MOS FET Relay G3VM-601BY/EY MOS FET Relay for Switching Analog Signals, with an I/O Dielectric Strength of 5 kVAC Using Optical Isolation ■ Switches minute analog signals. ■ Switches AC and DC. ■ Load voltage: 600 V. ■ I/O dielectric strength: 5 kVAC. ■ UL/CSA approval pending. R ■ Appearance OMRON logo Note: Model name Lot No. "G3VM" is not printed on the actual product. Ordering Information Contact form Terminals Load voltage (peak value) PCB terminals SPST-NO Surface-mounting terminals Model G3VM-601BY 600 VAC G3VM-601EY G3VM-601EY(TR) Number per stick Taping quantity 50 --- --- 1,500 Application Examples • Electronic automatic exchange systems • Measuring systems • FA • Security systems 1 G3VM-601BY/EY G3VM-601BY/EY Specifications ■ Absolute Maximum Ratings (Ta = 25°C) Item Input Symbol Conditions IF 50 mA LED forward current reduction rate ∆IF/°C –0.5 mA/°C Ta ≥ 25°C Repetitive peak LED forward current IFP 1A 100-µs pulses, 100 pps LED reverse voltage VR 5V --- Permissible loss Pin 50 mW --- Connection temperature TJ 125°C --- Output dielectric strength VOFF 600 V AC peak value 100 mA --- 100 mA --- A connection Continuous load current IO B connection C connection Output Rating LED forward current Ipead Peak load current Pout Output loss 200 mA --- 0.3 A --- 454 mW --- –1 mA/°C A connection ON current reduction rate --- ∆ION/°C B connection –1 mA/°C Ta ≥ 25°C –2 mA/°C C connection Total permissible loss PT 504 mW --- Dielectric strength between I/O terminals (See note.) VI–O 5,000 Vrms AC, 1 min Insulation resistance RI–O 5 × 1010 Ω VS = 500 V, ambient operating humidity ≤ 60% Storage temperature Tstg –55 to 125°C --- Ambient operating temperature Ta –40 to 85°C --- Note The dielectric strength between I/O terminals was measured with voltage applied to pins 1, 2, and 3 together, and to pins 4, 5, and 6 together. Connection Circuit Diagram 1 6 Load 1 6 2 5 or AC ∼ DC 2 5 3 4 3 4 DC B connection A connection ■ Load 1 6 2 5 3 4 Load DC C connection Electrical Performance (Ta = 25°C) Item Input Symbol Minimum Standard Maximum Conditions LED forward current VF 1.0 V 1.15 V 1.3 V IF = 10 mA Reverse current IR --- --- 10 µA VR = 5 V CT --- 30 pF --- V = 0, f = 1 MHz --- 22 Ω 35 Ω ION = 100 mA, IF = 10 mA --- 17 Ω 27 Ω ION = 100 mA, IF = 10 mA --- 8.5 Ω 13.5 Ω ION = 200 mA, IF = 10 mA Capacity between terminals A connection Maximum resistance with out- B connection put ON C connection RON Current leakage when the relay is closed ILEAK --- --- 10 µA VOFF = 600 V Turn-ON time TON --- 0.5 ms 1.5 ms Turn-OFF time TOFF --- 0.1 ms 1.0 ms RL = 200 Ω (See note.) VDD = 20 V, IF = 5 mA Floating capacity between I/O terminals CI–O --- 0.8 pF --- Output Note 2 The operate and release time were measured in the way shown below. VS = 0 V, f = 1 MHz G3VM-601BY/EY IF 1 6 2 5 3 4 G3VM-601BY/EY RL IF VDD VOUT VOUT 90% 10% TON ■ TOFF Recommended Operating Conditions Item Symbol Minimum Standard Maximum Operating voltage VDD --- --- 480 V Forward current IF 5 mA --- 25 mA Continuous load current IO --- --- 100 mA Operating temperature Ta −20°C --- 65°C Dimensions Note All units are in millimeters unless otherwise indicated. G3VM-601BY G3VM-601EY 7.12±0.25 7.12±0.25 6.4±0.25 6.4±0.25 7.62±0.25 7.62±0.25 0.8±0.25 +0.15 3.65+0.15 -0.25 3.65 -0.25 2.5 min. 0.5±0.1 10.0 max. Weight: 0.4 g Weight: 0.4 g ■ 1.0 min. 2.54±0.25 1.2±0.25 7.85 to 8.80 2.54±0.25 Note: 4.0+0.15 -0.25 1.0 min. "G3VM" is not printed on the actual product. PCB Dimensions (Bottom View) ■ Actual Mounting Pad Dimensions (Recommended Value, Top View) G3VM-601BY 2.54 G3VM-601EY Six, 0.8-dia. holes (0.56) 2.54 2.54 8.3 to 8.8 (0.56) (0.1) (0.1) 2.54 1.3 1.5 Installation ■ Terminal