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[Features]
· 1a contact: 10A, 1a1b contacts: 8A. small and high capacity.
· 1a contact: 10A, 1a1b contacts 8 A. For power supply switching and output when space saving measures are needed.
· Now even smaller with a height of 10 mm, a width of 20 mm, and a length of 15 mm.
· Boasts a low power consumption of 200mW and high sensitivity.
· The standard type is UL508 and CSA standard certified.
· The series also includes types that support ultrasonic cleaning.
· Dedicated P6C socket type also available.
Japanese Only
Part Number
Configured Part Number is shown.
Type | Single Stable Type | |||
---|---|---|---|---|
Structure | Contact Configuration | Terminal | Model | Coil Rated Voltage (V) |
Flux Resistant Type | 1a | Standard Terminal Type | Model G6C-1117P-US | 5 DC |
12 DC | ||||
24 DC | ||||
1a1b | Standard Terminal Type | Model G6C-2117P-US | 5 DC | |
12 DC | ||||
24 DC |
Type | Single Stable Type | |||
---|---|---|---|---|
Structure | Contact Configuration | Terminal | Model | Coil Rated Voltage (V) |
Plastic Seal Type | 1a | Standard Terminal Type | Model G6C-1114P-US | 5 DC |
12 DC | ||||
24 DC | ||||
1a1b | Standard Terminal Type | Model G6C-2114P-US | 5 DC | |
12 DC | ||||
24 DC |
UL/CSA standard certification marking
Power Relay G6C Series appearance
G6C-□117P-US dimensional outline drawing
Flux-resistant type (standard terminal type)
Units: mm
* represents the average dimensions.
The dimensions within < > are for the dedicated socket (model P6C) relay (G6C□-□□□□P(-FD)-US-P6C).
G6C-□114P-US dimensional outline drawing
Plastic seal type (standard terminal type)
Units: mm
* represents the average dimensions.
The dimensions within < > are for the dedicated socket (model P6C) relay (G6C□-□□□□P(-FD)-US-P6C).
The international (non-Japan) standard certification ratings are different from the performance values which were determined separately. As such, make sure you check these values before use.
UL standard certified type - File: No.E41643
CSA standard certified type - File: No.LR31928
Model | Number of Contacts | Operating Coil Rating | Contact Rating | Number of Times Tested |
---|---|---|---|---|
Model G6C ( ) | 1 | 3 to 24 V DC | 10 A 250 V AC (General Use) 80°C 10 A 30 V DC (Resistive) 80°C 1/6 HP 125 V AC, 1/4 HP 125 V AC 80°C 1/3 HP 250 V AC, 1/4 HP 250 V AC 80°C 600 W 120 V AC (Tungsten) 80°C (excluding -FD type) | 6,000 |
530 VA 20 to 265 V AC Max 2 A (Pilot Duty) 80°C 43.2 VA 30 V DC (Pilot Duty) 80°C | 6,000 | |||
12LRA 2.2FLA 30 V DC 80°C | 30,000 1,000 (-FD type) | |||
2 | 8 A 250 V AC (General Use) 80°C 8 A 30 V DC (Resistive) 80°C 1/6 HP 125 V AC, 1/4 HP 125 V AC 80°C 1/3 HP 250 V AC, 1/4 HP 250 V AC 80°C 600 W 120 V AC (Tungsten) 80°C (excluding -FD type) | 6,000 | ||
530 VA 20 to 265 V AC Max 2 A (Pilot Duty) 80°C 43.2 VA 30 V DC (Pilot Duty) 80°C | 6,000 | |||
12LRA 2.2FLA 30 V DC 80°C | 30,000 1,000 (-FD type) |
Model | Number of Contacts | Operating Coil Rating | Contact Rating | Approved Switching Operations |
---|---|---|---|---|
Model G6C ( ) | 1 | 3, 5, 6, 12, 24 V DC | 10 A 250 V AC (cosφ = 1) 40°C 5 A 250 V AC (cosφ = 0.4) 40°C | 20,000 |
2 | 3, 5, 6, 12, 24 V DC | 7 A 250 V AC (cosφ = 1) 40°C 3.5 A 250 V AC (cosφ = 0.4) 40°C | 20,000 times |
Model | Number of Contacts | Operating Coil Rating | Contact Rating | Approved Switching Operations |
---|---|---|---|---|
Model G6C ( ) | 1 | 3, 5, 6, 12, 24 V DC | 10 A 250 V AC (cosφ = 1) 40°C 5 A 250 V AC (cosφ = 0.4) 40°C 10 A 30 V DC (L/R = 0 ms) 40°C | 20,000 times |
2 | 8 A 250 V AC (cosφ = 1) 40°C 3.5 A 250 V AC (cosφ = 0.4) 40°C 8 A 30 V DC (L/R = 0 ms) 40°C |
Rated Voltage (V) | Rated Current (mA) | Coil Resistance (Ω) | Operating Voltage (V) | Release Voltage (V) | Maximum Allowable Voltage (V) | Power Consumption (mW) | |
---|---|---|---|---|---|---|---|
DC | 5 | 40 | 125 | 70% or Less | 10% or More | 160% (at 23°C) | Approx. 200 |
12 | 16.7 | 720 | |||||
24 | 8.3 | 2,880 |
