V 90 V Rated operational current in AC- 0 V up to Instantaneous auxiliary contacts per contactor Contactors supplied with coil Basic reference, to be completed by adding the voltage code () Fixing () Weight () kw kw kw kw kw kw A kg For connection by spring terminals... 9 LC D09pp LC Dpp LC Dpp LC Dpp () LC Dpp Power connection by EverLink, BTR screw connectors () and control by spring terminals. 0 0 LC D0App () LC D0App () LC DApp ().90 For connection by Faston connectors All power connections are to be made by the customer. These contactors are fitted with Faston connectors: x. mm on the power poles and x. mm on the coil terminals. For reversing contactors LC D09 and LC D only, in the references selected above, replace the figure before the voltage code with a figure 9. Example: LC D09pp becomes LC D099pp. Component parts Auxiliary contact blocks and add-on modules: see pages to 7. () LC D09 to D: clip-on mounting on mm rail AM DP or screw fixing. () Standard control circuit voltages (for other voltages, please consult your Regional Sales Office): a.c. supply Volts LC D09 D 0/0 Hz B7 D7 E7 F7 FE7 M7 P7 U7 Q7 V7 N7 R7 S7 d.c. supply Volts LC D09 DA (coils with integral suppression device fitted as standard) U 0.7. Uc JD BD CD ED ND SD FD GD MD UD RD Low consumption Volts c LC D09...D (coils with integral suppression device fitted as standard) U 0.. Uc AL JL ZL BL EL FL ML UL For other voltages between and 90 V, see pages 7 to. () The weights indicated are for reversing contactors with a.c. control circuit. For d.c. or low consumption control circuit, add 0.0 kg for LC D09 to D, 0.0 kg for D0A to DA. () Must be wired with x mm cables in parallel on the upstream side. On the downstream side, outgoing terminal block LAD may be used (Quickfit technology, see page 7).When wired with a single cable, the product is limited to A ( kw/00 V motors). () BTR screws: hexagon socket head. In accordance with local electrical wiring regulations, a size insulated Allen key must be used (reference LAD ALLEN, see page 7). () For low consumption kit LA DBL (see page 7). Selection : pages to 9 Characteristics : pages 0 to Dimensions, schemes : pages to 9

43 References TeSys D, -pole changeover contactor pairs. for control in category AC-,. 0 to 00 A 7 LC DT0pp Pre-assembled. Pre-wired power connections. For connection by screw clamp terminals or connectors LC DT0 to LC DT0: mechanical interlock without electrical interlocking. LC D000: order separately auxiliary contact blocks LAD Np to obtain electrical interlocking between the contactors (see page page 9). For electrical interlocking incorporated in the mechanical interlock, please consult your Regional Sales Office. LC D00: mechanical interlock with integral, pre-wired electrical interlocking. Utilisation category AC- Non-inductive loads Maximum rated operational current (q y 0 C) A Instantaneous auxiliary contacts per contactor Contactors supplied with coil Basic reference, to be completed by adding the voltage code () Fixing () Weight 0 LC DT0pp 0.70 kg LC DTpp 0.70 LC DTpp LC DT0pp 0.0 LC D000pp LC D00pp 7.00 For connection by lugs or bars 0 LC DT0pp 0.70 LC DTpp 0.70 LC DTpp LC DT0pp 0.0 For customer assembly. For connection by screw clamp terminals or connectors 0 DT0App () 0 DT0App () For connection by lugs or bars 0 DT0App () 0 DT0App () Accessories Auxiliary contact blocks and add-on modules: see pages to 7. () See note () on next page. () LC DT0 to LC DT0: clip-on mounting on mm rail AM DP or screw fixing. LC D0: clip-on mounting on mm rail AM DP or 7 mm rail AM DL or screw fixing. LC D: clip-on mounting on x mm rails AM DP or screw fixing. () For these operational currents, order identical contactors and a mechanical interlock LAD CM (see page ). Note: when assembling changeover contactor pairs, it is good practice to incorporate a 0 ms time delay. Selection : pages to 9 Characteristics : pages 0 to Dimensions, schemes : pages to 9

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