Arrangement/Internal Connection (Top View) G3VM-601EY G3VM-601BY 6 5 4 6 5 4 1 2 3 1 2 3 3 G3VM-601BY/EY G3VM-601BY/EY Precautions Surge Voltage Protection Circuit Example !WARNING Be sure to turn OFF the power when wiring the Relay, otherwise an electric shock may be received. !WARNING Do not touch the charged terminals of the SSR, otherwise an electric shock may be received. !Caution Do not apply overvoltage or overcurrent to the I/O circuits of the SSR, otherwise the SSR mya malfunction or burn. !Caution Be sure to wire and solder the Relay under the proper soldering conditions, otherwise the Relay in operation may generate excessive heat and the Relay may burn. ■ 1 6 2 5 3 4 Protection from Spike Voltage on the Output Terminals If a spike voltage exceeding the absolute maximum rated value is generated between the output terminals, insert a C-R snubber or clamping diode in parallel to the load as shown in the following circuit diagram to limit the spike voltage. Spike Voltage Protection Circuit Example Correct Use 1 6 2 5 3 4 1 6 2 5 3 4 Typical Relay Driving Circuit Examples C-MOS C-MOS ҤVcc R1 VF VIN 1 6 2 5 Unused Terminals (6-pin only) 3 4 Terminal 3 is connected to the internal circuit. Do not connect anything to terminal 3 externally. Load VOL/OH Pin Strength for Automatic Mounting In order to maintain the characteristics of the relay, the force imposed on any pin of the relay for automatic mounting must not exceed the following. Transistor ҤVcc R1 10 to 100k̓ VF VIN 6 2 5 3 4 Load VOL/OH Use the following formula to obtain the LED current limiting resistance value to assure that the relay operates accurately. R1 = VCC − VOL − VF (ON) 5 to 20 mA Use the following formula to obtain the LED forward voltage value to assure that the relay releases accurately. In direction A: 1.96 N max. In direction B: 1.96 N max. Load Connection Do not short-circuit the input and output terminals while the relay is operating or the relay may malfunction. AC Connection 㧗 㧙 1 6 2 5 3 4 or Load AC or 㧗 DC 㧙 DC Single Connection VF (OFF) = VCC − VOH < 0.8 V Ҥ Protection from Surge Voltage on the Input Terminals ҥ If any reversed surge voltage is imposed on the input terminals, insert a diode in parallel to the input terminals as shown in the following circuit diagram and do not impose a reversed voltage value of 3 V or more. Ҥ 4 B A 1 ҥ 1 6 2 5 3 4 1 6 2 5 3 4 Load Load Ҥ DC ҥ ҥ DC Ҥ 㧙 DC 㧗 G3VM-601BY/EY G3VM-601BY/EY DC Parallel Connection + − 1 6 2 5 3 4 Load + DC − Solder Mounting Maintain the following conditions during manual or reflow soldering of the relays in order to prevent the temperature of the relays from rising. 1. Pin Soldering Solder each pin at a maximum temperature of 260°C within 10 s. 2. Reflow Soldering a. Solder each pin at a maximum temperature of 260°C within 10 s. b. Make sure that the ambient temperature on the surface of the resin casing is 240°C max. for 10 s maximum. c. The following temperature changes are recommendable for soldering. Temperature (°C) 240 5°C/s max.→ 210 150 Time (sec) 60 s 10 s max. 30 s max. 5 G3VM-601BY/EY 6 G3VM-601BY/EY G3VM-601BY/EY G3VM-601BY/EY 7 G3VM-601BY/EY G3VM-601BY/EY ALL DIMENSIONS SHOWN ARE IN MILLIMETERS. To convert millimeters into inches, multiply by 0.03937. To convert grams into ounces, multiply by 0.03527. Cat. No. K114-E1-1 In the interest of product improvement, specifications are subject to change without notice. OMRON Corporation Electronics Components Company Electronic & Mechanical Components Division H.Q. Low Signal Relay Division 2-1, 2-chome, Nishikusatsu, Kusatsu-city, Shiga-pref., 525-0035 Japan Phone: (81)77-565-5481 Fax: (81)77-565-5581 8 Printed in Japan 0201-2M (0201) (A)