G2R-1A-E-DC12 Omron, G2R-1A-E-DC12 Datasheet - Page 15

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
■ Latching Relays
• Avoid use in locations subject to excessive magnetic particles or
• Avoid use in magnetic fields (over 8,000 A•m).
• Take measures to preventing problems caused by vibration or
Drive Circuit (Dual Coil Latching Relays G5AK, G6AK, G6BK, etc.)
When a DC-switching latching relay is used in one of the circuits shown in the following diagram, the relay contacts may be released from the locked
state unless a diode (enclosed in the dotted box in the circuit diagram) is connected to the circuit.
When connecting a diode to the relay circuit, be sure to use a diode with a repetitive peak-inverse voltage, and a DC reverse voltage sufficient to
withstand external noise or surge. Also be sure that the diode has an average rectified current greater than the coil current.
If the contact of the relay is used to de-energize the relay, the relay may not operate normally. Avoid using the relay in a circuit like the one shown
below:
dust.
shock. Problems may originate from other relay(s) operating or
releasing on the same panel.
Circuit connecting two reset coils in parallel.
Circuit connecting two set coils in parallel
(+)
(−)
(+)
(−)
S
S
K
1
S
D
D
R
S
1
1
1
R
1
K
1
S
S
2
2
S
S
D
R
S
D
R
2
3
K
2
Incorrect Use:
2
K
2
S
Electromechanical Relays
3
Circuits
X
X
• Avoid simultaneous energization of the set and reset coils, even
• Avoid use under conditions where excessive surge-generating
• When planning to mount multiple relays side-by-side, observe the
b
L
X
X
though both coils can be continuously energized.
sources exist in the coil power source.
minimum mounting interval of each type of relay.
L
b
: Latching relay
: NC contact of relay
Circuit connecting set coil of latching relay
in parallel with another relay coil.
Technical Information
Circuit connecting set coil to reset coil.
(+)
(−)
Load
(+)
(−)
S
K
1
D
S
1
R
D
1
S
1
S
S
S
2
K
S
S
2
D
2
3
2
R
R
S
S
3
4
15

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