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MC4 Male and Female Connectors from China Factory - Durable Inline Fuse Connectors for Solar PV Systems, Suppliers Welcome

The JDE MC4 Inline Fuse Connector is expertly designed for solar PV systems, connecting solar panels to inverters or controller boxes. As a leading product from China, this connector ensures remarkable durability with UV resistance, enabling it to perform reliably outdoors for up to 25 years. Ideal for standard MC4 type wire leads, these in-line fuses are constructed using a crimped connection, offering a stable and long-lasting alternative to traditional clip-in clamps. As a trusted supplier and factory, we prioritize quality in every connector, making it the perfect choice for your solar energy solution

    Product Description

    Separate parts for male and female cable connectors (including insulation)

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    Contacts (including insulators) on the feeder belt

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    Technical parameters
    connector systems Ø 4 mm
    Rated voltage 1000 V DC (IEC 62852)
    1500 V DC (2Pfg2330)1 )
    600 V DC /1000 V DC/ 1500 V DC (UL2))
    Rated current T ∨ V (85 ° C) 17 A (1.5 mm²)
    22.5 A (2.5 mm²)
    39 A (4 mm²/6 mm²)
    45 A (10 mm²)
    Rated current UL 22.5 A (14 AWG)
    30 A (12 AWG/10 AWG)
    50 A (8 AWG)
    Rated pulse voltage 12 kV (1000 V DC (TÜV))
    16 kV (1500 V DC (TÜV))
    ambient temperature range -40°C...+85°C (TÜV)
    -40 °C...+75°C (UL)
    upper temperature limit 105 °C (TÜV)
    Protection class, inserted
    Unplugged
    IP65, IP68 (1h/1 m) IP2X
    overpressure category/pollution level CATIII/3
    contact resistance of the connector ≤0.2 mΩ
    security level 1000 V DC: II
    1500 V DC: 0
    connecting systems MULTILAM
    wiring type Crimping
    Contact material Copper/304, tin-plated
    insulating materials PC/PA
    Locking system (UL) Embedded
    Flame retardant rating UL94-V0
    Ammonia resistance (in accordance with DLG technical regulations) 1500 h, 70 ° C/70% RH, 750 ppm
    Salt spray test, severity class 6 IEC 60068-2-52

    JDE MC4 Inline Fuse Connector is specialized used in Solar PV system between the solar panel and Inverter or controller box. They’re UV resistant and can be working outdoor for 25years. These MC4 type in-line fuses are ideal for use with solar panels with a standard MC4 type wire lead. These are constructed with a crimped connection which guarantees a long-lasting, stable connection in comparison to conventional clip-in clamps.

    When connecting Slocable solar pv system, the most ideal approach to add assurance is by using MC4 fuses or solar circuit breakers. The correct use of fuses and circuit breakers is important to maintain safety. Fuses and circuit breakers are used to protect the wiring from getting excessively hot and also protect all devices connected in the system from bursting into flames or getting harmed if a short circuit happens.

    A good example is a 12V lead acid battery. If a short develops in your AC/DC inverter for example, a fuse between it and the battery will prevent a possible explosion of the battery and it will cut the circuit fast enough to prevent the wires from bursting into flames or getting hazardously hot. For this situation, the battery, wires, and AC/DC inverter will be securely disabled by the fuse. They are not necessary for the system to run properly, but we always suggest using fuses or circuit breakers for safety purposes.

    There are three different locations that we suggest installing fuses or breakers: first, between the charge controller and battery bank, second, between the charge controller and solar panels, and third would be between the battery bank and inverter.

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    To determine the fuse size required between the charge controller and battery bank you simply match the amperage rating on the charge controller.

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    The second fuse between your solar panels and charge controller is somewhat different to figure out. The size of this fuse is dependent on how many solar panels you have and how they are connected (series, parallel, or series/parallel). If the panels are connected in series, the voltage of each panel is added but the amperage stays the same. For instance, if you have four 100W panels connected in series, each producing 20 volts and 5 amps, the total output would be 80 volts and 5 amps.

