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VHP101T80K250CB Datasheet(PDF) 2 Page - Vishay Siliconix |
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VHP101T80K250CB Datasheet(HTML) 2 Page - Vishay Siliconix |
2 / 4 page www.vishay.com For any questions, contact: foil@vishay.com Document Number: 63003 2 Revision: 18-Jun-07 VHP100 Vishay Foil Resistors Ultra-High Precision Hermetically Sealed Bulk Metal® Foil Technology Resistor with Zero TCR and 0.005 % Tolerance Note 1. For 0.200 lead spacing, specify VHP102 (60 ppm) or VHP103 (10 ppm). Note 1. Load/life stability is considerably improved by reducing the temperature, power, or through in-house oriented tests FIGURE 3 - TYPICAL CURVES WITHIN THE 60 ppm WINDOW, VHP100 TCR FOR MIL RANGE FIGURE 4 - TYPICAL CURVES WITHIN 10 ppm WINDOW, VHP101 LABORATORY INSTRUMENT RANGE 60 ppm Window - 55 - 25 0 + 25 + 50 + 75 + 100 + 125 Temperature (°C) (- 55 °C to + 125 °C): Typical TCR = 0.6 ppm/°C, Ref. + 25 °C + 15 + 20 + 25 + 30 + 35 + 40 + 45 + 50 10 ppm Window (+ 15 °C to + 45 °C): Typical TCR = 0.3 ppm/°C, Ref. + 25 °C Temperature (°C) FIGURE 5 - STANDARD PRINTING TOLERANCE RESISTANCE SPECIFIED IN SIGNIFICANT DIGITS ± 1.0 % 3 ± 0.1 % 4 ± 0.01 % 5 ± 0.005 % 6 Note The number of significant digits of resistance accuracy to be printed on the resistor should be in accordance with the specified tolerance TABLE 1 - VHP100 SERIES DIMENSIONS INCHES mm VHP100 W 0.185 ± 0.020 4.70 ± 0.51 L 0.435 ± 0.020 11.05 ± 0.51 VHP101 H 0.430 ± 0.020 10.92 ± 0.51 LL 1.000 ± 0.125 25.4 ± 3.18 LS1) 0.150 ± 0.010 3.81 ± 0.25 ST 0.100 Maximum 2.54 Maximum E 0.070 Maximum 1.78 Maximum LS Model Number VISHAY XXXX VHP100 ST H L Date Code W Front View Rear View Lead Material #22 AWG (0.025 Dia) Solder Coated Copper Resistance Value Code Tolerance Serial No. 100R01 0.01 % XXXX 10 Week 01 Year LL E TABLE 2 - VHP100 SPECIFICATIONS Resistance Range 100 Ω to 150 kΩ Tolerance at + 25 °C ± 0.005 % to ± 1.0 % Power 0.3 W at + 70 °C (see figure 2) Load Life Stability1) (for 2000 hours) 0.3 W at + 70 °C; ± 0.015 % (150 ppm) Maximum ΔR 0.15 W at + 125 °C; ± 0.015 % (150 ppm) Maximum ΔR Shelf-Life Stability ± 0.0002 % (2 ppm) after 10 years Thermal EMF Due to temperature difference between leads Due to self-heating at 0.1 W 0.05 µV/°C 0 to 1 µV High Frequency Operation Rise/Decay Time Inductance (L) Capacitance (C) 1.0 ns for 1 k Ω without ringing 0.1 µH Maximum; 0.08 µH typical 1.0 pF Maximum; 0.5 pF typical Maximum Working Voltage 300 V Voltage Coefficient < 0.1 ppm/V Current Noise < 0.010 µV (rms)/V (- 40 dB) Hermeticity 10-7 atmospheric cc/seconds maximum |
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