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Y0023120R500V PDF预览

Y0023120R500V

更新时间: 2022-12-24 02:56:19
品牌 Logo 应用领域
威世 - VISHAY /
页数 文件大小 规格书
5页 127K
描述
Hermetically Sealed High Precision Bulk Metal® Foil Technology Resistors with TCR of ± 2 ppm/°C, Tolerance of ± 0.001 % and

Y0023120R500V 数据手册

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H Series  
Vishay Foil Resistors  
Hermetically Sealed High Precision Bulk Metal® Foil  
Technology Resistors with TCR of 2 ppm/°C, Tolerance  
of 0.001 % and Load Life Stability of 0.005 %  
FIGURE 4 - STANDARD IMPRINTING AND DIMENSIONS  
Front View  
Rear View  
Lead Material #22 AWG  
Round Solder Coated Copper  
L
W
Resistance  
Value Code  
VISHAY  
XXXX  
D
VISHAY  
XXXX  
VHP202  
100R01  
0.01%  
XXXX  
Tolerance  
H
Model  
Number  
Date Code  
Serial No.  
L
LL  
07  
10  
Year Week  
ST  
Model No.  
Date Code  
LL  
VHA412  
07  
06  
100R01 0.005%  
Year Week  
Lead Material  
Resistance  
Value Code  
Tolerance  
#22 AWG Round  
LS  
Solder Coated Copper  
TABLE 3 - “H” SERIES SPECIFICATIONS  
Stability8)  
Load life at 2000 h  
Shelf life  
0.002 % maximum ΔR at 0.1 W per chip and at + 60 °C  
2 ppm (0.0002 %) for at least 10 years  
< - 40 dB  
Current Noise  
High Frequency Oꢁeration  
Rise time  
1.0 ns without ringing  
Inductance (L)5)  
Capacitance (C)  
Voltage Coefficient  
Thermal EMF7)  
Hermeticity  
0.1 µH maximum; 0.08 µH typical  
1.0 pF maximum; 0.5 pF typical  
< 0.1 ppm/V6)  
0.1 µV/°C maximum; 0.05 µV/°C typical; 1 µV/W maximum  
10-7 atmospheric cc/s maximum  
Notes  
1. Upper end of resistance range varies with model selected (i.e. VHP202; the range is to 150 k  
2. Not to exceed power rating of resistor  
Ω; VHA518-10, the range is to 1M67 Ω) per table 2  
3. Insulating sleeve - a special case insulating plastic sleeve is available on VHA models. See table 4 for instructions on how to specify  
4. 0.200 (5.08 mm) lead spacing available - specify VH202J  
"
5. Inductance (L) due mainly to the leads  
6. The resolution limit of existing test equipment (within measurement capability of the equipment, or “essentially zero”)  
7. µV/°C relates to EMF due to lead temperature difference and µV/W due to power applied to the resistor  
8. Load life ΔR maximum. Can be reduced through in-house oriented processes  
Document Number: 63006  
Revision: 14-Nov-07  
For any questions, contact: foil@vishay.com  
www.vishay.com  
3

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