    We then take the total amperage and multiply it by a safety factor of 25% (5A x 1.25) giving us the fuse rating of 6.25A or 10A if we round up. If you have a parallel connection, where the amperage of the panels is added up however the voltage stays the same, you would have to add up the amperage of each panel and then we add a 25% industry rule to figure out the fuse size. For instance, if you had four 100W panels hooked in a parallel connection, each panel produces about 5 Amps, so we would use this equation (4 * 5 * 1.25) = 28.75 Amps, so in this instance we would recommend a 30 Amp fuse.

    Commercial solar panels with more than 50 watts have 10 gauge wires and can handle currents up to 30 amps. If these panels are connected in series, the current will not increase, so the string does not need to be fused. When you connect the panels in parallel, this is not the case, because when connected in parallel, the system currents add up. For example, if you have 4 panels, each of which can provide up to 15A of current, a short circuit in one panel will cause all 60 A of current to flow to the short-circuited panel. This will cause the wires leading to the panel to far exceed 30 amps, which may cause the pair of wires to catch fire. If it is a parallel panel, each panel needs a 30 amp fuse. If your panel is less than 50 watts and you only use 12 gauge wire, you need a 20 amp fuse.

    The last fuse that we suggest in the system would be if you are using an inverter. Wiring and fusing from the battery to the AC/DC inverter is critical because this is where the maximum current can flow. This fuse would be between your inverter and the battery bank. The fuse size is normally stated in the manual and most inverters is likely to have built-in fuses/circuit breakers on the input and output (AC) sides of the device. The rule of thumb that we use here would be “Continuous Watts / Battery Voltage times 1.25", for example a typical 1000W 12V inverter draws up around 83 continuous amps and we would add the 25% safety factor which comes out to 105 Amps, so we would suggest a 150A fuse.

    This is a brief introduction and summary for fusing your system. There are other aspects such as cable size/length and fuse/breaker types that are important. You can send an email for more information about solar products! If your take your time and use the right combination of rated parts, then the system should work well and you’ll sleep better knowing you engineered it to be safe and reliable.

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    We now have gained trust and praises from the domestic and intercontinental consumers for Slocable mc4 inline fuse connector for solar energy system, We are hunting ahead to building positive and beneficial links with the businesses around the globe. We warmly welcome you to definitely call us to begin discussions on how we can easily bring this into being.

    We now have gained trusts and praises from the domestic and intercontinental consumer for China mc4 fuse, mc4 diode, The design, processing, purchasing, inspection, storage, assembling process are all in scientific and effective documentary process, increasing usage level and reliability of our brand deeply, which makes us become a superior supplier of the four major product categories shell castings domestically and obtained the customer’s trust well.

    Frequently Asked Questions (FAQ)
    Why is it important to use MC4 fuses or solar circuit breakers?
    Fuses and circuit breakers are critical for maintaining safety in a solar PV system. They protect the wiring from becoming excessively hot and prevent connected devices from catching fire or getting damaged in the event of a short circuit.
    Where are the three recommended locations to install fuses in a solar system?
    It is highly recommended to install fuses or breakers in three locations: 1) Between the charge controller and the battery bank. 2) Between the solar panels and the charge controller. 3) Between the battery bank and the inverter.
    How do I determine the correct fuse size between the charge controller and the battery bank?
    To determine the appropriate fuse size for this specific location, you simply need to match the amperage rating on your charge controller.
    Do I need to fuse solar panels if they are connected in series?
    Generally, no. When solar panels are connected in series, the voltage adds up but the current (amperage) stays the same. Therefore, the string does not usually need to be fused because the current does not increase.
    How is the fuse size calculated for solar panels connected in parallel?
    When panels are connected in parallel, their amperages add up. To calculate the fuse size, add the amperage of each panel together, and then multiply the total by an industry-standard safety factor of 25% (Total Amps × 1.25).
    What is the rule of thumb for sizing a fuse between the battery and the inverter?
    The rule of thumb is to take the Continuous Watts of the inverter, divide it by the Battery Voltage, and then multiply the result by a safety factor of 1.25. For example, a 1000W 12V inverter (approx. 83 amps) multiplied by 1.25 equals around 105 amps, so a 150A fuse would be recommended.