MOS FET Relays
G3VM-353G/G1
Analog-switching MOS FET Relay with SPST-NC Contacts. General Purpose version added.
• New models with SPST-NC contacts and a 4-pin SOP package included in 350-V load voltage series. • Continuous load current of 120 mA. • Dielectric strength of 1,500 Vrms between I/O. • General-purpose series (with high ON resistance) added. • RoHS Compliant.
■ Application Examples
• Broadband systems • Measurement devices and Data loggers • Amusement machines
Note: The actual product is marked differently from the image shown here.
■ List of Models
Contact form SPST-NC Terminals Surface-mounting terminals Load voltage (peak value) 350 VAC Model G3VM-353G G3VM-353G1 G3VM-353G(TR) G3VM-353G1(TR) --2,500 Number per stick 100 Number per tape ---
■ Dimensions
Note: All units are in millimeters unless otherwise indicated. G3VM-353G/G1
4.4±0.25
3.9±0.2
2.1 max. 0.15
Note: The actual product is marked differently from the image shown here.
0.4±0.1 2.54±0.25
0.1±0.1
0.6±0.3 7.0±0.4
Weight: 0.1 g
■ Terminal Arrangement/Internal Connections (Top View)
G3VM-353G/G1
4 3
1
2
■ Actual Mounting Pad Dimensions (Recommended Value, Top View)
G3VM-353G/G1
6 to 6.3 1.2
0.8 2.54
MOS FET Relays
G3VM-353G/G1
189
■ Absolute Maximum Ratings (Ta = 25°C)
Item Input LED forward current Repetitive peak LED forward current LED forward current reduction rate LED reverse voltage Connection temperature Output Load voltage (AC peak/DC) Continuous load current (AC peak/DC) ON current reduction rate Symbol IF IFP Δ IF/°C VR Tj VOFF IO 50 1 −0.5 5 125 350 120 (90) Rating Unit mA A mA/°C V °C V mA mA/°C Vrms °C °C Ta ≥ 25°C AC for 1 min With no icing or condensation With no icing or condensation 10 s 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.
Δ ION/°C −1.2 (−0.9) 1,500 −40 to +85
Dielectric strength between input and VI-O output (See note 1.) Operating temperature Storage temperature Soldering temperature (10 s) Ta Tstg ---
−55 to +125 °C 260
Values in parentheses are for the G3VM-353G1
■ Electrical Characteristics (Ta = 25°C)
Item Input LED forward voltage Reverse current Capacity between terminals Trigger LED forward current Output Maximum resistance with output ON Symbol VF IR CT IFT RON Minimum 1.0 --------------1,000 ----Typical 1.15 --30 1 15 (30) 0.0105 (0.003) 65 (30) 0.8 --Maximum 1.3 10 --3 Unit V μA pF mA Measurement conditions IF = 10 mA VR = 5 V V = 0, f = 1 MHz IOFF = 10 μA IO = 120 mA (90 mA) VOFF = 350 V, IF = 5 mA 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.)
IF
Note:
2. Turn-ON and Turn-OFF Times
IF 1 2 4 3 RL VDD VOUT
25 (50) Ω 1.0 ------μA pF pF MΩ
Current leakage when the relay is open ILEAK Capacity between terminals Capacity between I/O terminals Insulation resistance Turn-ON time Turn-OFF time Values in parentheses are for the G3VM-353G1 COFF CI-O RI-O tON tOFF
VOUT
10% t ON
90% t OFF
0.15 (0.25) 1.0 (1) ms 0.7 (0.5) 3.0 (1) ms
■ 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 25 120 (90) 65 V mA mA °C Unit
Continuous load current (AC peak/DC) IO Operating temperature Ta
Values in parentheses are for the G3VM-353G1
190
MOS FET Relays
G3VM-353G/G1
■ Engineering Data
G3VM-353G
LED forward current vs. Ambient temperature
IF - Ta
LED forward current IF (mA) Continuous load current I O (mA)
100
280 240
Continuous load current vs. Ambient temperature
IO - Ta
LED forward current I F (mA)
LED forward current vs. LED forward voltage
IF - VF
100 50 30 Ta = 25°C
80
200
10 5 3
60
160
40
120
1 0.5 0.3
80
20
40
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 = 120 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)
VDD = 20 V, RL = 200 Ω IF = 5 mA
Current leakage vs. Ambient temperature
I LEAK - Ta
Current leakage ILEAK (nA)
1000 VOFF = 350 V IF = 5 mA
2000
1200 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-353G/G1
191
■ Engineering Data
G3VM-353G1
LED forward current vs. Ambient temperature
IF - Ta
LED forward current IF (mA) Continuous load current I O (mA)
100
160
Continuous load current vs. Ambient temperature
IO - Ta
LED forward current I F (mA)
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 = 90 mA t
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