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Metal Case Diode Bridge KBPC5010
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Metal Case Diode Bridge KBPC5010

$26.25

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Metal Case Diode Bridge KBPC5010

The Metal Case Diode Bridge KBPC5010 is a specific type of bridge rectifier, a crucial electronic component used to convert alternating current (AC) into direct current (DC). It is widely employed in various power supply applications.

Here’s a breakdown of its key features and what each part of its name signifies:

What is a Bridge Rectifier?

A bridge rectifier is a circuit of four (or more) diodes in a specific configuration that allows for full-wave rectification. This means it efficiently converts both the positive and negative half-cycles of an AC input into a pulsating DC output. Compared to simpler half-wave rectifiers, bridge rectifiers are more efficient and provide a smoother DC output.

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KBPC5010 Explained

  • KBPC: This is typically a series designation for a family of single-phase bridge rectifiers with specific package styles.
  • 50: This number indicates the maximum average forward rectified current (Io) the device can handle, which in this case is 50 Amperes (A). This high current rating makes it suitable for demanding applications.
  • 10: This number typically refers to the voltage class, often indicating a maximum repetitive peak reverse voltage (VRRM) of 1000 Volts (V) (where ’10’ often means 10 x 100V). This high voltage rating allows it to handle substantial AC input voltages.

Metal Case Design

The “metal case” is a significant feature. The metal housing serves as a heat sink, which is essential for dissipating the heat generated by the diodes during operation, especially when handling high currents. This helps maintain optimal operating temperatures, ensuring the device’s reliability and longevity. The case often has a central mounting hole for easy attachment to an external heat sink for even better thermal management. The internal components are usually encapsulated with epoxy resin for electrical insulation and flame resistance.

Key Specifications and Features

  • Conversion: Converts single-phase AC to pulsating DC.
  • Current Rating: Up to 50 Amperes (A) average forward current.
  • Voltage Rating: Up to 1000 Volts (V) repetitive peak reverse voltage.
  • Surge Current Capability: Often capable of handling high non-repetitive surge currents (e.g., 400A or 450A for a short duration), which is crucial for handling initial power-on transients.
  • Low Forward Voltage Drop: Minimizes power loss and improves efficiency.
  • High Reliability: Designed for robust performance in various environments.
  • Mounting: Typically features through-hole mounting with a screw hole for chassis or heatsink mounting.
  • Terminals: Often uses 0.25″ (6.35 mm) Faston terminals for easy connection. Some variants (like KBPC5010W) might have wire leads.
  • Operating Temperature: Wide operating junction temperature range, often from -40°C to +150°C.

Common Applications

Due to its high current and voltage capabilities, the KBPC5010 is commonly found in:

  • Power supplies: As a core component to rectify AC mains voltage into DC for electronic devices.
  • Battery chargers: Converting AC power to DC for charging batteries.
  • Motor control circuits: Providing DC power for electric motors.
  • Industrial control systems: Used in various industrial applications requiring AC-to-DC conversion.
  • Input rectifiers for variable frequency drives (VFDs).
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Category: Accessories Tags: board, controller, Diode, hardware, main
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Description

Metal Case Diode Bridge KBPC5010

*50 Amp

*1000 Volt

A metal case single-phase diode bridge KBPC5010, is an electronic component used to convert alternating current (AC) to direct current (DC).

It consists of four diodes arranged in a bridge configuration within a metal casing, which acts as a heat sink.

This type of rectifier is commonly found in power supplies and other electronic circuits where DC power is needed from an AC source. 

Here’s a more detailed explanation abpout the metal case single-phase diode bridge KBPC5010:
  • Bridge Rectifier:

    A bridge rectifier uses four diodes connected in a specific configuration to convert AC to DC. It provides full-wave rectification, meaning it utilizes both the positive and negative half-cycles of the AC input. 

  • Single-Phase:

    This refers to the type of AC power source used. Single-phase power is the most common type of AC power used in residential and light commercial applications. 

  • Metal Case:

    The metal case serves as a heat sink, helping to dissipate heat generated by the diodes during operation. This is particularly important for high-power applications where the diodes may generate a significant amount of heat. 

