MOS FET Relays
G3VM-353A/A1/D/D1
Analog-switching MOS FET Relays with SPST-NC Contact. General-purpose Models Added.
• Switches AC and DC minute analog signals. • General-purpose models (high ON resistance) added. • RoHS compliant
■ Application Examples
• Electronic automatic exchange systems • Security systems • Datacom (modem) systems • FA systems and Measurement devices
Note: The actual product is marked differently from the image shown here.
■ List of Models
Contact form SPST-NC Terminals PCB terminals Load voltage (peak value) 350 VAC Model G3VM-353A G3VM-353A1 Surface-mounting terminals G3VM-353D G3VM-353D1 G3VM-353D(TR) G3VM-353D1(TR) --1,500 Number per stick 100 Number per tape ---
■ Dimensions
Note: All units are in millimeters unless otherwise indicated. G3VM-353A/A1
4.58±0.25
G3VM-353D/D1
4.58±0.25
6.4±0.25 7.62±0.25
6.4±0.25 7.62±0.25 3.65 −0.25
0.25 −0.05
+0.1
0.8±0.25 3.65
+0.15 −0.25
+0.15
Note: The actual product is marked differently from the image shown here.
2.5 min.
1.2±0.15 0.5±0.1 2.54±0.25
7.85 to 8.80
Weight: 0.26 g
Note: The actual product is marked differently from the image shown here.
1.0 min. 2.54±0.25 10.0 max.
4.0 +0.25 −0.2
1.2±0.15
1.0 min.
Weight: 0.26 g
■ Terminal Arrangement/Internal Connections (Top View)
G3VM-353A/A1
4 3
G3VM-353D/D1
4
3
1
2
1
2
■ PCB Dimensions (Bottom View)
G3VM-353A/A1
2.54 2.54 Four 0.8-dia. holes (0.56)
■ Actual Mounting Pad Dimensions (Recommended Value, Top View)
G3VM-353D/D1
8.3 to 8.8 2.54
(0.1)
(0.56) (0.1)
1.3 1.5
MOS FET Relays
G3VM-353A/A1/D/D1
35
■ Absolute Maximum Ratings (Ta = 25°C)
Item Input LED forward current Repetitive peak LED forward current Symbol IF IFP 50 1 −0.5 5 125 350 150 (100) Rating Unit mA A mA/°C V °C V mA mA/°C °C Vrms °C °C AC for 1 min With no icing or condensation With no icing or condensation 10 s Ta ≥ 25°C 100 μs pulses, 100 pps Ta ≥ 25°C Measurement Conditions Note: 1. The dielectric strength between the input and output was checked by applying voltage between all pins as a group on the LED side and all pins as a group on the light-receiving side.
LED forward current reduction Δ IF/°C rate LED reverse voltage Connection temperature Output Load voltage (AC peak/DC) Continuous load current (AC peak/DC) ON current reduction rate Connection temperature Dielectric strength between input and output (See note 1.) Operating temperature Storage temperature Soldering temperature (10 s) VR Tj VOFF IO
Δ ION/°C −1.5 (−1) Tj VI-O Ta Tstg --125 2,500 −40 to +85
−55 to +125 °C 260
Values in parentheses are for the G3VM-353A1/D1.
■ Electrical Characteristics (Ta = 25°C)
Item Input LED forward voltage Reverse current Symbol VF IR Minimum 1.0 --------------1,000 ----Typical 1.15 --30 1 15 (30) 0.0105 (0.003) 85 (30) 0.8 --0.1 (0.25) Maximum 1.3 10 --3 25 (50) 1.0 ------1.0 (0.5) Unit V μA pF mA Ω μA pF pF MΩ ms ms Measurement conditions IF = 10 mA VR = 5 V V = 0, f = 1 MHz IOFF = 10 μA IO = 150 mA (100 mA) IF = 5 mA, VOFF = 350 V V = 0, f = 1MHz, IF = 5 mA f = 1 MHz, Vs = 0 V VI-O = 500 VDC, RoH ≤ 60% IF = 5 mA, RL = 200 Ω, VDD = 20 V (See note 2.)
