Y168880R6000F0L [VISHAY]

RESISTOR, METAL FOIL, 0.5 W, 1 %, 2 ppm, 80.6 ohm, THROUGH HOLE MOUNT, RADIAL LEADED;
Y168880R6000F0L
型号: Y168880R6000F0L
厂家: VISHAY    VISHAY
描述:

RESISTOR, METAL FOIL, 0.5 W, 1 %, 2 ppm, 80.6 ohm, THROUGH HOLE MOUNT, RADIAL LEADED

电阻器
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中文:  中文翻译
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RS9ꢀN, RS9ꢀNA, AN  
Vishay Foil Resistors  
High Precision Foil Resistor with TCR of ꢀ2. ꢁꢁpm/C  
,
Tolerance of .2.0 ꢂ and Load Life Stability  
of .2..ꢃ ꢂ CECC Qualified  
FEATURES  
Tepꢁerature coefficient of resistance (TCR):  
ꢀ ꢁꢁpm/C tyꢁical (- ꢃꢃ /C to + 0ꢃꢃ /C, ref2 + ꢀ. /C)  
Resistance range: 80.6 to 120 k  
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)  
INTRODUCTION  
Bulk Metal® Foil (BMF) technology outperforms all other  
resistor technologies available today for applications that  
require high precision and high stability.  
Rated power: to 0.25 W at + 125 °C  
Tolerance: 0.01 ꢀ  
This technology has been pioneered and developed by  
VISHAY, and products based on this technology are the  
most suitable for a wide range of applications. BMF  
technology allows us to produce customer orientated  
products, designed to satisfy challenging and specific  
technical requirements.  
Load life stability: to 0.005 ꢀ at 70 °C, 2000 h at rated  
power  
Electrostatic discharge up to 25 000 V  
Non inductive, non capacitive design  
Rise time: 1 ns effectively no ringing  
Current noise: < - 40 dB  
Models RS92N, RS92NA, and AN made from BMF offers low  
TCR, excellent load life stability, tight tolerance, fast  
response time, low current noise, low thermal EMF and low  
voltage coefficient, all in one resistor.  
Thermal EMF: 0.05 µV/°C typical  
Voltage coefficient: < 0.1 ppm/V  
Low inductance: < 0.08 µH typical  
Non hot spot design  
The RS92N, RS92NA, and AN are virtually insensitive to  
destabillizing factors. The resistor element is a solid alloy  
that displays the desirable bulk properties of its parent  
material, thus it is inherently stable and noise free.  
Terminal finish available: tin/lead alloy  
Vishay’s Bulk Metal® RS92N, RS92NA, and AN resistors are  
the modern generation of precision resistors. The standard  
design of these resistors provides a unique combination of  
characteristics found in no other single resistor.  
Matched sets are available per request  
(TCR Tracking: to 0.5 ppm/°C)  
For better TCR and PCR performances please review the  
RNC9.Z and Zꢃꢃꢃ datasheets  
Our Application Engineering Department is available to  
advise and to make recommendations. For non-standard  
technical requirements and special applications, please  
contact us.  
TABLE 1 - TOLERANCE AND TCR VS. RESISTANCE VALUE (- 55 °C to + 155 °C, + 20 °C Ref.)  
RESISTANCE VALUE  
TOLERANCE  
(ꢂ)  
TYPICAL TCR AND MAX2 SPREAD  
(ꢁꢁpm/C)  
()  
80.6 to 120K  
0.01  
2
3
TABLE 2 - MECHANICAL AND ENVIRONMENTAL SPECIFICATIONS  
Mechanical Protection  
Resistive Elepent  
Unit Weight  
Insulated case  
Nickel-chromium  
0.3 g  
Tepꢁerature Lipits  
Clipatic Category  
- 55 °C to + 155 °C  
55/155/56  
Document Number: 63138  
Revision: 25-Mar-10  
For any questions, contact: foil@vishaypg.com  
www.foilresistors.com  
1
RS9ꢀN, RS9ꢀNA, AN  
Vishay Foil Resistors  
TABLE 3 - ELECTRICAL SPECIFICATIONS  
RS9ꢀN, RS9ꢀNA  
80R6 to 120K  
80R6 to 92K  
0.01 ꢀ to 1 ꢀ  
Qualified Ohpic Range  
AN  
Qualified Tolerances  
Power Rating  
0.5 W at +70 °C  
0.25 W at + 125 °C  
Tepꢁerature Coefficient  
Dielectric Strength  
Insulation Resistance  
Therpal EMF  
see diagram  
700 VAC  
> 104 M  
< 0.5 µV for 1 °C of difference between leads  
non measureable  
Noise  
Therpal Resistance  
0.14 °C/mW  
TABLE 4 - PERFORMANCE  
REQUIREMENTS  
TESTS  
CONDITIONS  
C 83-ꢀꢀ.  
