G3VM-41LR10
MOS FET Relays
World’s Smallest * SSOP Package MOS
FET Relays (COFF (typical): 0.45 pF, RON
(typical): 12 Ω) with Low Output
Capacitance and ON Resistance (C × R =
5 pF • Ω) in a 40-V Load Voltage Model.
• Output capacitance of 0.45 pF (typical) allows high-frequency applications.
Note: The actual product is marked differently from the
image shown here.
* As of March 2011 Survey by OMRON
RoHS compliant
■ Application Examples
■ Terminal Arrangement/Internal Connections
• Semiconductor test equipment
416
• Test & Measurement equipment
Model name
OMRON mark
• Communication equipment
LOT.No.
612
• Data loggers
Note: The actual product is marked differently from the image shown here.
■ List of Models
Package type
Contact form
Load voltage
(peak value) *
Terminals
Model
Minimum package quantity
Number per tape and reel
G3VM-41LR10
SSOP4
1a
(SPST-NO)
Surface-mounting Terminals
40 V
G3VM-41LR10 (TR05)
G3VM-41LR10 (TR)
500
1,500
Note: Ask your OMRON representative for orders under 1,500 pcs or 500 pcs. We can supply products with the tape already cut.
Tape-cut SSOPs are packaged without humidity resistance. Use manual soldering to mount them.
Refer to common precautions.
* The AC peak and DC value are given for the load voltage.
■ Absolute Maximum Ratings (Ta = 25 °C)
Output
Input
Item
LED forward current
LED forward current reduction rate
LED reverse voltage
Connection temperature
Load voltage (AC peak/DC)
Continuous load current (AC peak/DC)
ON current reduction rate
Connection temperature
Dielectric strength between
I/O (See note 1.)
Ambient operating temperature
Ambient storage temperature
Soldering temperature
Symbol
IF
∆IF/°C
VR
TJ
VOFF
IO
∆IO/°C
TJ
Rating
30
−0.3
5
125
40
120
−1.2
125
Unit
mA
mA/°C
V
°C
V
mA
mA/°C
°C
VI-O
1500
Vrms
Ta
Tstg
-
−20 to +85
−40 to +125
260
°C
°C
°C
Measurement conditions
Ta ≥ 25 °C
Ta ≥ 25 °C
AC for 1 min
With no icing or condensation
With no icing or condensation
10 s
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.
■ Electrical Characteristics (Ta = 25 °C)
Output
Input
Item
Symbol Minimum Typical Maximum
LED forward voltage
VF
1.15
1.35
1.45
Reverse current
IR
10
Capacity between terminals
CT
70
Trigger LED forward current
IFT
3
Maximum resistance with output ON
RON
12
14
Current leakage when the relay is open
ILEAK
10
200
Capacity between terminals COFF
0.45
0.8
Capacity between I/O terminals
CI-O
0.3
Insulation resistance between I/O terminals
RI-O
1000
Turn-ON time
tON
0.2
Turn-OFF time
tOFF
0.3
1
Unit
V
µA
pF
mA
Ω
pA
pF
pF
MΩ
ms
ms
Measurement conditions
Note: 2. Turn-ON and Turn-OFF Times
IF = 5 mA
IF 1
VR = 5 V
4 RL
VDD
V = 0, f = 1 MHz
VOUT
2
3
IO = 100 mA
IF = 5 mA, IO = 120 mA, t < 1 s
VOFF = 35 V, Ta = 25 °C
V = 0, f = 100 MHz, t < 1 s
IF
f = 1 MHz, VS = 0 V
VI-O = 500 VDC, ROH ≤ 60 %
90%
VOUT
10%
IF = 5 mA, RL = 200 Ω,
t ON
t OFF
VDD = 10 V (See note 2.)
G3VM-41LR10
MOS FET Relays
■ Recommended Operating Conditions
Use the G3VM under the following conditions so that the Relay will operate properly.
Item
Symbol
Minimum
Typical
Maximum
Unit
Load voltage (AC peak/DC)
Operating LED forward current
Continuous load current (AC peak/DC)
Ambient operating temperature
VDD
IF
IO
Ta
25
-
32
20
120
60
V
mA
mA
°C
■ Engineering Data
LED forward current vs. Ambient
temperature
Continuous load current vs. Ambient
temperature
50
40
30
20
10
IF - VF
LED forward current IF (mA)
IO - Ta
Continuous load current IO (mA)
LED forward current IF (mA)
IF - Ta
LED forward current vs. LED forward
voltage
180
160
140
120
100
80
100
Ta = 25 °C
50
30
10
60
5
40
3
20
0
0
-20
0
20
40
60
80
100
120
-20
0
20
40
Ambient temperature Ta (°C)
Continuous load current vs. On-state
voltage
1
120
On-state resistance vs. Ambient
temperature
1
1.1
1.2
1.3
100
50
0
-50
25
1.5
1.6
Trigger LED forward current vs.
Ambient temperature
IFT - Ta
IO = 120 mA
IF = 5 mA
t
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