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CSM25120R00681FSW

Fixed Resistor, Metal Foil, 1W, 0.00681ohm, 1% +/-Tol, -15,15ppm/Cel, 2512,

器件类别:无源元件    电阻器   

厂商名称:Vishay(威世)

厂商官网:http://www.vishay.com

器件标准:

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器件参数
参数名称
属性值
是否Rohs认证
符合
Objectid
942238875
Reach Compliance Code
unknown
ECCN代码
EAR99
构造
All-Welded
端子数量
2
最高工作温度
170 °C
最低工作温度
-65 °C
封装高度
0.635 mm
封装长度
6.35 mm
封装形式
SMT
封装宽度
3.175 mm
包装方法
Waffle Pack
额定功率耗散 (P)
1 W
参考标准
MIL-PRF-55342
电阻
0.00681 Ω
电阻器类型
FIXED RESISTOR
系列
CSM2512
尺寸代码
2512
技术
METAL FOIL
温度系数
15 ppm/°C
容差
1%
文档预览
CSM Series
Vishay Foil Resistors
Bulk Metal
®
Technology High Precision, Current Sensing, Power
Surface Mount, Metal Strip Resistor with Resistance Value from 1 m
Ω
,
Rated Power up to 3 W and TCR to 0 ppm/°C ± 15 ppm/°C Maximum
FEATURES
Temperature coefficient of resistance:
± 15 ppm/°C max. (- 55 °C to + 125 °C, + 25 °C
ref.); ± 10 ppm/°C max. (- 55 °C to + 125 °C,
+ 25 °C ref.) is available on request (see table 1)
Power rating: 1 W to 3 W
Tolerance: ± 0.1 %
Resistance range: 1 mΩ to 200 mΩ
(1)
Vishay Foil resistors are not restricted to standard values,
specific “as required” values can be supplied at no extra
cost or delivery (e.g. 2.3456 mΩ vs. 2 mΩ)
Load life stability to ± 0.2 % (70 °C, 2000 h at rated power)
Short time overload: ± 0.1 % typical
Thermal EMF: 3 µV/°C (DC offset error, significant for low
values)
Maximum current: up to 54 A
Proprietary processing techniques produce low TCR, tight
tolerance and improve stability
Low inductance < 5 nH
Solderable terminations
Excellent frequency response to 50 MHz
Matched sets are available on request
Screening in accordance with EEE-INST002 available
(MIL-PRF 55342 and MIL-PRF 49465)
Terminal finish: lead (Pb)-free, tin/lead alloy
Prototype quantities available in just 5 working days
or sooner. For more information, please contact
foil@vishay.com
For better performance please contact us
Compliant to RoHS directive 2002/95/EC
No minimum order quantity and any value at any
tolerance available within resistance range.
Our application engineering department is available to
advise and make recommendations.
For non-standard technical requirements and special
applications, please contact us.
R
I
I
1
E
1
V
E
2
I
2
I
Four terminal (Kelvin) design: allows for precise and
accurate measurements.
FIGURE 1 - POWER DERATING CURVE
Percent of Rated Power
100
80
60
40
20
+ 70 °C
IM
PR
O
VE
D
0
- 65 - 50
- 25
0
25
50
75
100
125
150
170
Ambient Temperature (°C)
TABLE 1 - SPECIFICATIONS
PARAMETER
Resistance Range
CSM2512
1 W
(2)
Power Rating at 70 °C
Maximum Current
(3)
Tolerance
Temperature Coefficient
Max. (- 55 °C to + 125 °C,
+ 25 °C Ref.)
