HIGH REPEATABILITY, NORMALLY OPEN, BYPASS RF RELAYS RELAY TYPE PERFORMANCE FEATURES

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1 RF & MICROWAVE HIGH REPEATABILITY, NORMALLY OPEN, BYPASS RF RELAYS SERIES SERIES DESIGNATION Repeatable, RF, N.O. bypass relay RELAY TYPE Sensitive, repeatable, RF, N.O. bypass relay INTERNAL CONSTRUCTION PERFORMANCE FEATURES UPPER STATIONARY CONTACT MOVING CONTACT LOWER STATIONARY BYPASS CONTACT UNI-FRAME ARMATURE The ultraminiature and relays are designed with an internal bypass (through path), when the coil is energized, to provide low insertion loss and through the bypass and simplicity of design for the user. Relays have improved RF insertion loss repeatability over the frequency range from dc to 3 GHz. Highly suitable for use in attenuator, linear amplifier and other RF circuits. The RF 32 and feature: N.O. bypass configuration. Repeatable insertion loss. Broad bandwidth. Metal enclosure for EMI shielding. Ground pin option to improve case RF grounding. High isolation between control and signal paths. High resistance to ESD. CONSTRUCTION FEATURES ENVIRONMENTAL AND PHYSICAL SPECIFICATIONS Temperature (Ambient) Vibration (General Note 1) Shock (General Note 1) Enclosure Weight Storage Operating 65 C to +125 C 55 C to +85 C 1 g s to 5 Hz 3 g s, 6 msec, half-sine Hermetically sealed.9 oz. (2.55g) max..16 oz. (4.5g) max. The following unique construction features and manufacturing techniques provide excellent resistance to environmental extremes and overall high reliability. Uni-frame motor design provides high magnetic efficiency and mechanical rigidity. Minimum mass components and welded construction provide maximum resistance to shock and vibration. Advanced cleaning techniques provide maximum assurance of internal cleanliness. Gold-plated precious metal alloy contacts ensure reliable switching. 23 TELEDYNE RELAYS SPECIFICATIONS ARE SUBJECT TO CHANGE WITHOUT NOTICE Page 1 /123/Q1

2 SERIES AND TYPICAL RF CHARACTERISTICS (Notes 1, 2 and 3) AND CHARACTERISTICS RELAYS Typical Characteristics for N.C. Contacts, Per Pole, Coil De-Energized (Notes 3 and 4) Typical Characteristics for N.O. Bypass Path, Coil Energized RF & MICROWAVE AND CHARACTERISTICS RELAYS Typical Characteristics for N.C. Contacts, Per Pole, Coil Energized (Notes 3 and 4) Typical Characteristics for N.O. Bypass Path, Coil De-Energized ISOLATION CHARACTERISTICS AND RELAYS Isolation Pole to Pole (Coil De-Energized) (Note 5) Isolation N.C. Contact to N.O. Bypass Path (Coil Energized) (Note 6) Isolation (db) MHZ RF NOTES 1. Test conditions: a. Fixture:.31" copper clad, reinforced PTFE, RT/duroid 62 with SMA connectors. (RT/duroid is a registered trademark of Rogers Corporation.) b. Relay header is not soldered to ground plane or connected to ground via ground pin. c. Test performed at room ambient temperature. d. Terminals not tested were terminated with 5-ohm load. e. Contact signal level: dbm. 2. Data presented herein represents typical characteristics and is not intended for use as specification limits. 3. Data is per pole. 4. Measurement points are from pins 2 & 4 to pins 6 & Data is the average of both N.C. contacts to the bypass path. 6. Relays operate at frequencies above 3 GHz with reduced RF performance characteristics. Page 2 SPECIFICATIONS ARE SUBJECT TO CHANGE WITHOUT NOTICE 23 TELEDYNE RELAYS /123/Q1