VOUT IF
Note:
2. Turn-ON and Turn-OFF Times
IF 1 2 4 3 RL VDD VOUT
Capacity between terminals CT Trigger LED forward current IFT Output Maximum resistance with output ON Current leakage when the relay is open RON ILEAK
Capacity between terminals COFF Capacity between I/O terminals Insulation resistance Turn-ON time Turn-OFF time CI-O RI-O tON tOFF
10% t ON
90% t OFF
1.0 (0.5) 3.0 (1)
Values in parentheses are for the G3VM-353A1/D1.
■ Recommended Operating Conditions
Use the G3VM under the following conditions so that the Relay will operate properly.
Item Load voltage (AC peak/DC) Operating LED forward current Symbol VDD IF Minimum --5 --− 20 --------Typical Maximum 280 25 150 (100) 65 V mA mA °C Unit
Continuous load current (AC peak/DC) IO Operating temperature Ta
Values in parentheses are for the G3VM-353A1/D1.
36
MOS FET Relays
G3VM-353A/A1/D/D1
■ Engineering Data
G3VM-353A/D
LED forward current vs. Ambient temperature
IF - Ta
LED forward current IF (mA) Continuous load current I O (mA)
100
Continuous load current vs. Ambient temperature
IO - Ta
LED forward current I F (mA)
300
LED forward current vs. LED forward voltage
IF - VF
100 50 30 Ta = 25°C
80
250
200
10 5 3
60
150
40
100
1 0.5 0.3
20
50
0 −20
0
20
40
60
80
100
120
0 −20
0
20
40
60
80
100
120
0.1 0.6
0.8
1
1.2
1.4
1.6
1.8
Ambient temperature Ta (
)
Ambient temperature Ta
LED forward voltage VF (V)
Continuous load current vs. On-state voltage
IO - VON
Continuous load current IO (mA) On-state resistance RON (Ω)
200 Ta = 25°C
On-state resistance vs. Ambient temperature
RON - Ta
20 IO = 150 mA t < 1s 15
Trigger LED forward current vs. Ambient temperature
IFC - Ta
Trigger LED forward current I F C (mA)
5 IOFF = 10 μ A 4
100
3
0
10
2
−100
5
1
−200 −2
−1
0
1
2
0 −20
0
20
40
60
80
100
0 −40
−20
0
20
40
60
80
100
On-state voltage VON (V)
Ambient temperature Ta (
)
Ambient temperature Ta (
)
Turn ON, Turn OFF time vs. LED forward current
tON, tOFF - IF
Turn ON, Turn OFF time tON, tOFF (μS)
Ta = 25°C VDD = 20 V, RL = 200 Ω tOFF 500 300 tON
Turn ON, Turn OFF time vs. Ambient temperature
tON, tOFF - Ta
Turn ON, Turn OFF time tON, tOFF (μS)
Current leakage vs. Ambient temperature
I LEAK - Ta
Current leakage ILEAK (nA)
1000 VOFF = 350 V IF = 5 mA
2000
1200 VDD = 20 V, RL = 200 Ω IF = 5 mA tOFF
1000
1000
800
100
600
100
400
10
50 30 1 3 5 10 30 50 100
200
tON
0 −40
−20
0
20
40
60
80
100
1 0
20
40
60
80
100
LED forward current IF (mA)
Ambient temperature Ta (
Ambient temperature Ta (
)
MOS FET Relays
G3VM-353A/A1/D/D1
37
■ Engineering Data
G3VM-353A1/D1
LED forward current vs. Ambient temperature
IF - Ta
LED forward current IF (mA) Continuous load current I O (mA)
100
Continuous load current vs. Ambient temperature
IO - Ta
LED forward current I F (mA)
160
LED forward current vs. LED forward voltage
IF - VF
100 Ta = 25°C
80
30
120
10
60
80
3
40
1
40
20
0.3
0 −20
0
20
40
60
80
100
120
0 −20
0
20
40
60
80
100
120
0.1 0.6
0.8
1
1.2
1.4
1.6
1.8
Ambient temperature Ta (
)
Ambient temperature Ta
LED forward voltage VF (V)
Continuous load current vs. On-state voltage
IO - VON
Continuous load current IO (mA) On-state resistance RON (Ω)
150 Ta = 25°C 100
On-state resistance vs. Ambient temperature
RON - Ta
Trigger LED forward current I F C (mA)
50 IO = 100 mA t
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