LNK304DN pinout & schematic | SMD
- 輸出隔離: Non-Isolated
- 拓撲: Buck, Buck-Boost, Flyback
- 故障保護: Current Limiting, Open Loop, Over Temperature, Short Circuit
- 包裹: SO-8C

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LNK304DN-TL datasheet
LNK304DN Pinout Equivalent
LNK304DN is a highly integrated non-isolated switching Power supply IC from Power Integrations, belonging to the LinkSwitch-TN series, which integrates a switching control circuit with a voltage resistance of 700V MOSFET. Mainly suitable for low-power AC-DC conversions (e.g. 5V/1A output). Its core features include:
Package: There are two kinds of package respectively SOIC-8 or SOP-7;
Output capacity: Maximum output current 120mA (MDCM mode) or 170mA (CCM mode);
Operating frequency: 66kHz, frequency jitter can be achieved to reduce EMI interference;
Typical applications: DCDC power supply, LED driver, small home appliance control board.
Pins are defined as follows:
別針 | 姓名 | 描述 |
---|---|---|
1 | FB | The feedback pin is responsible for stabilizing the output voltage |
2 | BP | The bypass capacitor provides internal power supply |
3 | NC | Connectionless |
4 | 流走 | The drain of the internal MOSFET is connected to the primary winding of the high-frequency transformer |
5, 6, 7, 8 | 來源 | Source, ground terminal of the internal MOSFET |
Replacement model parameter comparison:
圖片 | 姓名 | Operating Frequency | 力量 | 包裹 | Application Scenario |
---|---|---|---|---|---|
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LNK304DN | 66 kHz | 5.5W | SOIC-8 | Non-isolated power supply |
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LNK306DN | 66 kHz | 10W | SOP-7 | The situation of high current demand |
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TNY288PG | 132 kHz | 10W | DIP-8C | Industrial power supply design |
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最高265公斤 | 132 kHz | 30W | eSOP-12 | High power supply |
Alternate summary:
Direct replacement: The same series of upgrade products LNK30xDN model (such as LNK304DN) is preferred, without modifying any circuit design.
Function expansion replacement: TNY288PG for the circuit protection function is stronger than lnk304dn, can be used in the need for adequate protection of the circuit, but need to adjust the feedback circuit; The TOP265KG is suitable for high power scenarios, but the circuit needs to be redesigned.