3 RF & MICROWAVE SERIES AND GENERAL ELECTRICAL SPECIFICATIONS C) Contact arrangement Rated duty Contact resistance (General note 2) Contact load rating Contact life rating Coil operating power Operate time Release time Intercontact capacitance Insulation resistance Dielectric strength N.C. side (coil de-energized) DPST, Normally Closed Continuous N.O. side (coil energized) SPST, Normally Open Double Make.15 ohm max. initial (measured 1/8" from the header) Low level: 1 to 5 μa, 1 to 5 mv 1,, cycles typical at low level : 45 mw nominal rated voltage : 2 mw nominal rated voltage 4. ms. max. 6. ms. max. 3. ms. max. 3. ms. max..4 pf typical 1, MΩ min. (between mutually isolated terminals) 35 VRMS / 6 atmospheric pressure DETAILED ELECTRICAL SPECIFICATIONS (@25 C) BASE PART NUMBERS Coil voltage, nominal, VDC Coil resistance, ohms ± 2% Pick-up voltage max, VDC OUTLINE DIMENSIONS (.79) REF..37 (9.4) DIA (8.51) DIA (.89) REF.2 (5.8) 36 ±3.1 (.25) DIA. H.7 (17.78) MIN. H DIMENSION..275 (6.99).385 (9.78) TERMINAL NUMBERING SCHEMATIC HEADER DIMENSIONS, TERMINAL NUMBERING AND SCHEMATIC ARE AS VIEWED FROM THE TERMINALS. DIMENSIONS ARE IN INCHES (MILLIMETERS). POSITIONS 5 AND 1 ARE FOR UNINSULATED CASE GROUND OPTIONS. SEE APPENDIX. NO PROTRUSION BELOW BOTTOM OF HEADER WHEN GROUND PINS ARE INSTALLED. TO ORDER THE CASE GROUND OPTION, AFTER THE SERIES DESIGNATOR, ADD Y TO THE PART NUMBER FOR POSITION 5 OR Z TO THE PART NUMBER FOR POSITION 1. EXAMPLE: Y-COIL VOLTAGE EXTERNAL DIMENSIONS.17 (.43) +.2 (.5).1 (.3) DIA. GENERAL NOTES 1. Relays will exhibit no contact chatter in excess of 1 μsec or transfer in excess of 1 μsec. 2. Contact resistance value applies to each closed contact as well as the bypass path. 23 TELEDYNE RELAYS SPECIFICATIONS ARE SUBJECT TO CHANGE WITHOUT NOTICE Page 3 /123/Q1

4 SERIES AND TYPICAL REPEATABILITY CHARACTERISTICS REPEATABILITY CHARACTERISTICS RELAYS Typical Repeatability Data, N.C. Contact Typical Repeatability Data, Bypass RF & MICROWAVE REPEATABILITY CHARACTERISTICS RELAYS Typical Repeatability Data, N.C. Contact Typical Repeatability Data, Bypass RF REPEATABILITY NOTES 1. Test conditions: a. Fixture:.31" copper clad, reinforced PTFE, RT/duroid 62 with SMA connectors. (RT/duroid is a registered trademark of Rogers Corporation.) b. Relay header is not soldered to ground plane or connected to ground via ground pin. c. Test performed at room ambient temperature. d. Contact signal level: dbm. 2. Data presented herein represents typical characteristics and is not intended for use as specification limits. 3. N.C. path contacts connected in series externally. 4. Insertion loss repeatability measured over frequency range from.3 MHz to 3 GHz. Page 4 SPECIFICATIONS ARE SUBJECT TO CHANGE WITHOUT NOTICE 23 TELEDYNE RELAYS /123/Q1

5 Appendix A: Spacer Pads Pad designation and bottom view dimensions Height For use with the following: Dim. H Max. Ø.15 ER411T ER412, ER412D, ER412DD 712, 712D, 712TN, RF3, RF31, ER42, ER422D, ER42DD, 421, ER421D, ER421DD, ER422, ER422D, ER422DD, 722, 722D, RF (7.49).3 (7.62).35 (7.75) ER431T, ER432T, ER432, ER432D, ER432DD.4 (6) 732, 732D, 732TN, RF33, RF313,.41 (1) M4 Pad for TO-5 RF (8.89) ER411, ER411D, ER411DD.295 (7.49) ER431, ER431D, ER431DD.4 (6) RF311.3 (7.62) M4 Pad for TO-5 RF (1) 172, 172D.35 (7.75) ER114, ER114D, ER114DD, J114, J114D, J114DD ER134, ER134D, ER134DD, J134, J134D, J134DD.3 (7.62).4 (6) RF1.315 (8.) M4 Pad for Centigrid.156 [3.96] RF13.42 (1.67) 122C, A (8.13) ER116C, J116C.3 (7.62).256 [6.5] ER136C, J136C.4 (6) RF (8.25) M9 Pad for Centigrid Notes: 1. Spacer pad material: Polyester lm. 2. To specify an M4 or M9 spacer pad, refer to the mounting variants portion of the part numbering example in the applicable datasheet. 3. Dimensions are in inches (mm). 4. Unless otherwise speci ed, tolerance is ±.1 (.25). 5. Add 1 m to the contact resistance show in the datasheet. 6. Add.1 oz. (.25 g) to the weight of the relay assembly shown in the datasheet. 28 Teledyne Relays SPECIFICATIONS SUBJECT TO CHANGE WITHOUT NOTICE A15.35 (7.75)

