G2R-1A-E-DC12 Omron, G2R-1A-E-DC12 Datasheet - Page 28

RELAY PWR SPST-NO 16A 12VDC

G2R-1A-E-DC12

Manufacturer Part Number
G2R-1A-E-DC12
Description
RELAY PWR SPST-NO 16A 12VDC
Manufacturer
Omron
Series
G2Rr

Specifications of G2R-1A-E-DC12

Relay Type
General Purpose
Coil Resistance
275 Ohms
Contact Form
SPST-NO (1 Form A)
Contact Rating (current)
16A
Switching Voltage
380VAC, 125VDC - Max
Coil Type
Standard
Coil Current
43.6mA
Coil Voltage
12VDC
Turn On Voltage (max)
8.4 VDC
Turn Off Voltage (min)
1.8 VDC
Mounting Type
Through Hole
Termination Style
PC Pin
Circuit
SPST-NO (1 Form A)
Contact Rating @ Voltage
16A @ 250VAC
Control On Voltage (max)
8.4 VDC
Control Off Voltage (min)
1.8 VDC
Contact Rating
16 A
Contact Termination
Solder Pin
Mounting Style
Through Hole
Power Consumption
530 mW
Contact Material
Silver Alloy
Coil Voltage Vdc Nom
12V
Contact Current Max
16A
Contact Voltage Ac Nom
250V
Contact Voltage Dc Nom
30V
Contact Configuration
SPST-NO
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
G2R-1A-E-DC12
G2R1AEDC12
Z2307

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
G2R-1A-E-DC12V
Manufacturer:
OMRON
Quantity:
12 000
Part Number:
G2R-1A-E-DC12V
Manufacturer:
OMRON
Quantity:
12 000
Company:
Part Number:
G2R-1A-E-DC12V
Quantity:
5 655
Determining Rb
The current flows into Rb should be enough to turn ON TR when the
relay is reset. When determining value of Rb, the following points
must be noted:
• TR must be sufficiently turned ON even when T equals the time
• Give adequate consideration to changes in the due to changes in
An experiment reveals that the relay sufficiently operates with a
capacitance of 100 μF + 47 μF where the relay is rated at a supply
voltage of 5 VDC and a coil voltage of 3 VDC. It can therefore be said
that the capacitance can be lower than the calculated value. This is
because the time constant is determined with a relatively wide mar-
gin. So it is recommended to perform experiments to determine the
time constant.
28
constant.
ambient temperature. Simple as it is, the driver circuit introduced
here can efficiently control the relay, consuming a tiny amount of
power.
Electromechanical Relays
Technical Information
Application circuit example
The TTL output of a solid-state switch can be used as Q
Half-wave rectified AC power is applied to the circuit. Q
of a TTL, and drives the relay.
1
2
is the output
.

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