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TOP257YN
+NomenclatureIC OFFLINE SW FLYBACK TO220-7C
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FabricantBaulint
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Pièce fabricant #TOP257YN
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Package TO-220-7
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En stock6618
365 Garantie qualité 24h/24
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Spécifications
| Attribut | Valeur |
| Package | Tube |
| Series | TOPSwitch®-HX |
| ProductStatus | Active |
| OutputIsolation | Isolated |
| InternalSwitch(s) | Yes |
| Voltage-Breakdown | 700V |
| Topology | Flyback |
| DutyCycle | 78% |
| Frequency-Switching | 66kHz, 132kHz |
| Power(Watts) | 157 W |
| FaultProtection | Current Limiting, Over Temperature, Over Voltage |
| OperatingTemperature | -40°C ~ 150°C (TJ) |
| Package/Case | TO-220-7 Formed Leads, 6 Leads |
| SupplierDevicePackage | TO-220-7C |
Présentation
Description
Key features of the TOP257YN include a wide input voltage range, robust overload protection, and high efficiency over a broad load range. It also provides excellent line and load regulation, making it suitable for applications such as chargers, adapters, and consumer electronics. The IC supports both continuous and discontinuous conduction modes, adapting to various load conditions while maintaining efficiency.
The TOP257YN simplifies the design of power supplies by reducing the number of external components required, thereby lowering overall system cost and complexity. Furthermore, it includes advanced safety features like over-temperature, over-current, and over-voltage protection, ensuring reliable operation under various conditions. Overall, the TOP257YN offers a streamlined solution for designing efficient and compact power supplies.
Equivalent
Features
1. Integrated Design: Combines high-voltage power MOSFET, PWM controller, fault protection, and other control circuitry into a single IC.
2. Efficiency: Offers up to 78% efficiency with lossless current sensing and frequency jittering to reduce EMI.
3. Flexibility: Supports both continuous and discontinuous conduction modes, making it suitable for a wide range of applications.
4. Protection Features: Includes over-temperature, over-current, and over-voltage protection to enhance reliability.
5. Soft-Start: Reduces component stress during power-up.
6. Power Factor Correction (PFC): Can work in conjunction with external PFC circuits to improve the power factor.
7. Wide Range of Input Voltage: Can handle a broad input voltage range, enhancing its utility across different regions.
8. Reduced Component Count: Minimizes the number of external components required, simplifying design and reducing costs.
These features make the TOP257YN an efficient and versatile choice for designing power supplies in various electronic devices.
Pinout
1. D (Drain): Acts as the high-voltage power switch output. This pin is connected to the transformer’s primary winding.
2. S (Source): This is the control circuit common and reference point. It is also used for heat sinking in the TO-220 package.
3. C (Control): This pin is connected to an external capacitor for frequency jittering and current limit programming. It also serves as a soft-start and auto-restart controller.
4. L (Line sense): Used for line under-voltage lockout and overvoltage protection. It can also detect the line voltage level for various functions.
5. EN/UV (Enable/Undervoltage): This pin is used to enable or disable the IC. It can be employed for remote on/off control and to detect under-voltage conditions.
These pins collectively facilitate efficient and reliable power conversion in switch-mode power supply applications.
Manufacturer
Application
1. AC-DC Power Supplies: Used in adapters and chargers for consumer electronics like laptops and phones.
2. Industrial Power Systems: Employed in devices that require efficient power conversion and management.
3. LED Drivers: Utilized in lighting systems for controlling LED performance and energy efficiency.
4. Home Appliances: Integrated into circuits for efficient energy management in appliances such as microwaves and ovens.
5. Telecommunication Equipment: Supports power supply needs for networking devices and communication systems.
Its compact size and high efficiency make it suitable for applications where energy savings and space constraints are critical.