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NCP1605DR2G
IC PFC CONTROLLER CCM/DCM 16SOIC
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規格
| Part Status | Obsolete |
| Mode | Critical Conduction (CRM), Discontinuous Conduction (DCM) |
| Frequency - Switching | 250kHz |
| Current - Startup | 12 mA |
| Voltage - Supply | 10V ~ 20V |
| Operating Temperature | -55°C ~ 125°C (TJ) |
| Mounting Type | Surface Mount |
| Package / Case | 16-SOIC (0.154", 3.90mm Width) |
| Supplier Device Package | 16-SOIC |
| Base Product Number | NCP1605 |
概述
Description
The NCP1605DR2G is a power factor correction (PFC) controller designed by ON Semiconductor. It is specifically tailored for use in applications requiring efficient power conversion through the boost pre-regulator circuit. The device is suitable for applications that need to comply with international harmonic regulations and standards, such as IEC61000-3-2.
Key features of the NCP1605DR2G include a critical conduction mode (CRM) operation which optimizes the efficiency and size of the power components. It also includes overvoltage protection, undervoltage lockout, and overcurrent protection to enhance safety and reliability. The NCP1605DR2G is designed to operate with minimal external components, thus reducing the overall system cost and complexity.
The device is typically used in power supplies for lighting, industrial systems, and other electronic devices where efficient power factor correction is necessary. Its compact design and high-performance capabilities make it a popular choice for engineers designing compact and efficient power systems.
Key features of the NCP1605DR2G include a critical conduction mode (CRM) operation which optimizes the efficiency and size of the power components. It also includes overvoltage protection, undervoltage lockout, and overcurrent protection to enhance safety and reliability. The NCP1605DR2G is designed to operate with minimal external components, thus reducing the overall system cost and complexity.
The device is typically used in power supplies for lighting, industrial systems, and other electronic devices where efficient power factor correction is necessary. Its compact design and high-performance capabilities make it a popular choice for engineers designing compact and efficient power systems.
Features
The NCP1605DR2G is a power factor correction (PFC) controller designed for off-line power supplies. Key features include:
1. Critical Conduction Mode (CrM): Enhances efficiency by minimizing switching losses.
2. High Power Factor: Ensures compliance with stringent regulations for power factor specifications.
3. Input Voltage Range: Supports a wide operating voltage range, suitable for global applications.
4. Overvoltage Protection (OVP): Protects the circuit from excessive voltage conditions.
5. Undervoltage Lockout (UVLO): Prevents operation under insufficient voltage conditions, enhancing reliability.
6. Open Feedback Loop Protection: Safeguards against failures in the feedback path.
7. Soft-Start Functionality: Reduces inrush current during startup, extending component life.
8. Brown-Out Detection: Monitors and responds to low voltage conditions efficiently.
9. Low Standby Power: Designed to consume minimal power when in standby, meeting energy efficiency standards.
10. Compact Package: Available in a SOIC-8 package, ideal for space-constrained applications.
These features make the NCP1605DR2G suitable for use in a variety of applications, including adapters, televisions, and industrial power systems, where efficient power conversion and regulatory compliance are critical.
1. Critical Conduction Mode (CrM): Enhances efficiency by minimizing switching losses.
2. High Power Factor: Ensures compliance with stringent regulations for power factor specifications.
3. Input Voltage Range: Supports a wide operating voltage range, suitable for global applications.
4. Overvoltage Protection (OVP): Protects the circuit from excessive voltage conditions.
5. Undervoltage Lockout (UVLO): Prevents operation under insufficient voltage conditions, enhancing reliability.
6. Open Feedback Loop Protection: Safeguards against failures in the feedback path.
7. Soft-Start Functionality: Reduces inrush current during startup, extending component life.
8. Brown-Out Detection: Monitors and responds to low voltage conditions efficiently.
9. Low Standby Power: Designed to consume minimal power when in standby, meeting energy efficiency standards.
10. Compact Package: Available in a SOIC-8 package, ideal for space-constrained applications.
These features make the NCP1605DR2G suitable for use in a variety of applications, including adapters, televisions, and industrial power systems, where efficient power conversion and regulatory compliance are critical.
Package
The NCP1605DR2G is typically available in an 8-pin SOIC (Small Outline Integrated Circuit) package type.
Pinout
The NCP1605DR2G is a power factor correction (PFC) controller IC designed for applications that require high efficiency and low total harmonic distortion. It typically comes in an 8-pin SOIC (Small Outline Integrated Circuit) package. Here is a brief overview of the pin functions:
1. Pin 1 (FB): Feedback input, used for the regulation of the output voltage.
2. Pin 2 (COMP): Compensation, used to stabilize the voltage loop.
3. Pin 3 (ZCD/CS): Zero Current Detection/Current Sense, used for detecting zero crossing and sensing current.
4. Pin 4 (GND): Ground connection for the IC.
5. Pin 5 (DRV): Drive output, used to drive the gate of the external power MOSFET.
6. Pin 6 (VCC): Supply voltage input for powering the IC.
7. Pin 7 (PFM): Frequency modulation input, used to control the frequency of operation.
8. Pin 8 (OVP/EN): Over-Voltage Protection/Enable, used for over-voltage protection and enabling the IC.
This configuration allows the NCP1605DR2G to efficiently control power factor in AC-DC conversion applications.
1. Pin 1 (FB): Feedback input, used for the regulation of the output voltage.
2. Pin 2 (COMP): Compensation, used to stabilize the voltage loop.
3. Pin 3 (ZCD/CS): Zero Current Detection/Current Sense, used for detecting zero crossing and sensing current.
4. Pin 4 (GND): Ground connection for the IC.
5. Pin 5 (DRV): Drive output, used to drive the gate of the external power MOSFET.
6. Pin 6 (VCC): Supply voltage input for powering the IC.
7. Pin 7 (PFM): Frequency modulation input, used to control the frequency of operation.
8. Pin 8 (OVP/EN): Over-Voltage Protection/Enable, used for over-voltage protection and enabling the IC.
This configuration allows the NCP1605DR2G to efficiently control power factor in AC-DC conversion applications.
Manufacturer
The NCP1605DR2G is manufactured by ON Semiconductor. ON Semiconductor, now known as onsemi, is a company that specializes in designing and manufacturing semiconductors and other electronic components. It serves a wide range of markets including automotive, industrial, communications, computing, and consumer electronics. The company focuses on providing energy-efficient innovations, with products such as power management, signal processing, and logic devices.
Application
The NCP1605DR2G is a power factor correction (PFC) controller used in electronic devices to improve power efficiency and reduce harmonic distortion in AC-DC power conversion. Its application areas include power supplies for computers, televisions, and LED lighting, as well as industrial and consumer electronics where efficient power use and compliance with energy standards are required.
Equivalent
The NCP1605DR2G chip is a power factor correction (PFC) controller. Equivalent products include:
1. L6562D from STMicroelectronics – A similar transition-mode PFC controller.
2. UCC28019 from Texas Instruments – An alternative continuous conduction mode PFC controller.
3. FAN6961 from ON Semiconductor – Another comparable critical conduction mode PFC controller.
Specifications and application requirements should be reviewed to ensure compatibility.
1. L6562D from STMicroelectronics – A similar transition-mode PFC controller.
2. UCC28019 from Texas Instruments – An alternative continuous conduction mode PFC controller.
3. FAN6961 from ON Semiconductor – Another comparable critical conduction mode PFC controller.
Specifications and application requirements should be reviewed to ensure compatibility.
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