Operating Temperature
- 65 °C to + 170 °C
Range
Maximum Working Voltage
(P x
R)
1/2
Weight (Maximum)
0.09 g
Notes
(1)
For CSM2512 up to 500 mΩ please contact application engineering:
foil@vishay.com
(2)
For values above 0.1
Ω
derate linearly to 80 % rated power at 0.5
Ω
(3)
Maximum current for a given resistance value is calculated using I
=
P
R
(4)
Please contact application engineering:
foil@vishay.com
* Pb containing terminations are not RoHS compliant, exemptions may apply
For any questions, contact:
foil@vishay.com
31 A
± 0.5 % (1 mΩ to 2.99 mΩ)
± 0.1 % (3 mΩ to 200 mΩ)
± 50 ppm/°C (1 mΩ to 2 mΩ)
± 15 ppm/°C (3 mΩ to 200 mΩ)
± 10 ppm/°C (3 mΩ to 10 mΩ) is available on request
(4)
Document Number: 63089
Revision: 03-Dec-09
PR
O
DU
CT
CSM3637
1 mΩ to 200 mΩ
(1)
3 W ( 1 mΩ to 10 mΩ)
2 W (> 10 mΩ to 200 mΩ)
54 A
± 0.5 % (1 mΩ to 1.99 mΩ)
± 0.1 % (2 mΩ to 200 mΩ)
± 25 ppm/°C (1 mΩ to < 3 mΩ)
± 15 ppm/°C (3 mΩ to 200 mΩ)
± 10 ppm/°C (1 mΩ to 10 mΩ) is available on request
(4)
0.29 g
www.vishay.com
1
CSM Series
Vishay Foil Resistors
ABOUT CSM
(Low Ohm Value 1 mΩ to 200 mΩ)
New high-precision Bulk Metal
®
surface-mount Power Metal
Strip
®
resistor of 1 mΩ to 200 mΩ that features an improved
load-life stability of ± 0.2 % at + 70 °C for 2000 h at rated
power, an absolute TCR of ± 15 ppm/°C maximum from
- 55 °C to + 125 °C, + 25 °C ref., and a tolerance of ± 0.1 %.
Typical current sensing resistors offer a load-life stability of
1 % through a 2000 h workload. The improved resistance
stability of the CSM Series makes it ideal for
tightened-stability voltage division and precision current
sensing applications in switching linear power supplies,
power amplifiers, measurement instrumentation, bridge
networks, and medical and test equipment. In addition, the
CSM Series complies with EEE-INST-002 (MIL-PRF 55342
and MIL-PRF 49465) for military and space applications.
Traditional Passive current sensors and shunts generate
heat under power, which changes their resistance, and thus
their voltage output. The CSM’s low absolute TCR reduces
errors due to temperature gradients, thus reducing a major
source of uncertainty in current measurement. The CSM
can withstand unconventional environmental conditions,
including the extremely high temperatures and radiation-rich
environments of down-hole oil exploration and well logging,
or the deep-sea underwater repeaters in cross-ocean
communications.
The stability of the CSM can be further enhanced by
post-manufacturing operations (PMO), such as temperature
cycling, short-time overload, and accelerated load life which
are uniquely applicable to Bulk Metal Foil resistors.
in critical locations can greatly improve circuit performance,
long-term application-related performance, as well as the
designer’s peace-of-mind.
IM
PR
O
VE
D
The device features a low thermal electromotive force (EMF)
that is critical in many precision applications. The CSM’s
all-welded construction is composed of a Bulk Metal resistive
element with welded copper terminations, plated for
soldering. The terminations make true ohmic contact with the
resistive layer along the entire side of the resistive element,
thereby minimizing temperature variations. Also, the resistor
element is designed to uniformly dissipate power without
creating hot spots, and the welded terminations material is
compatible with the element material.
These design factors result in a very low thermal-EMF
(3 µV/°C) resistor, because in addition to the low thermal
EMF compatibility of the metals, the uniformity and thermal
efficiency of the design minimizes the temperature
differential across the resistor, thereby assuring low thermal
EMF generation at the leads. This further reduces the
“battery effect” exhibited by most current-sensing or
voltage-reference resistors. Thus, the parasitic voltage
generated at the junction of two dissimilar metals, which is
especially important in low-value current-sensing resistors, is
minimized, while the pure current-to-voltage conversion is
protected from such interference in DC applications.
