Specifications
| Attribute | Value |
| Supplier | Solid State Inc. |
| Package | Bulk |
| Series | KBPC15 |
| ProductStatus | Active |
| DiodeType | Single Phase |
| Technology | Standard |
| Voltage-PeakReverse(Max) | 400 V |
| Current-AverageRectified(Io) | 15 A |
| Voltage-Forward(Vf)(Max)@If | 1.2 V @ 7.5 A |
| Current-ReverseLeakage@Vr | 10 µA @ 400 V |
| OperatingTemperature | -65°C ~ 150°C (TJ) |
| MountingType | Chassis Mount |
| Package/Case | 4-Square, KBPC |
Overview
Description
KBPC1504 is a type of bridge rectifier commonly used in converting alternating current (AC) to direct current (DC). It is part of the KBPC series, which is known for its robust design and reliability in electronic circuits. The "1504" in its name typically denotes its specifications: it can handle a maximum current of 15 amperes and a peak reverse voltage of 400 volts.
This rectifier is housed in a square-shaped package with four terminals, each representing the AC input and DC output connections. KBPC1504 is widely utilized in power supplies, inverters, and various household and industrial applications due to its ability to efficiently manage high power levels.
Its design ensures low forward voltage drop and high surge current capability, making it suitable for use in circuits that require stable DC output from an AC source. Additionally, it features a heat-dissipating metal case, which enhances its thermal performance and longevity. Overall, the KBPC1504 is valued for its durability and effectiveness in power rectification tasks.
This rectifier is housed in a square-shaped package with four terminals, each representing the AC input and DC output connections. KBPC1504 is widely utilized in power supplies, inverters, and various household and industrial applications due to its ability to efficiently manage high power levels.
Its design ensures low forward voltage drop and high surge current capability, making it suitable for use in circuits that require stable DC output from an AC source. Additionally, it features a heat-dissipating metal case, which enhances its thermal performance and longevity. Overall, the KBPC1504 is valued for its durability and effectiveness in power rectification tasks.
Equivalent
The KBPC1504 is a bridge rectifier typically rated for 15A and 400V. Equivalent products include:
1. GBPC1504
2. WOG15
3. GBU405
4. MB6S
These components can generally be used interchangeably in circuits requiring similar specifications, but it's essential to verify the electrical characteristics and package types to ensure compatibility with your specific application. Always consult the datasheets for precise details.
1. GBPC1504
2. WOG15
3. GBU405
4. MB6S
These components can generally be used interchangeably in circuits requiring similar specifications, but it's essential to verify the electrical characteristics and package types to ensure compatibility with your specific application. Always consult the datasheets for precise details.
Features
The KBPC1504 is a silicon bridge rectifier used for converting alternating current (AC) to direct current (DC) in various electronic applications. Here are its key features:
1. Maximum Repetitive Reverse Voltage (V_RRM): 400V, suitable for moderate voltage applications.
2. Forward Continuous Current (I_F): 15A, indicating the maximum current the rectifier can continuously conduct.
3. Surge Current Capability: High surge current capability of 200A, which helps in handling short-duration overcurrent conditions.
4. Package Type: Encapsulated in a compact KBPC package for efficient heat dissipation.
5. Operating Temperature Range: Typically from -55°C to +150°C, allowing it to function in a variety of environmental conditions.
6. Mounting Configuration: Typically designed for easy mounting on PCBs or heatsinks for better thermal management.
7. Low Forward Voltage Drop: Results in efficient operation with reduced power loss.
8. Polarity Markings: Clearly marked for easy installation and reduced risk of incorrect connections.
9. RoHS Compliance: Environmentally friendly design adhering to global safety standards.
These features make the KBPC1504 suitable for power supply applications, motor controls, and other electronic circuits requiring reliable AC-DC conversion.
1. Maximum Repetitive Reverse Voltage (V_RRM): 400V, suitable for moderate voltage applications.
2. Forward Continuous Current (I_F): 15A, indicating the maximum current the rectifier can continuously conduct.
3. Surge Current Capability: High surge current capability of 200A, which helps in handling short-duration overcurrent conditions.
4. Package Type: Encapsulated in a compact KBPC package for efficient heat dissipation.
5. Operating Temperature Range: Typically from -55°C to +150°C, allowing it to function in a variety of environmental conditions.
