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TNY266PN
+StücklisteIC OFFLINE SWITCH FLYBACK 8DIP
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HerstellerEnergieintegrationen
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Herstellerteil #TNY266PN
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Paket DIP-8
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Auf Lager5690
365 Tage Qualitätsgarantie
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Spezifikationen
| Attribut | Wert |
| Package / Case | Tube |
| Series | TinySwitch®-II |
| Part Status | Not For New Designs |
| Output Isolation | Isolated |
| Internal Switch(s) | Yes |
| Voltage - Breakdown | 700V |
| Topology | Flyback |
| Duty Cycle | 65% |
| Frequency - Switching | 132kHz |
| Power (Watts) | 15 W |
| Fault Protection | Current Limiting, Open Loop, Over Temperature, Short Circuit |
| Control Features | EN |
| Operating Temperature | -40°C ~ 150°C (TJ) |
| Supplier Device Package | 8-PDIP-B |
Übersicht
Description
Key features of the TNY266PN include its ability to operate without an auxiliary bias winding, which simplifies transformer design and reduces cost. The device is known for its high efficiency, low standby power consumption, and robust protection features such as auto-restart for short circuit and open loop fault conditions. This chip supports a wide input voltage range, making it suitable for global power supply applications.
The TNY266PN is commonly used in adapters, chargers, and consumer electronics where compact size and efficiency are critical. It is available in a DIP-8 package, making it easy to incorporate into various electronic designs.
Equivalent
1. TNY267PN
2. LNK304PN
3. FSFR2100 (depending on specific requirements)
4. VIPer12A
These alternatives may have different characteristics, so reviewing their specifications is essential to ensure compatibility with the intended application.
Features
1. Low Power Consumption: It offers high efficiency with low standby power consumption, making it suitable for energy-efficient applications.
2. Integrated Features: Incorporates a 700 V power MOSFET, oscillator, high-voltage switched current source, current limit, and thermal shutdown circuitry.
3. EcoSmart Technology: Minimizes energy wastage through reduced power usage in no-load and standby conditions.
4. Auto-Restart Protection: Provides safe operation by automatically shutting down in the event of a fault and restarting when normal conditions resume.
5. Simple Design: Reduces component count and simplifies the design with minimal external components required.
6. Wide Input Voltage Range: Supports a wide input voltage range, useful for global applications.
7. Enhanced Safety and Reliability: Built-in protection features like over-current, over-temperature, and output short-circuit protection enhance device safety and longevity.
These features make the TNY266PN suitable for use in chargers, adapters, and other low-power applications.
Pinout
1. DRAIN (Pin 1, 2, 3): These pins are internally connected and serve as the high-voltage power MOSFET drain connection. They are linked to the primary winding of the transformer.
2. BYPASS (Pin 4): This pin is connected to an external bypass capacitor, which provides the internal supply current and sets the current limit.
3. FEEDBACK (Pin 5): Connects to an optocoupler to provide feedback from the output, enabling regulation.
4. SOURCE (Pin 6, 7, 8): These pins are internally connected and serve as the ground reference point for the IC. They are connected to the low side of the primary winding.
The TNY266PN integrates a 700V power MOSFET, oscillator, high-voltage switch, current limit, and thermal shutdown circuitry. This design minimizes external components, making it suitable for flyback power supplies in low-power applications.
Manufacturer
Application
1. Low-power AC-DC adapters and chargers for mobile devices and small electronics.
2. Standby power supplies for TVs, appliances, and consumer electronics, due to its low no-load power consumption.
3. LED drivers for lighting applications, benefiting from its small form factor.
4. Auxiliary power supplies in appliances and industrial controls, offering reliable performance.
5. Battery chargers for small electronics, ensuring energy efficiency and compact design.
These applications leverage the TNY266PN for cost-effective and energy-efficient power conversion.