The stability problems associated with analog circuits are
very pervasive, but knowledgeable selection of a few
high-quality resistors, networks, or trimming potentiometers
www.vishay.com
2
For any questions, contact:
foil@vishay.com
PR
O
DU
CT
Designers often unnecessarily pay for tighter tolerances than
required simply to accommodate the resistance stability
shifts they know to be imminent in an application due to the
large application-related changes in the components they
selected. Selection of a high-stability component like the
CSM in these applications eliminates the need for shift
allowance due to “planned instability” and allows the use of
looser initial tolerances than would be necessary with
current-sensing resistors based on other technologies.
The Key Applications
Applications requiring accuracy and repeatability under
stress conditions such as the following:
Switching and linear power supplies
Precision current-sensing
Power management systems
Feedback circuits
Power amplifiers
Measurement instrumentation
Precision instrumentation amplifiers
Medical and automatic test equipment
Satellites and aerospace systems
Commercial and Military avionics
Test and measurement equipment
Electronic scales
Document Number: 63089
Revision: 03-Dec-09
Additionally, the overall system cost is often reduced when a
knowledgeable designer concentrates costs in a few
exceptionally stable components whose proven minimal-
deviation load and environmental stability can often eliminate
the necessity of additional compensating circuitry or
temperature-controlling systems. The higher reliability and
better overall system performances also achieve excellent
product results in the field, enhancing market acceptance
and product reputation.
CSM Series
Vishay Foil Resistors
FIGURE 2 - DIMENSIONS AND IMPRINTING
in inches (millimeters)
CSM2512 DIMENSIONS
(1)
CSM3637 DIMENSIONS
(1)
H
B
L
T
W
A
CSM2512 LAND PATTERN
I
1
E
1
e
I
2
I
Kelvin Connection
I
1
, I
2
- Current
E
1
, E
2
- Sense
a
b
E
2
d
c
DIMENSIONS - TOLERANCES ± 0.010 (± 0.254), * ± 0.015 (± 0.381)
IM
PR
O
VE
D
MODEL
RESISTANCE RANGE (mΩ)
1 to < 5
5 to < 7
L
CSM2512
0.250 (6.350)
0.125 (3.175)
7 to 200
1 to < 2
0.360 (9.144)
0.370 (9.398)
0.370 (9.398)
CSM3637
2 to 200
0.360 (9.144)
LAND PATTERN DIMENSIONS - TOLERANCES ± 0.003 (± 0.076)
MODEL
RANGE
a
b
c
0.045 (1.14)
0.045 (1.14)
0.045 (1.14)
0.066 (1.68)
0.066 (1.68)
d
0.021 (0.53)
0.021 (0.53)
0.021 (0.53)
0.024 (0.610)
0.024 (0.610)
e
0.055 (1.39)
0.055 (1.39)
0.055 (1.39)
-
-
I
0.050 (1.27)
0.125 (3.17)
0.160 (4.06)
0.074 (1.88)
0.178 (4.52)
0R001 to 0R0049
0R005 to 0R0069
0R007 to 0R2
0.120 (3.05)
0.083 (2.10)
0.145 (3.68)
0.145 (3.68)
CSM2512
0.065 (1.65)
0.145 (3.68)
0R001 to 0R0019
