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MJGX-5FD

1. AC output, using bidirectional thyristor output, zero voltage on, zero current off.

2. The DC output adopts bipolar transistor output, with low conduction voltage, fast switching speed and strong anti-interference.

3. The input signal is compatible with TTO and COMS digital logic circuits.

4. Optical isolation between input loop and output loop.

5. The isolation voltage between the input terminal and the output terminal is 2500V.

6. Single in-line circuit board soldering installation, standard modular size.

7. 100% load current aging test, passed European CE certification, international ISO9000 certification, and domestic 3C certification.

    Features

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    1. AC output, using bidirectional thyristor output, zero voltage on, zero current off.

    2. The DC output adopts bipolar transistor output, with low conduction voltage, fast switching speed and strong anti-interference.

    3. The input signal is compatible with TTO and COMS digital logic circuits.

    4. Optical isolation between input loop and output loop.

    5. The isolation voltage between the input terminal and the output terminal is 2500V.

    6. Single in-line circuit board soldering installation, standard modular size.

    7. 100% load current aging test, passed European CE certification, international ISO9000 certification, and domestic 3C certification.

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    Model meaning

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    MJGX-5FD Model meaning
    M Corporate logo: M: Mingxin
    JGX Solid state relay development code name
    -5 Output rated current value: 1A 3A 5A 7A
    F circuit board type
    D A: Output load AC value AC D: Output load DC value DC

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    Technical parameters

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    one

    Mutually

    electricity

    road

    plate

    Mode

    solid

    state

    follow

    electricity

    device

    Product model

    MJGX-5FD

    Control method

    DC controlled DC (DC-DC)

    Load current

    4A、5A

    load voltage

    60VDC、110VDC、220VDC

    control voltage

    DC3-14V or DC3-32V

    control current

    6-35mA

    On-state leakage current

    ≤1.5mA

    On-state voltage reduction

    ≤1.5V

    Off state time

    ≤10mS

    Medium pressure resistance

    1500VAC

    Insulation resistance

    500MΩ/500VDC

    ambient temperature

    -25℃-+70℃

    Installation method

    Printing layout P, ??C, B

    weight

    25g

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    Appearance and installation dimensions/wiring diagram

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    5FFD.jpg

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    Product application

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    MJGX circuit board solid state relay adopts flame retardant engineering plastic shell, epoxy resin potting, single in-line circuit board welding installation, standard modular size. Compared with electromagnetic relays, they have no mechanical sound and no contact arc ignition. They have higher surge current tolerance, long life and high reliability.

    The input end drive current is small and can be easily interfaced with computer terminals and various digital program-controlled circuits, achieving isolation and control of weak power.

    It is widely used in petrochemical equipment, food machinery, packaging machinery, textile machinery, CNC machine tools, plastic machinery, fitness equipment, entertainment facilities and other automation control fields. It can control small motors, incandescent lamps, indicator lights, low-power power supplies, and intelligent instruments. Instruments and various solenoid valves can also be used as the driving stage of high-power electromagnetic contactors. It is especially suitable for harsh environments such as corrosion, moisture, dustproof, explosion-proof requirements, and frequent switching situations.

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    Safety precautions

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    1. When used with AC inductive loads, high transient voltages and surge currents are applied to the output end, which may cause the solid-state relay to conduct or be damaged. It is usually necessary to connect a voltage control device with a specific clamping voltage to the output end, such as Bi-wire zener diode or varistor (MOV). It is recommended that the varistor be 1.6-1.9 times the rated voltage;

    2. For DC inductive loads, such as solenoids, electromagnets, and electromagnetic valves, a freewheeling circuit must be used to suppress the back electromotive force generated during shutdown. Usually the simpler method is to connect a diode in reverse parallel with the load, but this The circuit will affect the release time of inductive loads such as electromagnetic relays, contactors, electromagnets, solenoid valves, etc. A better circuit is a diode and a Zener diode connected in reverse series or a diode connected in series with a resistor and then inversely connected to the load. in parallel.

    3. When controlling a smaller 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. When welding and installing circuit board welding-mounted relays, the welding temperature must be controlled below 260 degrees Celsius, and the welding time must be controlled below 5 seconds.

    5. 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.