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ZXSC410E6TA Datasheet(PDF) 5 Page - Zetex Semiconductors |
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ZXSC410E6TA Datasheet(HTML) 5 Page - Zetex Semiconductors |
5 / 12 page ![]() APPLICATIONS INFORMATION Switching transistor selection The choice of switching transistor has a major impact on the converter efficiency. For optimum performance, a bipolar transistor with low VCE(SAT) and high gain is required. The VCEO of the switching transistor is also an important parameter as this sees the full output voltage when the transistor is switched off. Zetex SuperSOT™ transistors are an ideal choice for this application. Schottky diode selection As with the switching transistor, the Schottky rectifier diode has a major impact on the converter efficiency. A Schottky diode with a low forward voltage and fast recovery time should be used for this application. The diode should be selected so that the maximum forward current rating is greater or equal to the maximum peak current in the inductor, and the maximum reverse voltage is greater or equal to the output voltage. The Zetex ZHCS Series meet these needs. Combination devices To minimise the external component count Zetex recommends the ZX3CDBS1M832 combination of NPN transistor and Schottky diode in a 3mm x 2mm MLP package. This device is recommended for use in space critical applications. The IC is also capable of driving MOSFETs. Zetex recommends the ZXMNS3BM832 combination of low threshold voltage N-Channel MOSFET and Schottky diode in a 3mm x 2mm MLP package. This device is recommended for use in space critical applications. Inductor Selection The inductor value must be chosen to satisfy performance, cost and size requirements of the overall solution. Inductor selection has a significant impact on the converter performance. For applications where efficiency is critical, an inductor with a series resistance of 500m or less should be used. A list of recommended inductors is listed in the table below: Peak current definition In general, the IPK value must be chosen to ensure that the switching transistor, Q1, is in full saturation with maximum output power conditions, assuming worse-case input voltage and transistor gain under all operating temperature extremes. Once IPK is decided the value of RSENSE can be determined by: R SENSE V SENSE I PK = ZXSC410 ZXSC420 SEMICO NDUC TORS ISSUE 2 - May 2003 5 Pin No. Name Description 1VCC Supply voltage, 1.8V to 8V. 2 GND Ground 3 STDN/EOR Shutdown ZXSC410 / End of regulation ZXSC420 4 SENSE Inductor current sense input. Internal threshold voltage set to 28mV. Connect external sense resistor. 5VFB Reference voltage. Internal threshold set to 300mV. Connect external resistor network to set output voltage. 6 DRIVE Drive output for external switching transistor. Connect to base or gate of external switching transistor. Part No. Manufacture L IPK (A) RDC ( ) CMD4D11-100MC Sumida 10µH 0.5 0.457 CMD4D11-220MC Sumida 22µH 0.4 0.676 LPO2506OB-103 Coilcraft 10µH 1.0 0.24 ST2006103 Standex Electronics Inc 10µH 0.6 0.1 PIN DESCRIPTIONS |
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