High frequency AC switching solid state relay
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Product Details
High frequency AC switching solid state relay
- Optical magnetic isolation between input and output circuits.
- Optical diode indicates working status.
- A set of normally open solid-state contactless switches.
- Compatible with high-frequency AC power supplies, with fast switching on and off, no sparking or arcing.
- Uses ring solid encapsulation, corrosion-resistant, shockproof, safe and reliable operation.
Part numbers
| Part Numbers | Max. Current | Load Voltage | Control Voltage | Operating Frequency | Housing |
| GH19GS-3044RD1 | 30A | 24-440VAC | 12-15VDC | 0-1000Hz | M-2D |
| GH19GS-3044RD2 | 30A | 24-440VAC | 18-36VDC | 0-1000Hz | M-2D |
| GH19GS-5044RD1 | 50A | 24-440VAC | 12-15VDC | 0-1000Hz | M-2D |
| GH19GS-5044RD2 | 50A | 24-440VAC | 18-36VDC | 0-1000Hz | M-2D |
| GH19GS-8044RD1 | 80A | 24-440VAC | 12-15VDC | 0-1000Hz | M-2D |
| GH19GS-8044RD2 | 80A | 24-440VAC | 18-36VDC | 0-1000Hz | M-2D |
| GH19GS-10044RD1 | 100A | 24-440VAC | 12-15VDC | 0-1000Hz | M-2D |
| GH19GS-10044RD2 | 100A | 24-440VAC | 18-36VDC | 0-1000Hz | M-2D |
| GH19GS-12044RD1 | 120A | 24-440VAC | 12-15VDC | 0-1000Hz | M-2D |
| GH19GS-12044RD2 | 120A | 24-440VAC | 18-36VDC | 0-1000Hz | M-2D |
| GH19GS-15044RD1 | 150A | 24-440VAC | 12-15VDC | 0-1000Hz | M-2D |
| GH19GS-15044RD2 | 150A | 24-440VAC | 18-36VDC | 0-1000Hz | M-2D |
| GH19GS-18044RD1 | 180A | 24-440VAC | 12-15VDC | 0-1000Hz | M-2D |
| GH19GS-18044RD2 | 180A | 24-440VAC | 18-36VDC | 0-1000Hz | M-2D |
| GH19GS-20044RD1 | 200A | 24-440VAC | 12-15VDC | 0-1000Hz | M3 |
| GH19GS-20044RD2 | 200A | 24-440VAC | 18-36VDC | 0-1000Hz | M3 |
| GH19GS-25044RD1 | 250A | 24-440VAC | 12-15VDC | 0-1000Hz | M3 |
| GH19GS-25044RD2 | 250A | 24-440VAC | 18-36VDC | 0-1000Hz | M3 |
| GH19GS-30044RD1 | 300A | 24-440VAC | 12-15VDC | 0-1000Hz | M3 |
| GH19GS-30044RD2 | 300A | 24-440VAC | 18-36VDC | 0-1000Hz | M3 |
| GH19GS-3024RD1 | 30A | 24-240VAC | 12-15VDC | 0-1000Hz | M-2D |
| GH19GS-3024RD2 | 30A | 24-240VAC | 18-36VDC | 0-1000Hz | M-2D |
| GH19GS-5024RD1 | 50A | 24-240VAC | 12-15VDC | 0-1000Hz | M-2D |
| GH19GS-5024RD2 | 50A | 24-240VAC | 18-36VDC | 0-1000Hz | M-2D |
| GH19GS-8024RD1 | 80A | 24-240VAC | 12-15VDC | 0-1000Hz | M-2D |
| GH19GS-8024RD2 | 80A | 24-240VAC | 18-36VDC | 0-1000Hz | M-2D |
| GH19GS-10024RD1 | 100A | 24-240VAC | 12-15VDC | 0-1000Hz | M-2D |
| GH19GS-10024RD2 | 100A | 24-240VAC | 18-36VDC | 0-1000Hz | M-2D |
| GH19GS-12024RD1 | 120A | 24-240VAC | 12-15VDC | 0-1000Hz | M-2D |
| GH19GS-12024RD2 | 120A | 24-240VAC | 18-36VDC | 0-1000Hz | M-2D |
| GH19GS-15024RD1 | 150A | 24-240VAC | 12-15VDC | 0-1000Hz | M-2D |
| GH19GS-15024RD2 | 150A | 24-240VAC | 18-36VDC | 0-1000Hz | M-2D |
| GH19GS-18024RD1 | 180A | 24-240VAC | 12-15VDC | 0-1000Hz | M-2D |
| GH19GS-18024RD2 | 180A | 24-240VAC | 18-36VDC | 0-1000Hz | M-2D |
| GH19GS-20024RD1 | 200A | 24-240VAC | 12-15VDC | 0-1000Hz | M3 |
| GH19GS-20024RD2 | 200A | 24-240VAC | 18-36VDC | 0-1000Hz | M3 |
| GH19GS-25024RD1 | 250A | 24-240VAC | 12-15VDC | 0-1000Hz | M3 |
| GH19GS-25024RD2 | 250A | 24-240VAC | 18-36VDC | 0-1000Hz | M3 |
| GH19GS-30024RD1 | 300A | 24-240VAC | 12-15VDC | 0-1000Hz | M3 |
| GH19GS-30024RD2 | 300A | 24-240VAC | 18-36VDC | 0-1000Hz | M3 |
Specification
| Model | GH19GS |
|---|---|
| Control Voltage | 12~15 VDC / 18~36 VDC |
| Control Current | ≤80 mA |
| Start Current | ≥60 mA |
| Shut-off Voltage | 12~15VDC ≤10VDC / 18~36VDC ≤12VDC |
| Switching Time | ≤0.4 mS |
| Load Voltage | 24~240VAC / 24~440VAC |
| Peak Current | 30~180A / 200-300A |
| On-state Voltage Drop | ≤3.8 V / ≤5.0 V |
| Off-state Voltage | ≥600V / ≥1200V |
| Isolation Voltage | ≥2000 V |
| Insulation Voltage | ≥2500 V |
| Operating Temperature | -30~75 ℃ |
| Power Frequency | 0-1000 HZ |
| Cooling Conditions | Heat sink plus fan |
| Load Current Safety Factor | Resistive load 2-3 times, Inductive load 3-4 times |
Notes while using
- Different margins should be maintained for the current rating depending on the nature of the load. (For resistive loads, the selection can be made at 2-3 times the load current. For inductive or capacitive loads, it can be selected at 3-4 times the load current).
- The actual load current is greatly related to the ambient temperature. When the ambient temperature is high or the heat dissipation conditions are poor, the current capacity should be increased. To prevent load short-circuit during use, overload protection should be added in the load circuit or a GH19L overload current protection type solid-state relay should be used.
- To prevent harm from high-order harmonics of the power supply, an overvoltage protector should be connected in parallel at the output end to prevent damage to the solid-state switch in case of overvoltage. Selection of Metal Oxide Varistor (MOV): choose 430-470V for the 240V range, and 680-750V for the 440V range.
- The contact surface between the matching heat sink and this product must be flat and smooth, and a layer of thermal conductive silicone grease should be applied to its surface. When fixing, screws should be tightened symmetrically with spring washers and flat washers to prevent loosening due to thermal expansion and contraction.
Inquiry
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