  • Applications:

    Metal case single-phase diode bridge KBPC5010s are widely used in various electronic devices and systems, including:

    • Power supplies for computers and other electronic equipment. 
    • Battery chargers. 
    • Motor control circuits. 
    • Uninterruptible power supplies (UPS). 
Additional information
Weight 0.02 kg
Dimensions 6 × 6 × 3 cm
Model

KBPC5010

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The 1N5408 is a common general-purpose rectifier diode. It's designed to allow electric current to flow primarily in one direction, making it crucial for converting alternating current (AC) to direct current (DC). Think of it like a one-way valve for electricity. It belongs to the 1N540x series of power diodes, known for their ability to handle relatively high current and voltage. Here are its key characteristics and common uses: Key Features
  • High Reverse Voltage Rating: It can withstand a maximum repetitive reverse voltage (VRRM​) of 1000V. This means it can block high voltages when current tries to flow in the "wrong" direction.
  • High Forward Current Capacity: It's rated for an average rectified forward current (IF(AV)​) of 3 Amperes (A). This indicates it can handle a significant amount of current flowing through it in the correct direction.
  • High Surge Current Capability: The 1N5408 can handle non-repetitive peak forward surge currents (IFSM​) of up to 200A for short durations, protecting circuits from sudden power spikes.
  • Low Forward Voltage Drop: When conducting, it has a relatively low forward voltage drop (VF​) of approximately 1.0V to 1.2V at its rated current. A lower voltage drop means less power is lost as heat.
  • Standard Recovery: It's a "standard recovery" diode, meaning its switching speed is relatively slow compared to fast recovery diodes. This makes it suitable for power rectification at lower frequencies (like 50/60 Hz AC).
  • DO-201 Package: It typically comes in a DO-201 axial-leaded package, which is a through-hole component with leads extending from both ends, allowing for easy mounting on circuit boards.
  • Wide Operating Temperature Range: It can operate and be stored in a wide temperature range, typically from -65°C to +175°C.
  Applications The robust nature of the 1N5408 makes it a staple in various electronic designs:
  • Power Supplies and Rectifiers: This is its primary application. It efficiently converts AC input voltage into pulsating DC, which can then be smoothed by capacitors to provide a stable DC output for electronic devices. This includes full-wave and half-wave rectifier circuits.
  • Battery Chargers: Used to convert AC wall power into DC for charging batteries.
  • Voltage Regulation Circuits: Helps in maintaining a stable output voltage by rectifying current.
  • Protection Circuits: Its ability to block reverse current makes it useful for reverse polarity protection, preventing damage to sensitive components if the power supply is connected incorrectly.
  • Freewheeling Diode: Used in inductive circuits (like those with relays or motors) to provide a path for stored energy to dissipate when the current is switched off, preventing voltage spikes that could damage other components.
  • Voltage Doubler Circuits: Can be used in circuits designed to effectively double the input voltage.
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Gate operator control board fuse

