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NCP1234BD65R2G
+Lista de MateriaisIC OFFLINE SWITCH FLYBACK 7SOIC
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Fabricanteonsemi
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Peça do Fabricante #NCP1234BD65R2G
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Pacote SOIC-7
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Em Estoque1847
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Especificações
| Atributo | Valor |
| Package / Case | Tape & Reel (TR),Cut Tape (CT),Bulk |
| Part Status | Active |
| Output Isolation | Isolated |
| Internal Switch(s) | No |
| Topology | Flyback |
| Voltage - Start Up | 12 V |
| Voltage - Supply (Vcc/Vdd) | 9.5V ~ 28V |
| Duty Cycle | 80% |
| Frequency - Switching | 65kHz |
| Fault Protection | Current Limiting, Over Load, Over Temperature |
| Operating Temperature | -40°C ~ 150°C (TJ) |
| Supplier Device Package | 7-SOIC |
Visão Geral
Description
Key features of the NCP1234BD65R2G include:
1. Current-Mode Operation: Offers enhanced line regulation, fast transient response, and simplified loop compensation.
2. Fixed-Frequency Operation: Operates at a set frequency (usually around 65 kHz), ensuring predictable switching behavior and reduced electromagnetic interference (EMI).
3. Low Standby Power: Designed to meet energy-saving regulations with low standby power consumption.
4. Built-in Protections: Includes over-current, over-voltage, and thermal shutdown protections, ensuring safety and reliability.
5. Skip-Cycle Capability: Helps in improving light-load efficiency by skipping unnecessary switching cycles.
6. Wide Input Range: Suitable for various applications with a broad input voltage range.
The NCP1234BD65R2G is particularly used in applications like adapters, chargers, and offline power supplies, where efficiency and reliable performance are critical.
Equivalent
1. UC3842 series from Texas Instruments
2. FAN6754 from ON Semiconductor
3. TEA1755T from NXP Semiconductors
4. L6565 from STMicroelectronics
Ensure compatibility with your specific application by comparing specifications such as voltage, current ratings, and frequency.
Features
1. Frequency Control: Fixed operating frequency with internal oscillator.
2. Current Mode Control: Provides excellent line and load regulation.
3. Adjustable Overpower Protection: Safeguards against excessive power delivery.
4. Low Startup Current: Reduces energy consumption during startup.
5. Undervoltage Lockout (UVLO): Ensures proper operation by preventing the controller from switching until the input voltage is sufficient.
6. Slope Compensation: Helps in stabilizing the current loop when used in continuous conduction mode.
7. High-Voltage Start-Up Circuit: Integrated for efficient startup performance.
8. Slope Compensation: Added for stabilizing the current mode control loop.
9. Soft-Start: Limits inrush current during startup, enhancing reliability.
These features make the NCP1234BD65R2G suitable for efficient and reliable power supply designs in consumer and industrial applications.
Pinout
1. VCC (Pin 1): Supplies the IC with operating voltage.
2. FB (Feedback, Pin 2): Receives the feedback signal for output regulation.
3. CS (Current Sense, Pin 3): Monitors the current through the power switch.
4. GND (Ground, Pin 4): Ground reference for the IC.
5. DRV (Drive Output, Pin 5): Drives the gate of the external switching transistor.
6. CL (Current Limit, Pin 6): Sets the maximum peak current limit.
7. HV (High Voltage, Pin 7): High-voltage startup current source.
8. NC (No Connect, Pin 8): Not internally connected.
The NCP1234BD65R2G is designed to provide high efficiency and improved power factor in power supply applications.
Manufacturer
Application
1. Switch Mode Power Supplies (SMPS): Used in AC-DC and DC-DC converters to enhance energy efficiency.
2. Adapters and Chargers: Suitable for use in power adapters for consumer electronics and battery chargers.
3. LED Drivers: Utilized in driving LED lighting systems due to its efficient power handling capabilities.
4. Power Management Solutions: Employed in various electronics where power regulation and efficiency are critical.
5. Industrial Power Supplies: Applied in powering equipment that demands stable and reliable energy sources.
These applications benefit from the NCP1234's capabilities in improving energy efficiency and providing robust power management.