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© 2014 TELEDYNE RELAYS (800) 284-7007 • www.teledynerelays.com SH Page 3 SH\\072014\\Q3 Series SH Output to 125A, 690 Vac High Industrial Performance (HIPpak) Solid-State Relays ELECTRICAL SPECIFICATIONS (+25°C ambient temperature unless otherwise specifi ed) OUTPUT (LOAD) SPECIFICATIONS Min Max Units Peak Voltage (VDR Clamping) SH24 (450) 600 Vpeak SH48 (950) 1200 Vpeak SH60 1600 Vpeak Load Current Range (Resistive) 25 output current .005 25 Arms 50 output current .005 60 Arms 75 output current .005 90 Arms 95 output current .005 110 Arms 125 output current .005 150 Arms Maximum Surge Current Rating (Non-Repetitive) 25 output current 350 A 50 output current 720 A 75 output current 1200 A 95 output current 1700 A 125 output current 2200 A On-State Voltage Drop 0.9 V Output Power Dissipation (Max) 25 output current 0.9x0.9xl+0.016xl² W 50 output current 0.9x0.9xl+0.012xl² W 75 output current 0.9x0.9xl+0.045xl² W 95 output current 0.9x0.9xl+0.035xl² W 125 output current 0.9x0.9xl+0.002xl² W Zero-Cross Window (Typical) SHXXR NA SHXXD/A ±12 Vac Off-State Leakage Current SHXXR 3 mA SHXXD/A 1 mA ELECTRICAL SPECIFICATIONS (continued) Min Max Units Turn-On Time (60 Hz) SHXXR 0.04 ms SHXXD 8.3 ms SHXXA 24.9 ms Turn-Off Time (60 Hz) SHXXR/D 8.3 ms SHXXA 24.9 ms Off-State dv/dt 500 V/ ųs Maximum di/dt (Non-Repetitive) 50 A / ųs Operating Frequency SHXXR 0.1 400 Hz SHXXD/A 0.1 800 Hz I²T for fuse matching (<10ms) 25 output current 600 A²s 50 output current 2500 A²s 75 output current 7200 A²s 95 output current 14400 A²s 125 output current 24000 A²s Junction-Case Thermal Resistance 25 output current 1.7 °C/W 50 output current 0.45 °C/W 75 output current 0.4 °C/W 95 output current 0.3 °C/W 125 output current 0.25 °C/W Conducted Immunity Level IEC/EN61000-4-4 (bursts) SH24 2kV criterion A SH48/SH60 4kV criterion A IEC/EN61000-4-5 (surge) SH24 2kV criterion A SH48 4kV criterion A SH60 4kV criterion A (with external VDR)

SH Page 6 SPECIFICATIONS ARE SUBJECT TO CHANGE WITHOUT NOTICE © 2014 TELEDYNE RELAYS SH\\072014\\Q3 Series SH Output to 125A, 690 Vac High Industrial Performance (HIPpak) Solid-State Relays OPTIONAL CONNECTIONS Directly with wires, with or without ferrules With special adaptation for high-voltage relays With tips (ring terminals) CONTROL WIRING Number of Wires Screwdriver Type Recommended Torque N.m Solid (no ferrule) Fine Stranded (with ferrule) Solid (no ferrule) Fine Stranded (with ferrule) AWG18…AWG14 AWG18…AWG14 AWG 18…AWG14 AWG18…AWG1 4 Pozidriv 2 0.8 POWER WIRING Number of Wires Screwdriver Type Recommended Torque N.m Solid (no ferrule) Fine Stranded (with ferrule) Solid (no ferrule) Fine Stranded (with ferrule) AWG16…AWG8 AWG16…AWG10 AWG16…AW G8 AWG16…AWG10 Pozidriv 2 1.2 Power with tips AWG6 16mm2 AWG4 16mm W max = 13mm AWG0 50mm2 for high current Options Fastons: Call us Special kit for high current AWG2 / 35mm2 AWG0 / 50mm2