0R002 to 0R02
0.168 (4.27)
0.390 (9.91)
CSM3637
0.116 (2.95)
0.390 (9.91)
Note
(1)
White dot indicates top side of part for mounting purposes
Document Number: 63089
Revision: 03-Dec-09
For any questions, contact:
foil@vishay.com
PR
O
DU
CT
H
A
B
L
W
T
CSM3637 LAND PATTERN
E
1
I
1
E
2
c
I
2
I
d
b
a
W
H
T
0.087 (2.210)
A
B
0.025 (0.635)
0.047 (1.194)
0.030 (0.762)
0.030 (0.762)* 0.032 (0.813)*
0.025 (0.635)
0.025 (0.635)
0.138 (3.505)
0.086 (2.184)
0.061 (1.55)
0.061 (1.549)
0.032 (0.813)
0.032 (0.813)
www.vishay.com
3
CSM Series
Vishay Foil Resistors
TABLE 2 - CSM SERIES PERFORMANCE SPECIFICATIONS
TEST
Thermal Shock
Load Life Stability
Bias Humidity
Short Time Overload
High Temperature Exposure
Low Temperature Storage
Moisture Resistance
Shock
Vibration
Resistance to Soldering Heat
Solderability
CONDITIONS
- 55 °C to + 150 °C, 1000 cycles,
15 min at each extreme
2000 h, 70 °C at rated power
+ 85 °C, 85 % humidity
10 % bias, 1000 h
5 x rated power for 5 s
(See note
(3)
from table 1)
1000 h, 170 °C
- 65 °C for 24 h
MIL-STD-202, method 106,
0 power, 7a and 7b not required
100 g, 6 ms, 5 pulses
(10 Hz to 2000 Hz) 20 g
10 s to 12 s at + 260 °C
MIL-STD-202
MIL-PRF-49465B
ΔR
LIMITS
± (0.5 % + 0.0005R)
± (1.0 % + 0.0005R)
± (0.5 % + 0.0005R)
CSM2512/CSM3637
TYPICAL
ΔR
LIMITS
0.1 %
0.2 %
MAXIMUM
ΔR
LIMITS
0.3 %
0.5 %
TABLE 3 - GLOBAL PART NUMBER INFORMATION
DENOTES PRECISION
Y
VALUE
R
=
Ω
NEW GLOBAL PART NUMBER: Y14870R12400B0R (preferred part number format)
IM
PR
O
VE
D
Y
1
4
8
7
0
R
PRODUCT CODE
1487
= CSM2512
1488
= CSM3637
RESISTANCE TOLERANCE
B
= ± 0.1 %
C
= ± 0.25 %
D
= ± 0.5 %
F
= ± 1.0 %
FOR EXAMPLE: ABOVE GLOBAL ORDER Y1487 0R12400 B 0 R:
TYPE: CSM2512
VALUE: 124.0 mΩ
ABSOLUTE TOLERANCE: ± 0.5 %
TERMINATION: standard tin/lead
PACKAGING: tape and reel
HISTORICAL PART NUMBER: CSM2512 0R1240 B B T (will continue to be used)
CSM2512
MODEL
0R1240
B
B
TERMINATION
S
= lead (Pb)-free
B
= tin/lead
T
PACKAGING
T
= tape and reel
W
= waffle pack
OHMIC VALUE
0.124
Ω
ABS. TOLERANCE
B
= ± 0.1 %
C
= ± 0.25 %
D
= ± 0.5 %
F
= ± 1.0 %
Note
(1)
For non-standard requests, please contact application engineering
www.vishay.com
4
For any questions, contact:
foil@vishay.com
PR
O
DU
CT
0.05 %
0.1 %
0.2 %
± (0.5 % + 0.0005R)
0.2 %
0.3 %
± (1.0 % + 0.0005R)
± (0.5 % + 0.0005R)
0.2 %
0.05 %
0.1 %
± (0.5 % + 0.0005R)
0.02 %
0.05 %
± (0.1 % + 0.0005R)
0.02 %
0.05 %
0.1 %
-
± (0.1 % + 0.0005R)
95 % coverage
0.02 %
-
0.05 %
± (0.25 % + 0.0005R)
0.05 %
(1)
CHARACTERISTICS
0
= standard
9
= lead (Pb)-free
1 to 999
= custom
1
2
4
0
0
B
0
R
PACKAGING
W
= waffle
R
= tape and reel
Document Number: 63089
Revision: 03-Dec-09
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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