Contact Configuration | 1a Contact | 1a1b Contact | ||
---|---|---|---|---|
Rated Load | Resistance Load | Inductive Load (cosφ = 0.4, L/R = 7 ms) | Resistance Load | Inductive Load (cosφ = 0.4, L/R = 7 ms) |
250 V AC 10 A (8A) 30 V DC 10 A (10 A) | 250 V AC 5 A (5A) 30 V DC 5 A (5 A) | 250 V AC 8 A (8A) 30 V DC 8 A (8 A) | 250 V AC 3.5 A (3.5A) 30 V DC 3.5 A (3.5 A) | |
Contact Mechanism | Single | |||
Contact Material | Ag Alloy (Cd Free Material) | |||
Rated Conduction Current | 10 A (10 A) | 8 A (8 A) | ||
Maximum Contact Voltage Value | 380 V AC, 125 V DC | |||
Maximum Contact Current Value | 10 A (10 A) | 8 A (8 A) | ||
Maximum Switching Capacity Value (Reference Values) | 2,500 VA 300 W | 1,250 VA 220 W | 2,000 VA 240 W | 875 VA 170 W |
Type | Single Stable Type | |
---|---|---|
Contact Resistance *1 | 30 mΩ or Less | |
Operation (Set) Time *2 | 10 ms or Less (Approx. 5 ms) | |
Recovery (Reset) Time *2 | 10 ms or Less (Approx. 2 ms) | |
Minimum Set Pulse Width | - | |
Minimum Reset Pulse Width | - | |
Insulation Resistance *3 | Between Coil and Contact | 1,000 MΩ or More |
Between Contacts of Same Polarity | 1,000 MΩ or More | |
Between Contacts of Different Polarities | 1,000 MΩ or More (1a, 1b Contacts) | |
Between Set/Reset Coils | - | |
Withstand Voltage | Between Coil and Contact | 2,000 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 | 2,000 V AC 50/60 Hz 1 min (1a, 1b Contacts) | |
Between Set/Reset Coils | - | |
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 | 100 m/s2 | |
Durability | Mechanical | 50,000,000 Times or More (Switching Frequency: 18,000 Times/h) |
Electrical | 100,000 Times or More (Rated Load, Switching Frequency: 1,800 Times/h) | |
Failure Rate P Level (Reference Value *4) | 5 V DC 10 mA | |
Ambient Operating Temperature | -25 to +70°C (Assuming No Freezing or Condensation) | |
Operating Ambient Humidity | 5 to 85% RH | |
Weight | Approx. 5.6 g |
*1. Measurement conditions: 5 V DC, 1 A, voltage drop method.
*2. The values within ( ) are the actual values.
*3. Measurement conditions: Measured with a 500 V DC megohmmeter (at 250 V DC between set/reset coil).
*4. This value is obtained with a switching frequency of 120 times/min.
Part Number |
---|
G6C-1114P-US DC5 |
G6C-1114P-US DC12 |
G6C-1114P-US DC24 |
G6C-1117P-US DC5 |
G6C-1117P-US DC12 |
G6C-1117P-US DC24 |
G6C-2114P-US DC12 |
G6C-2114P-US DC24 |
G6C-2117P-US DC5 |
G6C-2117P-US 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) | AC rated load | DC rated load | Protective Structure |
---|---|---|---|---|---|---|---|---|---|---|
SGD 14.30 SGD 2.86 | 1 Piece(s) | Same day | 1a | 10 | 5 | AC250 10A | DC30 10A | Plastic seal type | ||
SGD 8.47 SGD 1.69 | 1 Piece(s) | Same day | 1a | 10 | 12 | AC250 10A | DC30 10A | Plastic seal type | ||
SGD 8.47 SGD 1.69 | 1 Piece(s) | Same day | 1a | 10 | 24 | AC250 10A | DC30 10A | Plastic seal type | ||
SGD 8.04 SGD 1.61 | 1 Piece(s) | Same day | 1a | 10 | 5 | AC250 10A | DC30 10A | Flux resistant shape | ||
SGD 9.30 SGD 1.86 | 1 Piece(s) | Same day | 1a | 10 | 12 | AC250 10A | DC30 10A | Flux resistant shape | ||
SGD 8.71 SGD 1.74 | 1 Piece(s) | Same day | 1a | 10 | 24 | AC250 10A | DC30 10A | Flux resistant shape | ||
SGD 9.92 SGD 1.98 | 1 Piece(s) | Same day | 1a1b | 8 | 12 | AC250 8A | DC30 8A | Plastic seal type | ||
SGD 9.44 SGD 1.89 | 1 Piece(s) | Same day | 1a1b | 8 | 24 | AC250 8A | DC30 8A | Plastic seal type | ||
SGD 8.47 SGD 1.69 | 1 Piece(s) | Same day | 1a1b | 8 | 5 | AC250 8A | DC30 8A | Flux resistant shape | ||
SGD 8.30 | 1 Piece(s) | 67 Day(s) | 1a1b | 8 | 24 | AC250 8A | DC30 8A | Flux resistant shape |
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Application | Power | Terminal shape | For Circuit Boards | Dimension height(mm) | 10 |
---|---|---|---|---|---|
Dimension width(mm) | 20 | Dimension depth(mm) | 15 | Type | Standard Form |
Contact mechanism | Single | Relay function | Single stable shape |
How can we improve?
How can we improve?