© 2014 TELEDYNE RELAYS (800) 284-7007 • www.teledynerelays.com SH Page 7 SH\\072014\\Q3 Series SH Output to 125A, 690 Vac High Industrial Performance (HIPpak) Solid-State Relays Mounting HIPpak SSRs must be mounted on heat sinks. A large range of heat sinks is available. For heat-sink mounting, use thermal grease or a thermal pad with high conductibility specifi ed by Teledyne. SSR Model AC-53 Current (motor) AC-55b Current (lamp) AC-55b Current (transformer) AC-55b Current (capacitor) 12A 2.5A 2.5A 0.4A XXX 25A 5A 5A 1A XXX 35A 9A 9A 2A XXX 50A 12A 12A 3A 13A 75A 16A 16A 6A 24A 95A 24A 24A 9A 36A 125A 32A 32A 12A 48A Typical Loads (Random) SH relays with random turn-on are designed for high inductive loads or phase angle control applications. Our data sheet lists nominal current of power thyristors corresponding to a resistive load (AC-51). Depending on the loads, check the inrush current at turn ON and possible overvoltages at turn OFF. Main applications:

  • AC-55b — Incandescent or infrared lamps. Inrush current is generally 10 times In during few 10ms. Random relays often use in- phase angle controllers or soft-starters with the right control.
  • AC-53 — Three-phase motors. 2 or 3 random turn-on relays can drive such motors.
  • AC-56a — Transformer loads. Very high inrush current up to 100 times In. Use a random turn-on SSR like the SH. The table below lists recommended current values for proper lifetime expectancy. 2–2.5°C/W Teledyne P/N FW151 1.1°C/W Teledyne P/N FW108 0.3°C/W Teledyne P/N FW031 Thermal Pad Teledyne P/N –12 Typical Loads (Zero-Cross) SH relays with zero-cross turn-on are designed for most types of loads. Our data sheet lists the AC-51 current value corresponding to resistive loads. For other loads, check the inrush current at turn ON and possible overvoltages at turn OFF:
  • AC-55b — Incandescent lamps. Inrush current is generally 10 times In during few 10ms.
  • AC-55a — Electric discharge lamp. These loads often have overcurrent at turn ON and overvoltage at turn OFF, so use 400VAC SSR on 230VAC mains.
  • AC-58 — One-pole motors. These loads often have overcurrent at turn ON and overvoltage at turn OFF, so use 400VAC SSR on 230VAC mains and adapt the SSR current to the starting current of the motor.
  • AC-53 — Three-phase motors. 2 or 3 SH zero-cross relays can drive these motors, but generally use E3P/E3PT or other three- phase relays or SH random range.
  • AC-56a — Transformer loads. Very high inrush current up to 100 times In. Use SH random relay or peak control SSR.
  • AC-56b — Capacitor loads with very high current at turn ON and overvoltage at turn OFF. Our high-voltage relays are well adap ted for high inrush current. DIN Rail Adapter Teledyne P/N DL12

SH Page 8 SPECIFICATIONS ARE SUBJECT TO CHANGE WITHOUT NOTICE © 2014 TELEDYNE RELAYS SH\\072014\\Q3 Series SH Output to 125A, 690 Vac High Industrial Performance (HIPpak) Solid-State Relays Protection

  • To protect the SSR against a short-circuit of the load, use a fuse with a I 2t value = 1/2 I2t value specifi ed. EMC Immunity:
  • Our data sheets list the immunity level of our SSRs according to the main standards for these of products: IEC/EN61000-4-4 an d IEC/EN61000-4-5. You can compare the high immunity level with other products on the market. Emission:
  • Teledyne SSRs are designed in compliance with standards for class A equipment (Industry).
  • Use of this product in domestic environments may cause radio interference. In this case the user may be required to employ additional devices to reduce noise. SSRs are complex devices that must be interconnected with other equipment (loads, cables, etc.) to form a system. Because the other equipment or interconnections may not be under Teledyne’s control, it shall be the responsibility of the system integrator to ensure that systems containing SSRs comply with the requirement of any rules and regulations applicable at the system level.
  • In phase angle applications, a fi lter adapted to the load must be necessary.
  • The very low zero-cross voltage of SH relays (<12V) improves the conducted emission level in comparison with most other SSRs on the market with zero-cross voltages often higher than 50V.