- solid state relay
- Circuit Board Solid State Relay
- Single phase solid state relay
- Industrial Solid State Relays
- Three-phase solid state relay
- Three-phase forward and reverse solid state relay
- Rail type three-phase solid state relay
- Industrial grade solid state relay module
- Tension controller
- Intelligent voltage regulation module
- Single and three-phase silicon controlled trigger
- heat sink
- Semiconductor module, rectifier bridge series
- time relay
- Digital display counter
- water level controller
- timer
- switching power supply
- S series switching power supply
- MS series switching power supply
- LRS series switching power supply
- D, T, Q multi-group series switching power supplies
- DR rail series switching power supply
- NDR rail series switching power supply
- MDR rail series switching power supply
- HDR rail series switching power supply
- FY rainproof series switching power supply
- FS rainproof series switching power supply
- Foot switch
- Fan water pump controller
ZG3NC-2210B
product detail
Features
1. Power metal oxide field effect transistor output (MOSFET);
2. Extremely low on-resistance;
3. The input signal is compatible with TTL logic circuit;
4. Transformer isolation between input circuit and output circuit;
5. LED indicates working status;
6. Equipped with safety protection cover;
7. 100% load current aging test, passed European CE certification, international ISO9000 certification, and domestic 3C certification.
Model meaning
ZG3NC-2210B | Model meaning |
ZG3NC? | ZG3NC: Solid State Relay ZG1NC: Solid State Voltage Regulator |
2 | Output load voltage: 2: 30-240VAC, 3: 24-480VAC 06:60VDC, 11:110VDC, 22:250VDC |
210 | Output rated current: 10A 25A 40A 60A 80A 100A 120A |
B | Input control mode: A: AC 80-250VAC B: DC 3-32VDC C: Adjustable resistance 470-560kΩ/2W DL: Current 4-20mA EL: Voltage 2-10VDC |
Product application
ZG3NC series solid-state relays adopt flame-retardant engineering plastic shell, epoxy resin potting, threaded terminal wiring, with high structural strength, strong impact resistance, strong vibration resistance, small input drive current, and can be easily connected to computer terminals and various digital program-controlled circuits. They are widely used in automation control fields such as petrochemical instruments and equipment, food machinery, packaging machinery, textile machinery, CNC machine tools, plastic machinery, fitness equipment, and entertainment facilities.
It is particularly suitable for harsh environments such as corrosion, moisture, dust, explosion-proof, and occasions requiring frequent switching. It is an updated replacement product for AC contactors.
Technical parameters
one Mutually straight flow solid state follow electricity device | Product model classification | ZG3NC-2210B、ZG3NC-2225B、ZG3NC-2240B、ZG3NC-2260B、ZG3NC-2280B、ZG3NC-22100B |
Control method | DC controlled DC (DC-DC) | |
Load current | 10A、25A、40A、60A、80A、100A | |
load voltage | 12-250VDC | |
control voltage | 3-32VDC | |
control current | DC:5-15mA | |
On-state leakage current | ≤2mA | |
On-state voltage reduction | ≤1.5VAC | |
Off state time | ≤10mS | |
Medium pressure resistance | 2500VAC | |
Insulation resistance | 500MΩ/500VDC | |
ambient temperature | -30℃-+75℃ | |
Installation method | bolted | |
work instructions | LED | |
weight | 120g |
Overall dimensions
Safety precautions
1. When the load current is higher than 5A, a radiator must be used or installed on a metal base plate with corresponding heat dissipation effect. Thermal silicone grease should be applied between the solid state relay heat dissipation base plate and the mounting surface. Above 40A, a fan should be used for forced cooling or water cooling.
2. When used with inductive loads, high transient voltages and surge currents are applied to the output end, which may cause the solid-state relay to mislead or be damaged. It is usually necessary to connect a voltage control device with a specific clamping voltage to the output end, such as a bidirectional relay. Zener diode or varistor (MOV). It is recommended that the varistor be 1.6-1.9 times the rated voltage.
3. When controlling a smaller load current load close to the minimum load current, a virtual load resistor must be connected in parallel to the load to reduce the output leakage current and produce a higher residual voltage on the load.
4. In order to prevent the temperature rise of solid-state relays from exceeding the allowable value, the heat dissipation effect and installation location should be considered when designing and applying. When two or more solid-state relays are installed side by side, appropriate spacing should be left.
5. The output terminals of multiple solid-state relays must not be used in parallel in an attempt to increase the output current. However, the output terminals can be used in series to accommodate higher operating voltages.
6. When using multiple solid-state relays to share a control power supply, the input terminals can be used in series or in parallel.
7. Please use this piece with caution for capacitive loads. Please choose a solid-state relay dedicated for capacitive loads.