MOS FET Relays G3VM-S5 157
MOS FET Relays
G3VM-S5
Analog-Switching MOS FET Relay in 200-V Load
Voltage Series, SOP Package.
Ideal replacement for the dial-pulse relay or hook relay for
modems and facsimile machines.
Ideal for application to the line interface blocks of PBX and
telephone exchange systems.
Can be applied to hybrid IC circuits and card-type modems
conforming to PCMCIA standards.
Peak load voltage of 200 V.
Approved standards: UL1577 (File No. E80555)
RoHS Compliant.
Note: The actual product is marked differently from the image shown
here.
List of Models
Dimensions
Note: All units are in millimeters unless otherwise indicated.
Terminal Arrangement/Internal Connections
(Top View)
Actual Mounting Pad Dimensions
(Recommended Value, Top View)
Contact form Terminals Load voltage (peak value) Model Number per stick Number per tape
SPST-NO Surface-mounting
terminals
200 VAC G3VM-S5 100 ---
G3VM-S5(TR) --- 2,500
4.4±0.25
2.54±0.25
7±0.4
2.1 max.
3.9
±
0.2
0.4
±
0.1
0.1
±
0.1
0.6
±
0.3
0.15
G3VM-S5
Note: The actual product is marked
differently from the image
shown here.
Weight: 0.1 g
43
12
G3VM-S5
6 to 6.3
1.2
0.8
2.54
G3VM-S5
Application Examples
PBX subscriber interfaces
Multi-functional telephones
Card-type modems and fax modems
Built-in modems in personal computers
158 MOS FET Relays G3VM-S5
Absolute Maximum Ratings (Ta = 25°C)
Electrical Characteristics (Ta = 25°C)
Recommended Operating Conditions
Use the G3VM under the following conditions so that the Relay will operate properly.
Item Symbol Rating Unit Measurement conditions
Input LED forward current IF50 mA
Repetitive peak LED
forward current
IFP 1 A 100 μs pulses, 100 pps
LED forward current
reduction rate
Δ IF/°C0.5 mA/°CT
a 25°C
LED reverse voltage VR5V
Connection temperature Tj125 °C
Output Load voltage (AC peak/DC) VOFF 200 V
Continuous load current IO150 mA
ON current reduction rate Δ ION/°C1.5 mA/°CT
a 25°C
Connection temperature Tj125 °C
Dielectric strength between input and
output (See note 1.)
VI-O 1,500 Vrms AC for 1 min
Operating temperature Ta40 to +85 °C With no icing or condensation
Storage temperature Tstg 55 to +100 °C With no icing or condensation
Soldering temperature (10 s) --- 260 °C 10 s
Note: 1. The dielectric strength between the input and
output was checked by applying voltage be-
tween all pins as a group on the LED side and
all pins as a group on the light-receiving side.
Item Symbol Mini-
mum
Typical Maxi-
mum
Unit Measurement
conditions
Input LED forward voltage VF1.0 1.15 1.3 V IF = 10 mA
Reverse current IR--- --- 10 μAV
R = 5 V
Capacity between terminals CT--- 30 --- pF V = 0, f = 1 MHz
Trigger LED forward current IFT --- 1 3 mA IO = 150 mA
Output Maximum resistance with output ON RON --- 5 8 ΩIF = 5 mA,
IO = 500 mA
Current leakage when the relay is open ILEAK --- 0.00045 1.0 μAV
OFF = 200 V
Capacity between terminals COFF --- 100 --- pF V = 0, f = 1MHz
Capacity between I/O terminals CI-O --- 0.8 --- pF f = 1 MHz, Vs = 0 V
Insulation resistance RI-O 1,000 --- --- MΩVI-O = 500 VDC,
RoH 60%
Tu r n - O N t i m e t ON --- 0.6 1.5 ms IF = 5 mA, RL = 200 Ω,
VDD = 20 V (See note 2.)
Turn-OFF time tOFF --- 0.1 1.0 ms
VOUT
IF
tON tOFF
10% 90%
IF1
2
4
3
RLVDD
VOUT
Item Symbol Minimum Typical Maximum Unit
Load voltage (AC peak/DC) VDD --- 150 200 V
Operating LED forward current IF57.525mA
Continuous load current (AC peak/DC) IO--- --- 120 mA
Operating temperature Ta 20 --- 65 °C
MOS FET Relays G3VM-S5 159
Engineering Data
LED forward current vs.
Ambient temperature
I
F
- Ta
Continuous load current vs.
Ambient temperature
I
O
- Ta
LED forward current vs.
LED forward voltage
I
F
- V
F
LED forward current I
F
(mA)
Continuous load current I
O
(mA)
LED forward current I
F
(mA)
Ambient temperature Ta ()
Ambient temperature Taഒ
LED forward voltage V
F
(V)
Continuous load current vs.
On-state voltage
I
O
- V
ON
On-state resistance vs.
Ambient temperature
R
ON
- Ta
Trigger LED forward current vs.
Ambient temperature
I
FT
- Ta
Continuous load current I
O
(mA)
On-state resistance R
ON
(Ω)
Trigger LED forward current I
FT
(mA)
On-state voltage V
ON
(V
)
Ambient temperature Ta ()
Ambient temperature Ta ()
Turn ON, Turn OFF time vs.
LED forward current
t
ON
, t
OFF
- I
F
Turn ON, Turn OFF time vs.
Ambient temperature
t
ON
, t
OFF
- Ta
Current leakage vs.
Ambient temperature
I
LEAK
- Ta
Turn ON, Turn OFF time t
ON
, t
OFF
(μS)
Turn ON, Turn OFF time t
ON
, t
OFF
(μS)
Current leakage I
LEAK
(nA)
LED forward current I
F
(mA)
Ambient temperature Ta (ഒ
Ambient temperature Ta ()
60
100
0
20 0 20 40 60 80
100
80
40
20
20 0 20
40 60 80 100
350
0
250
200
50
300
150
100
100
0.1
0.6
0.3
30
10
3
1
0.8 1.0 1.4
1.6
1.8
1.2
Ta = 25 °C
10
0
20 0 20
40 60 80 100
8
4
2
IO = 200mA
IF = 5mA
t < 1s
6
5
0
40 20 0 40 60 80
100
4
3
2
IO = 200mA
t < 1s
1
20
3000
10
1
1000
300
100
3 5 10 30 100 500
50
tOFF
30
300
Ta = 2 5 ° C
VDD= 20V
RL= 200Ω
tON
3000
10
40
1000
300
100
30
20 0 20 40 60 80
100
VDD= 20V
RL= 200Ω
IF= 5mA
100
1 20
3
30
10
0 20 60
80
120
40
VOFF= 200V
100
21
200
200
0
100
100
31023
Ta= 25°C
A Connection
IF=5mA
21
200
200
0
100
100
31023
Ta= 25°C
A Connection
IF=5mA
t OFF
t ON
−−
−−
MOS FET Relays G3VM-S5
OMRON ON-LINE
Global - http://www.omron.com
USA - http://www.components.omron.com
Cat. No. X302-E-1 Printed in USA
OMRON ELECTRONIC
COMPONENTS LLC
55 E. Commerce Drive, Suite B
Schaumburg, IL 60173
847-882-2288
12/10 Specifications subject to change without notice
All sales are subject to Omron Electronic Components LLC standard terms and conditions of sale, which
can be found at http://www.components.omron.com/components/web/webfiles.nsf/sales_terms.html
ALL DIMENSIONS SHOWN ARE IN MILLIMETERS.
To convert millimeters into inches, multiply by 0.03937. To convert grams into ounces, multiply by 0.03527.