6 Appendix A: Spreader Pads Pad designation and bottom view dimensions [9.4] SQ.2 [5.8] M Pad 5/ 6/.39 [9.91] SQ.3 M2 Pad 7/ 8/.37 [9.4] SQ.2 [5.8] [9.4] MIN.13 [3.3].37 [9.4] MIN Height For use with the following: Dim. H Max. ER411T, J411T, ER412, ER412D ER412DD, J412, J412D, J412DD.388 (9.86) ER412T, J412T 712, 712D, 712TN.393 (9.99) ER431T, J431T, ER432, ER432D ER432DD, J432, J432D, J432DD.493 (12.52) ER432T, J432T 732, 732D, 732TN.53 (12.78) ER42, J42, ER42D, J42D ER42DD, J42DD, ER421, J (1) ER421D, J421D, ER421DD J422D, ER422DD, J422DD, 722 ER411T ER412, ER412D, ER412DD.441 (1) J412, J412D, J412DD 712, 712D.451 (16) ER421, ER421D, ER421DD 722, 732D.451 (16) ER431T ER432, ER432D, ER432DD.546 (13.87) 732, 732D.556 (14.12) ER411, ER411D, ER411DD ER411TX ER412X, ER412DX, ER412DDX ER412TX.388 (9.86) 712X, 712DX, 712TNX.393 (9.99) ER42X, ER42DX, ER42DDX ER421X, ER421DX, ER421DDX.398 (1) ER422X, ER422DX ER422DDX, 722X, 722DDX ER431, ER431D, ER431DD ER431TX ER432X, ER432DX, ER432DDX ER432TX.493 (12.52) M3 Pad 5/ 6/ 9/ 732X, 732DX, 732TNX.53 (12.78) Notes: 1. Spreader pad material: Diallyl Phthalate. 2. To specify an M, M2 or M3 spreader pad, refer to the mounting variants portion of the part number example in the applicable datasheet. 3. Dimensions are in inches (mm). 4. Unless otherwise speci ed, tolerance is ±.1 (.25). 5/. Add 25 m to the contact resistance shown in the datasheet. 6/. Add.1 oz. (.25 g) to the weight of the relay assembly shown in the datasheet. 7/. Add 5 m to the contact resistance shown in the datasheet. 8/. Add.25 oz (.71 g) to the weight of the relay assembly shown in the datasheet. 9/. M3 pad to be used only when the relay has a center pin (e.g. ER411M3-12A, 722XM3-26.) (8) () Teledyne Relays.14 [.36].14 [.36]

7 Appendix A: Ground Pin Positions Ø.2 [Ø5.8] "X" POSITION Ø.2 [Ø5.8] 36 ±3 45 ±3 TO-5 Relays: ER411T, ER412, ER412T, ER42, ER421, ER422, ER431T, ER432, ER432T, 712, 712TN, 4H, 4K, 4V, RF3, RF33, RF341, RF312, RF31, RF313,, TO-5 Relays: ER411, ER431, RF311, RF331 "W" POSITION.5 [7] "X" POSITION "U" POSITION (ER116C and ER136C only) Centigrid Relays: RF18, ER116C, 122C, ER136C Centigrid Relays: RF1, RF13, ER114, ER134, 172 Indicates ground pin position Indicates glass insulated lead position Indicates ground pin or lead position depending on relay type NOTES 1. Terminal views shown 2. Dimensions are in inches (mm) 3. Tolerances: ±.1 (±.25) unless otherwise speci ed 4. Ground pin positions are within.15 (.38) dia. of true position 5. Ground pin head dia.,.35 (.89) ref: height.1 (.25) ref. 6. Lead dia..17 (.43) nom. 28 Teledyne Relays SPECIFICATIONS SUBJECT TO CHANGE WITHOUT NOTICE

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