CSS2H-3920R-L500F [BOURNS]

Fixed Resistor, Metal Alloy, 9W, 0.0005ohm, 1% +/-Tol, 50ppm/Cel, 4020;
CSS2H-3920R-L500F
型号: CSS2H-3920R-L500F
厂家: BOURNS ELECTRONIC SOLUTIONS    BOURNS ELECTRONIC SOLUTIONS
描述:

Fixed Resistor, Metal Alloy, 9W, 0.0005ohm, 1% +/-Tol, 50ppm/Cel, 4020

电阻器
文件: 总4页 (文件大小:555K)
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  
n Excellent long term stability  
n Low resistance, low TCR  
n Low thermal EMF  
n RoHS compliant* and halogen free**  
n AEC-Q200 compliant  
R
0
2
9
3
%
5
1
0
7
0
1
3
L
4
n Frequency converters  
n Industrial  
ꢀꢀ  
ModelꢀCSS2H-3920ꢀSeriesꢀCurrentꢀSenseꢀResistor  
Electrical Characteristics  
How to Order  
CSS 2H - 3920 R - 1L00 F __  
Characteristic  
Model CSS2H-3920 Series  
Model  
3
CSS2H-3920C-000  
< 0.2 mW / 160 A  
0.2 mW / 12 W / 5 W  
0.3 mW / 10 W / 5 W  
0.5 mW / 9 W / 5 W  
0.7 mW / 8 W / 5 W  
1.0 mW / 8 W / 5 W  
2.0 mW / 6 W / 4 W  
2.5 mW / 5 W / 3.5 W  
3.0 mW / 5 W / 3 W  
4.0 mW / 4 W / 2.5 W  
5.0 mW / 3 W / 2 W  
No. of Terminals  
& Style  
CSS2H-3920R-L200x  
CSS2H-3920R-L300x  
CSS2H-3920R-L500x  
CSS2H-3920R-L700x  
CSS2H-3920R-1L00x  
CSS2H-3920K-2L00x  
CSS2H-3920K-2L50x  
CSS2H-3920K-3L00x  
CSS2H-3920K-4L00x  
CSS2H-3920K-5L00x  
Size  
Material Type  
Resistance Range /  
Power Rating @70 °C /  
Power Rating @130 °C  
(See Part Number Table)  
1
1
Resistance Code (milliohms)  
“L” represents decimal point  
(examples: L500 = .500 milliohms;  
1L00 = 1.00 milliohms)  
Resistance Tolerance  
F = ±1 %  
J = ±5 %  
Operating Temperature Range  
-55 to +170 °C  
±50 PPM/°C (20~60 °C)  
CSS2H-3920R-L200x  
Packaging size  
2
TCR - Resistive Alloy  
Blank = Standard 13 ” reel  
E = Mini 7 ” reel  
CSS2H-3920R-L300x  
CSS2H-3920R-L500x  
CSS2H-3920R-L700x  
CSS2H-3920R-1L00x  
CSS2H-3920K-2L00x  
CSS2H-3920K-2L50x  
CSS2H-3920K-3L00x  
CSS2H-3920K-4L00x  
CSS2H-3920K-5L00x  
±100 PPM/°C  
±75 PPM/°C  
Typical Part Marking  
SIZE  
MATERIAL TYPE  
Temperature Coefficient including  
Copper Terminals  
MANUFACTURER’S  
TRADEMARK  
3920R  
1L00 1%  
1530  
Inductance  
< 3 nH  
±1 %, ±5 %  
RESISTANCE  
TOLERANCE:  
F = 1 %  
RESISTANCE  
CODE  
IN MILLIOHMS:  
“L” = DECIMAL POINT  
Resistance Tolerance  
DATE CODE:  
YYWW  
1
2
3
Terminal temperature  
J = 5 %  
For full TCR range, refer to TCR curve  
Tinned copper  
Environmental Characteristics  
Characteristic  
Test Condition  
DR Max.  
