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US3075LG-S08-R 数据表(PDF) 6 Page - Unisonic Technologies |
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US3075LG-S08-R 数据表(HTML) 6 Page - Unisonic Technologies |
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6 / 9 page ![]() US3075-US3375 CMOS IC UNISONICTECHNOLOGIESCO.,LTD 6 of 9 www.unisonic.com.tw QW-R502-423.G FUNCTIONAL DESCRIPTION Input and Output IN pin (Input) is the power supply connection to the logic circuitry and the drain of the output MOSFET. OUT pin (Output) is the source of the output MOSFET. In a typical application, current flows through the switch from input to output toward the load. Both OUT pins must be connected together to the load. Thermal Shutdown Thermal shutdown is designed to prevent this device from being damaged due to excessive power dissipation. It is used to turn off the output MOSFET when the if the temperature is higher than135°C, 20°C of hysteresis prevents the switch turn on until the die temperature drops to 115°C. Thermal shutdown circuit functions only when the switch is enabled. Under Voltage Lockout UVLO (Under voltage Lockout) turns off the MOSFET switch once the input voltage falls below 2.3V (TYP.) and if the input voltage exceeds 2.5V (TYP.), the switch will be turned on. UVLO detection functions only when the switch is enabled. Current Limiting The current limit value is fixed internally, typically 2A, 1.5A, 1A, 0.75A for US3375/ US3275/ US3175/ US3075 respectively. There is foldback of current limit When VOUT is less than 1.5V, there is foldback of current limit. OC Function The OC open-drain output is asserted (active low) when an over current or over temperature shutdown condition is encountered after a 9-ms deglitch timeout. The output keeps asserted until the over current or over temperature condition is removed. APPLICATION INFORMATION Supply Filtering To avoid supply transients, 1μF bypass capacitor is strongly recommended to located between IN to GND. Without a bypass capacitor, an output short may cause sufficient ringing on the input (from supply lead inductance) to damage internal control circuitry. Input transients value must be not higher than the absolute maximum supply voltage (VIN max = 6V) even for a short duration. EN, the Enable Input The enable pin, EN, must be driven logic high or logic low for a clearly defined input. The input is not allowed to float, or unpredictable operation may be occurs. EN should not be allowed to go negative with respect to GND. |
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