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A low-profile power relay with a height of just 15.7 mm, enabling it to be incorporated into small-sized equipment.
[Features]
· 1-pole, 2-pole and high-capacity types are available.
· High sensitivity with a power consumption of 400 mW.
· A highly insulated type with an impact withstand voltage of 10 kV and a minimum 8 mm insulation distance between the coil and contacts.
· Ambient operating temperature of -40 to 85°C.
· Complies with VDE standards as standard.
[Applications]
· For PCBs used in communications equipment, OA equipment, testing instruments, disaster/crime-prevention devices, security devices, etc.
Part Number
Configured Part Number is shown.
G2RL external appearance
G2RL-1 composition
G2RL-1 dimensional drawing, Units: mm
*Average dimensions.
G2RL-1 PCB processing dimensional drawing
G2RL-1 terminal layout/schematics
There is no coil polarity.
G2RL-1A-E composition
G2RL-1A-E dimensional drawing, Units: mm
*Average dimensions.
G2RL-1A-E PCB processing dimensional drawing
G2RL-1A-E terminal layout/schematics
There is no coil polarity.
Reference data: Ambient temperature and maximum allowable voltage
Note: The maximum allowable voltage is the maximum voltage that can be applied to a relay coil.
Classification | Standard Type | High Capacity Type | |||
---|---|---|---|---|---|
Number of Contacts | 1 Pole | 2 Pole | 1 Pole | ||
Items | Contact Resistance *1 | 100 mΩ or Less | |||
Turn-ON Time | 15 ms or Less | ||||
Turn-OFF Time | 5 ms or Less | ||||
Maximum Switching Frequency | Mechanical | 18,000 Times/h | |||
Rated Load | 1,800 Times/h | ||||
Insulation Resistance *2 | 1,000 MΩ or More | ||||
Withstand Voltage | Between Coil and Contact | 5,000 V AC 50/60 Hz 1 min | |||
Between Contacts of Same Polarity | 1,000 V AC 50/60 Hz 1 min | ||||
Between Contacts of Different Polarities | - | 2,500 V AC 50/60 Hz 1 min | - | ||
Insulation Distance | Between Coil and Contact | Space: 8 mm, Creepage: 8 mm | |||
Impulse Withstand Voltage | 10 kV (1.2 × 50 μs) | ||||
Vibration | Durability | 10 to 55 to 10 Hz, Semi Amplitude 0.75 mm (Double Amplitude 1.5 mm) | |||
Malfunction | 10 to 55 to 10 Hz, Semi Amplitude 0.75 mm (Double Amplitude 1.5 mm) | ||||
Shock / Impact | Durability | 1,000 m/s2 | |||
Malfunction | Energized: 100 m/s2, Non-Energized: 100 m/s2 | ||||
Durability | Mechanical | 20,000,000 Times or More (Switching Frequency: 18,000 Times/h) | |||
Electrical *3 (Resistance Load) | Model: G2RL-1A : 250 V AC 10 A, 100,000 Times : 24 V DC 10 A, 30,000 Times Model G2RL-1 : 250 V AC 10 A, 50,000 Times : 24 V DC 10 A, 30,000 Times | Model: G2RL-2A : 250 V AC 5 A, 100,000 Times : 24 V DC 5 A, 30,000 Times Model G2RL-2 : 250 V AC 5 A, 50,000 Times : 24 V DC 5 A, 30,000 Times | Model: G2RL-1A-E(-ASI) : 250 V AC 16 A, 50,000 Times : 24 V DC 16 A, 30,000 Times Model G2RL-1-E : 250 V AC 16 A, 30,000 Times : 24 V DC 16 A, 30,000 Times | ||
Ambient Operating Temperature | -40 to +85°C (Assuming No Freezing or Condensation) | ||||
Operating Ambient Humidity | 5 to 85% RH | ||||
Weight | Approx. 12 g |
Note: The above values are the initial default values.
Part Number |
---|
G2RL-1 DC12 |
G2RL-1 DC24 |
G2RL-1-E DC12 |
G2RL-1-E DC24 |
Part Number | Standard Unit Price | Minimum order quantity | Volume Discount | Days to Ship | Contact Configuration | Contact rated current (minimum value for AC and DC) (A) | Coil rated voltage (DC) (V) | Classification | Note |
---|---|---|---|---|---|---|---|---|---|
SGD 6.37 SGD 1.27 | 1 Piece(s) | Same day | 1c | 10 | 12 | Standard Type | - | ||
SGD 6.37 SGD 1.27 | 1 Piece(s) | Same day | 1c | 10 | 24 | Standard Type | - | ||
SGD 7.28 SGD 1.46 | 1 Piece(s) | Same day | 1c | 16 | 12 | High Capacity Type | High Capacity Type | ||
SGD 6.36 SGD 1.27 | 1 Piece(s) | Same day | 1c | 16 | 24 | Standard Type | High Capacity Type |
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Application | Power | Latch function | NA | Terminal shape | For Circuit Boards |
---|---|---|---|---|---|
Representative Standard | UL / CSA | Dimension height(mm) | 15.7 | Dimension width(mm) | 29 |
Dimension depth(mm) | 12.7 | Contact mechanism | Single | Protective Structure | Flux resistant shape |
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How can we improve?