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Y60718K81740B0L PDF预览

Y60718K81740B0L

更新时间: 2024-10-28 22:31:59
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威世 - VISHAY /
页数 文件大小 规格书
6页 466K
描述
RES 8.8174K OHM .3W .1% RADIAL

Y60718K81740B0L 数据手册

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HZ Series (Z-Foil) with Zero TCR  
Vishay Foil Resistors  
New Generation of Secondary Standards Hermetically Sealed Construction Ultra High  
Precision Z-Foil Technology Resistors with TCR of ꢀ0. ꢁꢁmꢂ/C, Tolerance of ꢀ0ꢀꢀꢃ ꢄ  
and Load Life Stability of ꢀ0ꢀꢀ. ꢄ (Metrology, Laboratory, Instrumentation, Industrial)  
FEATURES  
Temꢁerature coefficient of resistance (TCR):  
0.2 ppm/°C typical (- 55 °C to + 125 °C,  
+ 25 °C ref.). For ultra high performances  
(instrumentation and metrology) please refer to  
the last page  
Resistance range: 5 to 1.1 M(higher or lower values of  
resistance available)  
Foil resistors are not restricted to standard values; specific  
“as required” values can be supplied at no extra cost or  
delivery (e.g. 1K2345 vs. 1K)  
Power coefficient “R due to self heating”:  
5 ppm at rated power with the Z-Foil technology  
Tolerance: to 0.001 % (10 ppm)  
Load life stability to 0.002 % (20 ppm) at 25 °C, 2000 h  
at rated power  
Load life stability, can be considerably imꢁroved  
through in-house stabilization  
Shelf life stability: . ꢁꢁm for at least 6 years  
(unaffected by humidity)  
INTRODUCTION  
The Z-Foil based oil filled, hermetically sealed HZ Series  
resistors represent an industry breakthrough. The hermetic  
sealing eliminates the ingress of moisture and oxygen, while  
the oil acts as a thermal conductor, thus eliminating  
long-term degradation elements of unsealed resistors, while  
at the same time allowing the device to accept short periods  
of overload without degradation.  
The Z-Foil technology provides a significant reduction of the  
resistive components, sensitivity to ambient temperature  
variations (TCR) and applied power changes (PCR). When  
combined with the hermetic sealing and oil filling, the  
HZ Series resistors become the most ꢁrecise and stable  
resistors available. They are used as the most precise  
secondary standards for ultra precision metrology.  
Electrostatic discharge (ESD) up to 25 000 V  
Power rating: 0.3 W to 2.5 W at + 25 °C (depending on  
model - see table 2)  
Non-inductive, non-capacitive design  
Non hot spot design  
Rise time: 1 ns effectively no ringing  
Current noise: 0.010 µVRMS/V of applied voltage (< - 40 dB)  
Thermal EMF: 0.05 µV/°C typical  
Voltage coefficient: < 0.1 ppm/V  
With accuracies of 0.001 % (10 ppm) and a resistance  
range from 5 to 1.1 Mand long term shelf life of less than  
2 ppm, these devices are virtually secondary standards that  
can be carried in sets for daily or periodic calibration of  
factory measurement equipment.  
Thermal stabilization time < 1 s (nominal value achieved  
within 10 ppm of steady state value)  
Non-inductive: < 0.08 µH  
Terminal finish available: lead (Pb)-free or tin/lead alloy  
Impervious to harmful environments - oil filled  
Prototype quantities available in just 5 working days  
or sooner. For more information, please contact  
foil@vishaypg.com  
The HZ Series is available with laboratory and metrology  
level ꢁrecision and long-term stability with additional  
in-house oriented ꢁrocesses such as: chiꢁ stabilization,  
sꢁecial TCR ꢁlotting, additional treatments for ultra  
stability and sꢁecial ꢁost manufacturing oꢁerations  
(PMO)0 (Please refer to the last ꢁage)  
For better performances (values, TCR, tolerance, stability),  
please contact us  
TABLE 1 - TCR VS. RESISTANCE VALUE  
FIGURE 1 - SHELF LIFE - VHA518-11  
12K9 VS. QHE  
TYPICAL TCR AND  
RESISTANCE VALUE  
MAX0 SPREAD  
(- 55 /C to + ꢃ.5 /C, + .5 /C ref0)  
(ꢁꢁmꢂ/C)  
ꢀ09  
ꢀ08  
ꢀ07  
ꢀ06  
ꢀ05  
ꢀ04  
ꢀ03  
ꢀ0.  
ꢀ0ꢃ  
()  
100 to < 1M1  
50 to < 100  
5 to < 50  
0.2  
0.2  
0.2  
2
3
4
Note  
• For maximum TCR < 1 ppm/°C, see VHP100 and contact  
application engineering  
- ꢀ0ꢃ  
ꢃꢀꢀ .ꢀꢀ 3ꢀꢀ 4ꢀꢀ 5ꢀꢀ 6ꢀꢀ 7ꢀꢀ 8ꢀꢀ 9ꢀꢀ ꢃꢀꢀꢀ  
Time (Days)  
Document Number: 63120  
Revision: 25-Mar-10  
For any questions, contact: foil@vishaypg.com  
www.foilresistors.com  
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