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MCT0603AT

Vishay Siliconix

Professional Thin Film Chip Resistor


MCT0603AT
MCT0603AT

PDF File MCT0603AT PDF File


Description
MCS 0402 AT, MCT 0603 AT, MCU 0805 AT, MCA 1206 AT - Professional Vishay Beyschlag www.
DataSheet4U.
com Professional Thin Film Chip Resistor Superior Moisture Resistivity FEATURES • Operating temperature up to 175 °C for 1000 h • Superior moisture resistivity, |ΔR/R| < 0.
5 % (85 °C; 85 % RH; 1000 h) • Rated dissipation P85 up to 0.
4 W for size 1206 • AEC-Q200 qualified • Approved according to EN 140401-801 • Lead (Pb)-free solder contacts • Compliant to RoHS directive 2002/95/EC APPLICATIONS • Automotive • Telecommunication Automotive-Grade MC AT Professional Thin Film Chip Resistors are the perfect choice for most fields of modern professional electronics where reliability and stability is of major concern.
Typical applications include automotive, telecommunication, industrial, medical equipment, precision test and measuring equipment.
• Medical equipment • Industrial equipment METRIC SIZE INCH: METRIC: 0402 RR 1005M 0603 RR 1608M 0805 RR 2012M 1206 RR 3216M TECHNICAL SPECIFICATIONS DESCRIPTION Metric size Resistance range Resistance tolerance Temperature coefficient Rated dissipation P85 (1) Operating voltage, Umax.
AC/DC Permissible film temperature (1) Insulation voltage 1 min; Uins Continuous 75 V 75 V 100 V 75 V 200 V 75 V 300 V 75 V 0.
100 W 50 V MCS 0402 AT RR 1005M 47 Ω to 47 kΩ MCT 0603 AT RR 1608M 47 Ω to 100 kΩ MCU 0805 AT RR 2012M 47 Ω to 100 kΩ MCA 1206 AT RR 3216M 47 Ω to 100 kΩ ± 1 %; ± 0.
5 % ± 50 ppm/K; ± 25 ppm/K 0.
150 W 75 V 175 °C 0.
200 W 150 V 0.
400 W 200 V Note (1) Please refer to APPLICATION INFORMATION below www.
vishay.
com 1 For technical questions, contact: thinfilmchip@vishay.
com Document Number: 28760 Revision: 07-Dec-09 MCS 0402 AT, MCT 0603 AT, MCU 0805 AT, MCA 1206 AT -www.
DataSheet4U.
com Professional Professional Thin Film Chip Resistor Superior Moisture Resistivity APPLICATION INFORMATION The power dissipation on the resistor generates a temperature rise against the local ambient, depending on the heat flow support of the pri...



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