G2R-1-SND-DC12(S) Omron, G2R-1-SND-DC12(S) Datasheet - Page 9

RELAY SPDT 12VDC PLUG-IN W/LED

G2R-1-SND-DC12(S)

Manufacturer Part Number
G2R-1-SND-DC12(S)
Description
RELAY SPDT 12VDC PLUG-IN W/LED
Manufacturer
Omron
Series
G2RSr
Datasheets

Specifications of G2R-1-SND-DC12(S)

Relay Type
General Purpose
Contact Form
SPDT (1 Form C)
Contact Rating (current)
10A
Switching Voltage
440VAC, 125VDC - Max
Coil Type
Standard
Coil Current
43.2mA
Coil Voltage
12VDC
Turn On Voltage (max)
8.4 VDC
Turn Off Voltage (min)
1.8 VDC
Mounting Type
Socket
Termination Style
Quick Connect - .187" (4.7mm)
Circuit
SPDT (1 Form C)
Contact Rating @ Voltage
10A @ 250VAC
Control On Voltage (max)
8.4 VDC
Control Off Voltage (min)
1.8 VDC
Coil Voltage Vdc Nom
12V
Contact Current Max
10A
Contact Voltage Ac Nom
250V
Contact Voltage Dc Nom
30V
Coil Resistance
278ohm
Contact Configuration
SPDT
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
G2R-1-SNDDC12(S)
G2R-1-SNDDC12(S)
G2R1SNDDC12S
Z2952

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
G2R-1-SND-DC12(S)
Manufacturer:
Omron Electronics Inc-IA Div
Quantity:
135
Release Bounce Time
The bounce time of the normally closed (NC) contact of a relay when
the coil is de-energized at an ambient temperature of 23°C.
Release Time
The time that elapses between the moment a relay coil is de-ener-
gized until the NC contacts have closed, at an ambient temperature
of 23°C. (With a relay having SPST-NO or DPST-NO contacts, this is
the time that elapses until the NO contacts have operated under the
same condition.) Bounce time is not included. For the relays having
an operate time of less than 10 ms, the mean (reference) value of its
operate time is specified as follows:
Reset Time (Applicable to Latching
Relays Only)
The time that elapses from the moment a relay coil is de-energized
until the NC contacts have closed, at an ambient temperature of
23°C. (With a relay having SPST-NO contacts, this is the time that
elapses until the NO contacts have operated under the same condi-
tion.) Bounce time is not included. For the relays having a reset time
of less than 10 ms, the mean (reference) value of its reset time is
specified as follows:
Set Time
The time that elapses after power is applied to a relay coil until the
NO contacts have closed, at an ambient temperature of 23°C.
Bounce time is not included. For the relays having a set time of less
than 10 ms, the mean (reference) value of its set time is specified as
follows:
Release time
Reset time
Reset time
Magnetic circuit
Dual coil
latching
Single coil
latching
Contact
Set
coil
Reset
coil
Set time
5 ms max. (mean value: approx. 2.3 ms)
5 ms max. (mean value: approx. 2.3 ms)
5 ms max. (mean value: approx. 2.3 ms)
Min. set
pulse width
Set
Reset
Reset
time
Min. reset
pulse width
Electromechanical Relays
Shock Resistance
The shock resistance of a relay is divided into two categories:
“Mechanical Durability” (“Destruction”) which quantifies the charac-
teristic change of, or damage to, the relay due to considerably large
shocks which may develop during the transportation or mounting of
the relay, and “Malfunction Durability” which quantifies the malfunc-
tion of the relay while it is in operation.
Stray Capacitance
The capacitance measured between terminals at an ambient temper-
ature of 23°C and a frequency of 1 kHz.
VSWR (Applicable to High-frequency
Relays Only)
Stands for voltage standing-wave ratio. The degree of reflected wave
that is generated in the transmission line.
Vibration Resistance
The vibration resistance of a relay is divided into two categories:
“Mechanical Durability” (“Destruction”) which quantifies the charac-
teristic changes of, or damage to, the relay due to considerably large
vibrations which may develop during the transportation or mounting
of the relay, and “Malfunction Durability” which quantifies the mal-
function of the relay due to vibrations while it is in operation.
a = 0.002f
where,
a: Acceleration of vibration (G-force equivalence)
f: Frequency (Hz)
A: Double amplitude
2
A
Technical Information
9

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