TYPICAL DRIFTS  
CECC 4.3.ꢀ-..0  
2.5 Un/5 s  
Overload  
0.01 ꢀ  
0.01 ꢀ  
0.002 ꢀ  
0.003 ꢀ  
Umax. < 2 Un  
- 55 °C to + 155 °C, 5 cycles  
CEI 68-2-14 test Na  
Tepꢁerature Cycling  
Terpinals Strength  
Resistance to Soldering Heat  
Vibrations  
CEI 68-2-21  
test Ua (pulling), Ub (bending),  
Uc (twisting)  
0.01 ꢀ  
0.01 ꢀ  
0.01 ꢀ  
0.002 ꢀ  
0.002 ꢀ  
0.002 ꢀ  
260 °C/10 s  
CEI 68-2-20A test Tb (method 1A)  
10 Hz to 500 Hz  
0.75 mm or 10g for 6 h method B4  
CEI 68-2-6 test Fc  
- 55 °C to + 155 °C, 6 cycles,  
95 ꢀ R.H., 85 mbar  
CEI 68-1  
0.05 ꢀ  
Insulation R > 102 M  
0.003 ꢀ  
Insulation R > 104 M  
Clipatic Sequence  
56 days, 95 ꢀ R.H., 40 °C  
CEI 68-2-3  
0.05 ꢀ  
0.003 ꢀ  
Hupidity (Steady State)  
Load Life  
Insulation R > 102 M  
Insulation R > 104 M  
1000 h Pr at + 70 °C  
90’/30’ cycle  
0.05 ꢀ  
0.05 ꢀ  
0.01 ꢀ  
0.01 ꢀ  
1000 h/155 °C  
CEI 68-2-20A test B  
High Tepꢁerature Exꢁosure  
www.foilresistors.com  
2
For any questions, contact: foil@vishaypg.com  
Document Number: 63138  
Revision: 25-Mar-10  
RS9ꢀN, RS9ꢀNA, AN  
Vishay Foil Resistors  
FIGURE 1 - STANDARD IMPRINTING AND DIMENSIONS  
Front View  
Rear View  
Optional Customer Part Number  
Print specification, etc. if required  
L
W
Date Code  
Resistance  
01  
10  
VISHAY  
XXXX  
RS92  
XXXXXX  
100R01  
0.01 %  
Value Code  
Year Week  
H
Tolerance  
ST1)  
SW  
LL  
Model Number  
LS  
Lead Material #22 AWG  
Round Solder Coated Copper  
Note  
1. The standoffs shall be so located as to give a lead clearance of 0.010" minimum between the resistor body and the printed circuit board  
when the standoffs are seated on the printed circuit board. This is to allow for proper cleaning of flux and other contaminants from the unit  
after all soldering processes.  
WEIGHT  
NOMINAL  
MODEL  
DIM2  
LS  
W
L
H
ST  
LL  
RS92NA  
RS92N  
AN  
mm  
mm  
mm  
3.81 0.13  
5.08 0.076  
5.08 0.076  
2.50 max.  
2.50 max.  
2.50 max.  
7.50 max.  
7.50 max.  
7.50 max.  
8.00 max.  
8.00 max.  
8.00 max.  
0.254 min.  
0.254 min.  
0.254 min.  
25.4 min.  
25.4 min.  
25.4 min.  
0.6 g  
0.6 g  
0.6 g  
FIGURE 2 - TRIMMING TO VALUES (Conceptual Illustration)  
Current Path  
Before Trimming  
Interloop Capacitance  
Reduction in Series  
Current Path  
After Trimming  
Trimming Process  
Mutual Inductance  
Reduction due  
to Change in  
Removes this Material  
from Shorting Strip Area  
Changing Current Path  
and Increasing  
Current Direction  
Resistance  
Note: Foil shown in black, etched spaces in white  
FIGURE 3 - POWER DERATING CURVE  
FIGURE 4 - TYPICAL RESISTANCE/  
TEMPERATURE CURVE  
+ 70 °C  
+ 155 °C  
1.00  
0.75  
0.50  
0.25  
0
+ 0ꢃ.  
