CSS4J-4026K-5L00F [BOURNS]
Current Sense Resistor;型号: | CSS4J-4026K-5L00F |
厂家: | BOURNS ELECTRONIC SOLUTIONS |
描述: | Current Sense Resistor |
文件: | 总2页 (文件大小:352K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
Features
Applications
n EB welded metal strip
n Very high power
n Current sensing
n Voltage division
n Battery management systems
n Power modules
C
C
S
S
S
S
L
L
4
4
J
J
5
5
n Excellent long term stability
n Low resistance, low TCR
n Low thermal EMF
n RoHS compliant*
ꢀ
-
-
4
4
ꢀ
ꢀ
ꢀ
ꢀ
ꢀ
1
1
1
1
2
2
6
6
5
5
%
%
4
4
R
R
6
6
n Frequency converters
n Industrial
ꢀꢀ
ModelꢀCSS4J-4026ꢀSeriesꢀCurrentꢀSenseꢀResistor
Electrical Characteristics
How to Order
CSS 4J - 4026 R - 1L00 F
Characteristic
Model CSS4J-4026 Series
Model
CSS4J-4026R-L500x
CSS4J-4026R-1L00x
CSS4J-4026K-2L00x
CSS4J-4026K-5L00x
0.5 mW / 5 W
1.0 mW / 4 W
2.0 mW / 4 W
5.0 mW / 3 W
No. of Terminals
& Style
Resistance Range /
Power Rating @130 °C*
Size
Material Type
(See Part Number Table)
Operating Temperature Range
TCR - Resistive Alloy
-55 to +170 °C
Resistance Code (milliohms)
“L” represents decimal point
(examples: L500 = .500 milliohms;
1L00 = 1.00 milliohms)
≤+50 PPM/°C (20~60 °C)
Resistance Tolerance
±1 %, ±5 %
* Terminal temperature
Resistance Tolerance
F = ±1 %
J = ±5 %
Environmental Characteristics
Characteristic
Test Condition
DR Max.
0.50 %
0.50 %
1.00 %
0.10 %
0.50 %
0.20 %
0.20 %
0.20 %
Thermal Shock
-55 to +150 °C / 100 Cycles
+260 °C / 10 Seconds
+170 °C / 100 Hours
Resistance to Soldering Heat
High Temperature Exposure
Low Temperature Storage
Biased Humidity Test
Moisture Resistance
Mechanical Shock
-65 °C / 24 Hours
+85 °C, 85 %R.H., 100 Hours
10 Days with Cold Shock, No Load
100 g, 6 ms half sine
Vibration, High Frequency
Load Life
20 g, 10-2000 Hz
1000 Hours Derated Curve at 130 °C
1.00 %
Product Dimensions
RESISTIVE MATERIAL
BASE MATERIAL
COPPER ALLOY C10200
6.90
(0.272)
Part Number
Dimension H
Dimension Y
REF.
3.01 0.3
(0.119 0.012)
0.42 0.1
(0.016 0.004)
CSS4J-4026R-L500x
2.71 0.3
(0.107 0.012)
0.42 0.1
(0.016 0.004)
H
Y
CSS4J-4026R-1L00x
CSS4J-4026K-2L00x
CSS4J-4026K-5L00x
2.94 0.3
(0.116 0.012)
0.42 0.1
(0.016 0.004)
2.00 0.12
(0.079 0.00ꢀ)
2.ꢀ0
(0.09ꢀ)
2.00 +0.10/-0.30
(0.197 +0.004/-0.01ꢀꢁ
2.62 0.3
(0.103 0.012)
0.42 0.1
(0.016 0.004)
MM
(INCHES)
DIMENSIONS:
REF.
4.90
TRIMMING AREA
(0.193ꢁ
REF.
1.00 0.12
(0.039 0.006ꢁ
6.60 +0.30/-0.ꢀ0
(0.ꢀ60 +0.01ꢀ/-0.008
0.70 0.10
(0.0ꢀ8 0.004ꢁ
10.06 0.ꢀ2
(0.396 0.010ꢁ
*RoHS Directive 2002/95/EC Jan. 27, 2003 including annex and RoHS Recast 2011/65/EU June 8, 2011.
Specifications are subject to change without notice.
The device characteristics and parameters in this data sheet can and do vary in different applications and actual device performance may vary over time.
Users should verify actual device performance in their specific applications.
ꢀ
ModelꢀCSS4J-4026ꢀSeriesꢀCurrentꢀSenseꢀResistor
Typical Part Marking
Recommended Pad Layout
SENSE TERMINALS
MM
DIMENSIONS:
PART IDENTIFICATION:
CSS = CURRENT SENSOR SHUNT
4J = NUMBER OF
(INCHES)
SIZE
MATERIAL TYPE
TERMINALS & STYLE
RESISTANCE
CODE
CSS4J-4026R
1L00 1%
1602
0.80
(0.03ꢁ
RESISTANCE
IN MILLIOHMS:
“L” = DECIMAL POINT
TOLERANCE:
F = 1 % J = 5 %
MANUFACTURER’S
TRADEMARK
7.30
(0.ꢀ9ꢁ
DATE CODE:
YYWW
2.60
(0.ꢀꢀꢁ
SOLDER
PADS
10.40
(0.41ꢁ
Power Derating Curve
@130 °C
1.2
1.0
0.8
0.6
0.4
0.2
0
130 °C
0
20
40
60
80
100
120
140
160
180
Terminal Temperature (°C)
Packaging Specifications
Components packaged on plastic tape & reel per EIA-481.
Reel Size: 13 inches
Tape Width: 16 mm
0.26
(0.010)
Quantity:
1,500 pcs. per reel
Asia-Pacific:
Tel: +886-2 2562-4117
Email: asiacus@bourns.com
COMPONENT
ORIENTATION
Europe:
Tel: +36 88 520 390
TRIMMING
POSITION
CSS4J-4026R
1L00 1%
1602
CSS4J-4026R
1L00 1%
1602
Email: eurocus@bourns.com
The Americas:
Tel: +1-951 781-5500
Email: americus@bourns.com
0.28
(0.011)
www.bourns.com
TOP COVER TAPE
EMBOSSED
CARRIER
MATTE
FINISH
MM
(INCHES)
DIMENSIONS:
04/16
Specifications are subject to change without notice.
The device characteristics and parameters in this data sheet can and do vary in different applications and actual device performance may vary over time.
Users should verify actual device performance in their specific applications.
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