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ZXCL200 Datasheet(PDF) 2 Page - Zetex Semiconductors |
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ZXCL200 Datasheet(HTML) 2 Page - Zetex Semiconductors |
2 / 9 page ABSOLUTE MAXIMUM RATINGS Terminal Voltage with respect to GND VIN -0.3V to 7.0V EN -0.3V to 10V VO -0.3V to 5.5V Package Power Dissipation (TA=25°C) SC70 300mW (Note 1) SOT23-5 450mW (Note 1) Output short circuit duration Infinite Continuous Power Dissipation Internally limited Operating Temperature Range -40 C to + 85 C Storage Temperature Range -55 C to + 125 C Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum conditions for extended periods may affect device reliability. ZXCL200 ISSUE 1 - SEPTEMBER 2001 2 SYMBOL PARAMETER CONDITIONS LIMITS UNITS MIN TYP MAX V IN Input Voltage T A=-40 C (note2) 5.5 V V O Output Voltage (Note 3) I O =1mA I O = 100mA V O +0.5V < VIN <VIN max 1.96 1.94 22.04 2.06 V V ∆V O/∆T Output Voltage Temperature Coefficient -15 ppm/°C I O(MAX) Output Current 100 mA I OLIM Over Current Limit 105 750 mA I Q Ground pin current No Load I O = 100mA 25 40 50 100 A A V LNR Line Regulation V IN=(VO+0.5V) to 5.5V, IO=1mA 0.02 0.1 %/V V LDR Load Regulation I O=1mA to 100mA 0.01 0.04 %/mA E N Output Noise Voltage f=10Hz to 100kHz, C O=10µF, 50 µV rms V ENH Enable pin voltage for normal operation T A = -40°C 2 2.2 10 V V ENL Enable pin voltage for output shutdown 00.8 V ELECTRICAL CHARACTERISTICS VIN = VO + 0.5V, typical values at TA=25°C (Unless otherwise stated) Device testing is performed at T A=25 C. Device thermal performance is guaranteed by design. Note 1: Maximum power dissipation is calculated assuming the device is mounted on a PCB measuring 2 inches square Note 2: Output Voltage will start to rise when V IN exceeds a value or approximately 1.3V. For normal operation, V IN (min) > VOUT (nom) + 0.5V. Note 3: Nominal value of V O is defined at VIN=VO+0.5V. |
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