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TNPU0805-e3

Vishay

Ultra Precision Thin Film Chip Resistors - Vishay


TNPU0805-e3
TNPU0805-e3

PDF File TNPU0805-e3 PDF File



Description
www.
vishay.
com TNPU e3 Vishay Draloric Ultra Precision Thin Film Chip Resistors TNPU e3 ultra precision thin film flat chip resistors combine the proven reliability of TNPW e3 products with a most advanced level of precision and stability.
This unique combination makes the product perfectly suited for all applications with outstanding requirements towards size, reliable precision and stability.
FEATURES • Low temperature coefficients and tight tolerances • Sulfur resistance verified according to ASTM B 809 • Superior moisture resistivity (85 °C; 85 % RH) • Excellent overall stability at different environmental conditions, e.
g.
 0.
05 % (1000 h rated power at 70 °C) • AEC-Q200 qualified • Material categorization: for definitions of compliance please see www.
vishay.
com/doc?99912 APPLICATIONS • Automotive • Industrial equipment • Test and measuring equipment • Medical equipment • Telecommunication • Instrumentation TECHNICAL SPECIFICATIONS DESCRIPTION TNPU0402 e3 Imperial size 0402 Metric size code RR1005M Resistance range 100  to 100 k Resistance tolerance ± 0.
1 %; ± 0.
05 % Temperature coefficient ± 10 ppm/K; ± 5 ppm/K Rated dissipation, P70 (1) 0.
063 W Operating voltage, Umax.
ACRMS/DC 50 V Permissible film temperature, F max.
(1) Operating temperature range Internal thermal resistance (1) 90 K/W Permissible voltage against ambient (insulation): FITobserved 1 min; Uins 75 V Note (1) Please refer to APPLICATION INFORMATION, see below TNPU0603 e3 TNPU0805 e3 TNPU1206 e3 0603 0805 1206 RR1608M RR2012M RR3216M 100  to 100 k 100  to 332 k 100  to 511 k ± 0.
1 %; ± 0.
05 %; ± 0.
02 % ± 10 ppm/K; ± 5 ppm/K; ± 2 ppm/K 0.
1 W 0.
125 W 0.
25 W 75 V 150 V 200 V 125 °C -55 °C to 125 °C 63 K/W 38 K/W 32 K/W 100 V 200 V  0.
1 x 10-9/h 300 V APPLICATION INFORMATION When the resistor dissipates power, a temperature rise above the ambient temperature occurs, dependent on the thermal resistance of the assembled resistor t...



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