Y168880R5000Q0L [VISHAY]
High Precision Foil Resistor with TCR of ± 2.0 ppm/°C, Tolerance of ± 0.01 % and Load Life Stability of ± 0.005 % CECC Qualified; ± 0.005 % CECC合格的高精度箔电阻具有± 2.0 ppm的TCR / ° C, ±0.01 %的容差和负载寿命稳定型号: | Y168880R5000Q0L |
厂家: | VISHAY |
描述: | High Precision Foil Resistor with TCR of ± 2.0 ppm/°C, Tolerance of ± 0.01 % and Load Life Stability of ± 0.005 % CECC Qualified |
文件: | 总5页 (文件大小:99K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
RS92N, RS92NA, AN
Vishay Foil Resistors
High Precision Foil Resistor with TCR of 2ꢀ. ꢁꢁpm/C
,
Tolerance of .ꢀ.0 ꢂ and Load Life Stability
of .ꢀ..ꢃ ꢂ CECC Qualified
FEATURES
• Tepꢁerature coefficient of resistance (TCR):
2 ꢁꢁpm/C tyꢁical (- ꢃꢃ /C to + 0ꢃꢃ /C, refꢀ + 2. /C)
• Rated power: to 0.25 W at + 125 °C
• Tolerance: 0.01 ꢀ
• Load life stability: to 0.005 ꢀ at 70 °C, 2000 h at rated
power
INTRODUCTION
Bulk Metal® Foil (BMF) technology outperforms all other
resistor technologies available today for applications that
require high precision and high stability.
• Resistance range: 80.6 Ω to 120 kΩ (higher or lower
values of resistance are available)
• Electrostatic discharge up to 25 000 V
• Non inductive, non capacitive design
• Rise time: 1 ns effectively no ringing
• Current noise: < - 40 dB
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.
• Thermal EMF: 0.05 µV/°C typical
• Voltage coefficient: < 0.1 ppm/V
• Low inductance: < 0.08 µH typical
• Non hot spot design
Models RS92N, RS92NA, and AN made from Vishay 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.
• Terminal finishes available: tin/lead alloy
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.
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
APPLICATIONS
• High precision amplifiers
• Down-hole (high temperature)
• High precision instrumentation
• Medical and test equipment
• Industrial
Our Application Engineering Department is available to
advise and to make recommendations. For non-standard
technical requirements and special applications, please
contact us.
• Audio (high end stereo equipment)
TABLE 1 - TOLERANCE AND TCR VS.
RESISTANCE VALUE
• EB applications (electron beam scanning and recording
equipment, electron microscopes)
(- 55 °C to + 155 °C, + 20 °C Ref.)
• Military, airborne
RESISTANCE
VALUE
TYPICAL TCR AND
MAXꢀ SPREAD
(ꢁꢁpm/C)
TOLERANCE
(ꢂ)
• Measurement instrumentation
(Ω)
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: 03-Nov-08
For any questions, contact: foil@vishay.com
www.vishay.com
1
RS92N, RS92NA, AN
High Precision Foil Resistor with TCR of 2.0 ppm/°C,
Vishay Foil Resistors
Tolerance of 0.01 ꢀ and Load Life Stability
of 0.005 ꢀ CECC Qualified
TABLE 3 - ELECTRICAL SPECIFICATIONS
RS92N, RS92NA
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
see diagram
700 VAC
Insulation Resistance
Therpal EMF
> 104 MΩ
< 0.5 µV for 1 °C of difference between leads
non measureable
Noise
0.14 °C/mW
Therpal Resistance
TABLE 4 - PERFORMANCE
REQUIREMENTS
TESTS
CONDITIONS
C 83-22.
TYPICAL DRIFTS
CECC 4.3.2-..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 MΩ
0.003 ꢀ
Insulation R > 104 MΩ
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 MΩ
Insulation R > 104 MΩ
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.vishay.com
2
For any questions, contact: foil@vishay.com
Document Number: 63138
Revision: 03-Nov-08
RS92N, RS92NA, AN
High Precision Foil Resistor with TCR of 2.0 ppm/°C,
Vishay Foil Resistors
Tolerance of 0.01 ꢀ and Load Life Stability
of 0.005 ꢀ CECC Qualified
FIGURE 1 - STANDARD IMPRINTING AND DIMENSIONS
Front View
Rear View
Optional Customer Part Number
Print specification, etc. if required
L
W
Date Code
01 10
Year Week
Resistance
VISHAY
XXXX
RS92
XXXXXX
100R01
0.01 %
Value Code
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
DIMꢀ
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 RATING CHART
FIGURE 4 -FOIL RESISTOR TCR
IN MILITARY RANGE
+ 70 °C
+ 155 °C
1.00
0.75
0.50
0.25
0
+ 0ꢃ.
+ 0..
+ ꢃ.
C Alloy
2 ꢁꢁpm/C
∆R
.
R
(ꢁꢁp)
- ꢃ.
- 0..
- 0ꢃ.
- 2..
2 ꢁꢁpm°C
- ꢃ.
- ꢃꢃ
- 2ꢃ
.
+ 2ꢃ
+ ꢃ.
+ 7ꢃ + 0.. + 02ꢃ
0
25
50
75
100
125
150
175
Tepꢁerature (/C)
Apbient Tepꢁerature (/C)
Document Number: 63138
Revision: 03-Nov-08
For any questions, contact: foil@vishay.com
www.vishay.com
3
RS92N, RS92NA, AN
High Precision Foil Resistor with TCR of 2.0 ppm/°C,
Vishay Foil Resistors
Tolerance of 0.01 ꢀ and Load Life Stability
of 0.005 ꢀ CECC Qualified
TABLE 5 - GLOBAL PART NUMBER INFORMATION
NEW GLOBAL PART NUMBER: Y04428.Kꢃ...T.L (ꢁreferred ꢁart nupber forpat)
DENOTES PRECISION
VALUE
AER*
Y
R = Ω
K = kΩ
M = MΩ
. = standard
0 - 999 = custom
Y
0
4
4
2
8
.
K
ꢃ
.
.
.
T
.
L
PRODUCT CODE
RESISTANCE TOLERANCE
PACKAGING
0442 = 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 kΩ
ABSOLUTE TOLERANCE: 0.01 ꢀ
TERMINATION: standard
PACKAGING: bulk pack
HISTORICAL PART NUMBER: RS92N 2ꢃ.R.. T B (will continue to be used)
RS92N
2ꢃ.R..
T
B
MODEL
TERMINATION
RESISTANCE VALUE
TOLERANCE
PACKAGING
RS92N
RS92NA
AN
None = tin/lead alloy
2ꢃ.R.. = 250.00 Ω
ꢃK230. = 5.231 kΩ
0M... = 1 MΩ
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
* For non-standard requests, please contact application engineering.
www.vishay.com
4
For any questions, contact: foil@vishay.com
Document Number: 63138
Revision: 03-Nov-08
Legal Disclaimer Notice
Vishay
Disclaimer
All product specifications and data are subject to change without notice.
Vishay Intertechnology, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf
(collectively, “Vishay”), disclaim any and all liability for any errors, inaccuracies or incompleteness contained herein
or in any other disclosure relating to any product.
Vishay 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’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.
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 products not expressly indicated for use in such
applications do so entirely at their own risk and agree to fully indemnify Vishay for any damages arising or resulting
from such use or sale. Please contact authorized Vishay 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: 91000
Revision: 18-Jul-08
www.vishay.com
1
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