Thermal Shock  
Short Time Overload  
-55 to +150 °C / 2000 Cycles  
5 Times Rated Power for 5 Second Duration  
0.50 %  
0.50 %  
Resistance to Soldering Heat  
High Temperature Exposure  
Low Temperature Storage  
Biased Humidity Test  
Moisture Resistance  
Mechanical Shock  
Vibration, High Frequency  
Load Life  
+260 °C / 10 Seconds  
+170 °C / 2000 Hours  
0.50 %  
1.00 %  
0.10 %  
0.50 %  
0.20 %  
0.20 %  
0.20 %  
1.00 %  
-65 °C / 24 Hours  
+85 °C, 85 %R.H., 1000 Hours  
10 Days with Cold Shock, No Load  
100 g, 6 ms half sine  
20 g, 10-2000 Hz  
2000 Hours, Max. Load, Terminal Temperature 130 °C  
J-STD-002  
Solderability  
95 % Coverage Min.  
ESD  
AEC-Q200-002, 25 kV  
0.25 %  
0.25 %  
Level 1  
6
Board Flex  
60 Sec. Min. Holding Time  
Moisture Sensitivity Level  
ESD Classification (HBM)  
* RoHS Directive 2002/95/EC Jan. 27, 2003 including annex and RoHS Recast 2011/65/EU June 8, 2011.  
**Bourns considers a product to be “halogen free” if (a) the Bromine (Br) content is 900 ppm or less; (b) the Chlorine (Cl) content is 900 ppm or less; and (c) the total Bromine (Br)  
and Chlorine (Cl) content is 1500 ppm or less.  
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.  
ModelꢀCSS2H-3920ꢀSeriesꢀCurrentꢀSenseꢀResistor  
Product Dimensions  
RESISTIVE MATERIAL  
BASE MATERIAL  
COPPER ALLOY C10ꢁ00  
2.00 +0.50/-0.90  
(0.079 +0.020/-0.035)  
Part Number  
Dimension H Dimension Y  
0.92 0.10 0.ꢀ2 0.10  
(0.036 0.00ꢀ) (0.016 0.00ꢀ)  
2.50 0.10 1.20 0.10  
(0.098 0.00ꢀ) (0.0ꢀ7 0.00ꢀ)  
1.80 0.10 1.00 0.10  
(0.071 0.00ꢀ) (0.039 0.00ꢀ)  
1.27 0.10 0.55 0.10  
CSS2H-3920C-000  
Y
0.50 0.ꢁ0  
(0.0ꢁ0 0.0082  
CSS2H-3920R-L200x  
CSS2H-3920R-L300x  
CSS2H-3920R-L500x  
CSS2H-3920R-L700x  
CSS2H-3920R-1L00x  
CSS2H-3920K-2L00x  
CSS2H-3920K-2L50x  
CSS2H-3920K-3L00x  
H
OPTIONAL  
TRIMMING AREA  
ꢁ PLCS.  
(0.050 0.00ꢀ) (0.022 0.00ꢀ)  
1.02 0.10  
(0.0ꢀ0 0.00ꢀ)  
5.ꢁ0 +0.ꢀ0/-0.ꢁ0  
(0.ꢁ05 +0.01ꢁ/-0.0082  
0.92 0.10  
(0.036 0.00ꢀ)  
1.18 0.10  
10.00 0.ꢀ0  
(0.ꢀ94 0.01ꢁ2  
(0.0ꢀ6 0.00ꢀ)  
0.ꢀ2 0.10  
1.0ꢀ 0.10  
(0.016 0.00ꢀ)  
(0.0ꢀ1 0.00ꢀ)  
MM  
DIMENSIONS:  
0.96 0.10  
(0.038 0.00ꢀ)  
(INCHES)  
CSS2H-3920K-4L00x  
CSS2H-3920K-5L00x  
0.25  
TOLERANCES:  
( 0.10)  
0.92 0.10  
(0.036 0.00ꢀ)  
Recommended Measurements  
Recommended Pad Layout  
8.40  
(0.331)  
SENSE TERMINALS  
PROBES  
2.60  
(0.102)  
2.70  
(0.106)  
SOLDER PADS  
1.ꢀ0  
(0.0512  
4.20  
(0.165)  
6.20  
(0.244)  
IA  
IB  
11.00  
(0.433)  
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.  