A gate operator control board fuse is a critical safety component found on the circuit board of an automatic gate system. Its primary function is to protect the electrical components of the gate operator from damage caused by excessive current, such as a short circuit or an overload. Essentially, it acts as a sacrificial link in the electrical circuit. If the current flowing through the circuit exceeds a predetermined safe limit, the thin metal wire or strip inside the fuse melts and breaks the circuit. This prevents the surge of electricity from reaching and damaging more expensive and vital components on the control board or in the motor. Types and Characteristics Gate operator control board fuses come in various amperage ratings, typically ranging from 0.2 to 15 amps, depending on the specific gate operator model and its power requirements. Some common characteristics include:
  • Slow-Blow/Time-Delay Fuses: Many gate operators use "slow-blow" or "time-delay" fuses. These fuses are designed to tolerate brief, temporary current surges that often occur when motors start up without immediately blowing. They only interrupt the circuit if the overload persists for a longer duration.
  • Physical Form: They can be found in various physical forms, including glass tube fuses (common in older models), blade-style automotive fuses, or sometimes as surface-mount fuses directly on the printed circuit board.
Why Fuses Blow A blown fuse is usually an indication of an underlying problem, not the problem itself. Common reasons a gate operator fuse might blow include:
  • Short Circuit: A direct path for current to flow, bypassing the normal resistance, causing a sudden and large surge.
  • Overload: The gate motor or another component drawing more current than it's designed for, perhaps due to mechanical obstruction, a faulty motor, or issues with the gate's movement (e.g., binding hinges, gate dragging on the ground).
  • Component Failure: A faulty component on the control board or within the gate operator system itself can cause an abnormal current draw, leading the fuse to blow.
  • Power Surges: External power surges from the main electrical supply or lightning strikes can also cause fuses to blow.
Checking and Replacing a Fuse If your automatic gate stops working, checking the fuse on the control board is often one of the first troubleshooting steps.
  1. Disconnect Power: Always disconnect all power to the gate operator before attempting any inspection or repair. This includes both AC power and any battery backup systems.
  2. Locate the Fuse: The fuse is typically located directly on the main control board, often in a small holder or a clear cover. Refer to your gate operator's manual for its exact location.
  3. Inspect the Fuse:
    • For glass tube fuses, you can often visually inspect the wire inside; if it's broken or discolored, the fuse is blown.
    • For blade-style fuses, there might be a visible break in the metal strip, or you can use a multimeter set to continuity mode. A blown fuse will show no continuity.
  4. Replace the Fuse: If the fuse is blown, replace it with a new fuse of the exact same amperage (ampere) and voltage rating. Using a fuse with a higher rating can lead to damage to the control board or other components, as it won't blow when it should. Using a lower rating may cause the fuse to blow unnecessarily.
If the new fuse blows immediately or shortly after replacement, it indicates an ongoing electrical problem that needs to be diagnosed and repaired by a qualified technician. Replacing fuses repeatedly without addressing the root cause can lead to more serious damage to your gate operator system.
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The 1N4007 is a very common and versatile silicon rectifier diode. It's part of the 1N400x series of general-purpose diodes, with the "7" indicating its specific voltage rating. Key Characteristics
  • Rectifier Diode: Its primary function is to convert alternating current (AC) into pulsating direct current (DC) by allowing current to flow in only one direction.
  • High Reverse Voltage Rating: The 1N4007 can withstand a peak repetitive reverse voltage (VRRM​) of 1000V. This makes it suitable for high-voltage applications.
  • Average Forward Current: It can handle an average forward current (IF​) of 1 Ampere (1A).
  • Forward Voltage Drop: When conducting in the forward direction, it has a relatively low forward voltage drop (VF​) of approximately 0.7V to 1.1V. This voltage drop represents the power lost within the diode.
  • Surge Current Capability: It can handle a non-repetitive peak surge current (IFSM​) of up to 30A for short durations, which is useful for handling initial power-on surges.
  • Package Type: It typically comes in a DO-41 axial-lead package, which is a small, cylindrical plastic package with leads on both ends.
  • Operating Temperature Range: It operates reliably over a wide temperature range, typically from -55°C to +175°C.
How it Works Like all diodes, the 1N4007 is a PN-junction device. It consists of a P-type semiconductor and an N-type semiconductor joined together.
  • Forward Bias: When a positive voltage is applied to the anode (P-side) and a negative voltage to the cathode (N-side), the diode is forward-biased. If the applied voltage exceeds the forward voltage drop (around 0.7V for silicon diodes), the diode conducts, allowing current to flow from anode to cathode.
  • Reverse Bias: When a negative voltage is applied to the anode and a positive voltage to the cathode, the diode is reverse-biased. In this state, the diode acts like an open switch, blocking current flow. The 1N4007 is designed to withstand up to 1000V in this reverse-biased state before breaking down.
Common Applications The 1N4007's robust characteristics make it popular in a wide range of electronic circuits, including:
  • Rectifier Circuits:
    • Half-wave and Full-wave Rectifiers: Essential for converting AC power from the mains (like in household appliances) to DC power for electronic devices.
    • Bridge Rectifiers: Used to convert the entire AC waveform into pulsating DC, achieving more efficient rectification.
  • Power Supplies: Used for rectifying the AC input in power supply units to provide DC voltage to various components.
  • Voltage Protection:
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    • Freewheeling Diodes (Flyback Diodes): Protect sensitive components from voltage spikes generated by inductive loads (like relays, motors, and solenoids) when their magnetic field collapses.
    • Voltage Spike Suppression: Helps to suppress transient voltage spikes that can occur due to switching events or lightning, safeguarding delicate electronics.
  • Inverters and Converters: Used in various power conversion circuits.
  • Current Flow Regulation: Can be used in simple current limiting or flow control applications.
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We are proud to provide you with driveway gate operator services and accessories. We have more than 28 years of experience in selling, installing, maintaining, and repairing electronic accessories for homes with the latest technology.
• #100 - 11538 132a St, Surrey, BC, V3R 7S2
• Sales Dep.: (778)384-2800
• Service Dep.: (778)561-4530
• info@retcc.ca

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