6. Mounting Configuration: Typically designed for easy mounting on PCBs or heatsinks for better thermal management.
7. Low Forward Voltage Drop: Results in efficient operation with reduced power loss.
8. Polarity Markings: Clearly marked for easy installation and reduced risk of incorrect connections.
9. RoHS Compliance: Environmentally friendly design adhering to global safety standards.
These features make the KBPC1504 suitable for power supply applications, motor controls, and other electronic circuits requiring reliable AC-DC conversion.
Pinout
The KBPC1504 is a bridge rectifier used to convert AC (alternating current) to DC (direct current). It has a pin count of 4. The functions of these pins are as follows:
1. AC Input Pins (2 pins): These are typically labeled with a sine wave symbol or "~". They are the input terminals where the AC voltage is applied.
2. Positive Output Pin (+): This pin provides the positive DC output after rectification.
3. Negative Output Pin (-): This pin provides the negative DC output.
The KBPC1504 is designed to handle a maximum repetitive peak reverse voltage of 400V and a maximum average forward rectified current of 15A. Such bridge rectifiers are commonly used in power supplies and other electronic devices that require rectification of AC into DC.
1. AC Input Pins (2 pins): These are typically labeled with a sine wave symbol or "~". They are the input terminals where the AC voltage is applied.
2. Positive Output Pin (+): This pin provides the positive DC output after rectification.
3. Negative Output Pin (-): This pin provides the negative DC output.
The KBPC1504 is designed to handle a maximum repetitive peak reverse voltage of 400V and a maximum average forward rectified current of 15A. Such bridge rectifiers are commonly used in power supplies and other electronic devices that require rectification of AC into DC.
Manufacturer
The KBPC1504 is a type of bridge rectifier, and it is manufactured by several companies, including Vishay Intertechnology and ON Semiconductor, among others. These companies specialize in semiconductor manufacturing and electronic components.
Vishay Intertechnology is a global manufacturer of discrete semiconductors and passive electronic components. It produces a wide range of products, including diodes, rectifiers, transistors, optoelectronic products, and capacitors. Vishay is known for its focus on innovation and technological advancement in the electronics industry.
ON Semiconductor, now known as onsemi, is another major player in the semiconductor industry. It provides a comprehensive portfolio of energy-efficient power and signal management, logic, standard, and custom devices. ON Semiconductor serves a variety of markets, including automotive, industrial, cloud power, and the Internet of Things (IoT).
Both companies are well-regarded in the electronics industry for their reliable and high-performance products, and they supply components to various sectors, including consumer electronics, automotive, industrial, and telecommunications.
Vishay Intertechnology is a global manufacturer of discrete semiconductors and passive electronic components. It produces a wide range of products, including diodes, rectifiers, transistors, optoelectronic products, and capacitors. Vishay is known for its focus on innovation and technological advancement in the electronics industry.
ON Semiconductor, now known as onsemi, is another major player in the semiconductor industry. It provides a comprehensive portfolio of energy-efficient power and signal management, logic, standard, and custom devices. ON Semiconductor serves a variety of markets, including automotive, industrial, cloud power, and the Internet of Things (IoT).
Both companies are well-regarded in the electronics industry for their reliable and high-performance products, and they supply components to various sectors, including consumer electronics, automotive, industrial, and telecommunications.
Application
The KBPC1504 is a bridge rectifier commonly used in power conversion applications. Its primary function is to convert alternating current (AC) input into direct current (DC) output. Key application areas include:
1. Power Supply Units: Used in AC to DC conversion for various electronic devices.
2. Battery Chargers: Helps in converting AC to DC for charging batteries.
3. Motor Drives: Utilized in DC power supply for motor control circuits.
4. HVAC Systems: Facilitates power rectification for heating, ventilation, and air conditioning systems.
5. Industrial Equipment: Employed in rectifying AC power in industrial electronics for reliable DC output.
Its robust design makes it suitable for high-current applications.
1. Power Supply Units: Used in AC to DC conversion for various electronic devices.
2. Battery Chargers: Helps in converting AC to DC for charging batteries.
3. Motor Drives: Utilized in DC power supply for motor control circuits.
4. HVAC Systems: Facilitates power rectification for heating, ventilation, and air conditioning systems.
5. Industrial Equipment: Employed in rectifying AC power in industrial electronics for reliable DC output.
Its robust design makes it suitable for high-current applications.
Package
The KBPC1504 is a bridge rectifier with a KBPC package type, which is typically a square or round shape with four leads for electrical connections. It is designed to convert AC to DC and is commonly used in power supply applications.