ModelꢀCSS2H-3920ꢀSeriesꢀCurrentꢀSenseꢀResistor  
TCR Curves  
K-Type Resistive Material  
R-Type Resistive Material  
2.0  
1.5  
1.0  
0.8  
0.6  
0.4  
0.2  
1.0  
0.5  
0
0
-0.2  
-0.4  
-0.5  
-1.0  
-1.5  
-2.0  
Material Chart  
100 ꢀꢀM TCR  
Material Chart  
50 ꢀꢀM TCR  
-0.6  
-0.8  
-1.0  
-55  
-30  
-5  
20  
45  
70  
95  
120  
145  
170  
-55  
-30  
-5  
20  
45  
70  
95  
120  
145  
170  
Temperature (°C)  
Temperature (°C)  
K-Type Resistive Material  
R-Type Resistive Material  
1.0  
2.0  
1.5  
0.8  
0.6  
0.4  
0.2  
1.0  
0.5  
0
-0.2  
-0.4  
0
-0.5  
-1.0  
-1.5  
-2.0  
Material Chart  
50 ꢀꢀM TCR  
Material Chart  
100 ꢀꢀM TCR  
-0.6  
-0.8  
-1.0  
-55  
-30  
-5  
20  
45  
70  
95  
120  
145  
170  
-55  
-30  
-5  
20  
45  
70  
95  
120  
145  
170  
Temperature (°C)  
Temperature (°C)  
Power Derating Curves  
@70 °C  
@130 °C  
120  
120  
100  
80  
60  
ꢀ0  
20  
0
130 °C  
70 °C  
100  
80  
60  
ꢀ0  
20  
0
0
20  
ꢀ0  
60  
80  
100  
120  
1ꢀ0  
160  
180  
0
20  
ꢀ0  
60  
80  
100  
120  
1ꢀ0  
160  
180  
Terminal Temperature (°C)  
Terminal Temperature (°C)  
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.  
ModelꢀCSS2H-3920ꢀSeriesꢀCurrentꢀSenseꢀResistor  
Maximum Pulse Power  
Maximum Pulse Energy  
10000  
1000  
100  
Energy (J)  
0.2 mΩ  
Energy (J)  
2 mΩ  
Power (W)  
0.2 mΩ  
Power (W)  
2 mΩ  
1000  
100  
10  
1
0.1  
10  
1
0.01  
0.001  
0.00001  
0.0001  
0.001  
0.01  
0.1  
1
10  
100  
0.00001  
0.0001  
0.001  
0.01  
0.1  
1
10  
100  
Pulse Width (Seconds)  
Pulse Width (Seconds)  
Packaging Specifications  
0.25  
(0.010)  
Components packaged on plastic tape & reel per EIA-481.  
Standard Reel Size: 13 inches  
Tape Width:  
Quantity:  
16 mm  
3,000 pcs. per reel  
COMPONENT  
ORIENTATION  
Mini-Reel Size:  
Tape Width:  
Quantity:  
7 inches  
16 mm  
1000 pcs. per reel  
0.61  
(0.024)  
TOP COVER TAPE  
MM  
(INCHES)  
DIMENSIONS:  
EMBOSSED  
CARRIER  
MATTE  
FINISH  
Asia-Pacific: Tel: +886-2 2562-4117 • Email: asiacus@bourns.com  
EMEA: Tel: +36 88 520 390 • Email: eurocus@bourns.com  
The Americas: Tel: +1-951 781-5500 • Email: americus@bourns.com  
www.bourns.com  
REV. 01/18  
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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