+ 0..  
+ ꢃ.  
C Alloy  
ꢀ ꢁꢁpm/C  
ΔR  
.
R
(ꢁꢁp)  
- ꢃ.  
- 0..  
- 0ꢃ.  
- ꢀ..  
ꢀ ꢁꢁpm°C  
- ꢃ.  
- ꢃꢃ  
- ꢀꢃ  
.
+ ꢀꢃ  
+ ꢃ.  
+ 7ꢃ + 0.. + 0ꢀꢃ  
Apbient Tepꢁerature (/C) and TCR Chord Sloꢁes  
0
25  
50  
75  
100  
125  
150  
175  
for Different Tepꢁerature Ranges  
Apbient Tepꢁerature (/C)  
Document Number: 63138  
Revision: 25-Mar-10  
For any questions, contact: foil@vishaypg.com  
www.foilresistors.com  
3
RS9ꢀN, RS9ꢀNA, AN  
Vishay Foil Resistors  
TABLE 5 - GLOBAL PART NUMBER INFORMATION (1)  
NEW GLOBAL PART NUMBER: Y044ꢀ8.Kꢃ...T.L (ꢁreferred ꢁart nupber forpat)  
DENOTES PRECISION  
VALUE  
CHARACTERISTICS  
Y
R =   
K = k  
M = M  
. = standard  
0 to 999 = custom  
Y
0
4
4
8
.
K
.
.
.
T
.
L
PRODUCT CODE  
RESISTANCE TOLERANCE  
PACKAGING  
044ꢀ = RS92N  
0687 = RS92NA  
0688 = AN  
T = 0.01 ꢀ  
Q = 0.02 ꢀ  
A = 0.05 ꢀ  
B = 0.1 ꢀ  
C = 0.25 ꢀ  
D = 0.5 ꢀ  
F = 1.0 ꢀ  
L = bulk pack  
FOR EXAMPLE: ABOVE GLOBAL ORDER Y1442 80K5000 T 0 L:  
TYPE: RS92N  
VALUE: 80.5 k  
ABSOLUTE TOLERANCE: 0.01 ꢀ  
TERMINATION: standard  
PACKAGING: bulk pack  
HISTORICAL PART NUMBER: RS9ꢀN ꢀꢃ.R.. T B (will continue to be used)  
RS9ꢀN  
ꢀꢃ.R..  
T
B
MODEL  
TERMINATION  
RESISTANCE VALUE  
TOLERANCE  
PACKAGING  
RS9ꢀN  
RS9ꢀNA  
AN  
None = tin/lead alloy  
ꢀꢃ.R.. = 250.00   
ꢃKꢀ30. = 5.231 k  
0M... = 1 M  
T = 0.01 ꢀ  
Q = 0.02 ꢀ  
A = 0.05 ꢀ  
B = 0.1 ꢀ  
C = 0.25 ꢀ  
D = 0.5 ꢀ  
F = 1.0 ꢀ  
B = bulk pack  
Note  
(1) For non-standard requests, please contact application engineering.  
www.foilresistors.com  
4
For any questions, contact: foil@vishaypg.com  
Document Number: 63138  
Revision: 25-Mar-10  
Legal Disclaimer Notice  
Vishay Precision Group  
Disclaimer  
All product specifications and data are subject to change without notice.  
Vishay Precision Group, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf  
(collectively, “Vishay Precision Group”), disclaim any and all liability for any errors, inaccuracies or incompleteness  
contained herein or in any other disclosure relating to any product.  
Vishay Precision Group disclaims any and all liability arising out of the use or application of any product described  
herein or of any information provided herein to the maximum extent permitted by law. The product specifications do  
not expand or otherwise modify Vishay Precision Group’s terms and conditions of purchase, including but not limited  
to the warranty expressed therein, which apply to these products.  
No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this  
document or by any conduct of Vishay Precision Group.  
The products shown herein are not designed for use in medical, life-saving, or life-sustaining applications unless  
otherwise expressly indicated. Customers using or selling Vishay Precision Group products not expressly indicated  
for use in such applications do so entirely at their own risk and agree to fully indemnify Vishay Precision Group for  
any damages arising or resulting from such use or sale. Please contact authorized Vishay Precision Group  
personnel to obtain written terms and conditions regarding products designed for such applications.  
Product names and markings noted herein may be trademarks of their respective owners.  
Document Number: 63999  
Revision: 22-Feb-10  
www.vishaypg.com  
1

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