CRM2010-FW-R100ELF [BOURNS]

CRM0805/1206/2010 Chip Resistors; CRM0805 / 2010分之1206贴片电阻
CRM2010-FW-R100ELF
型号: CRM2010-FW-R100ELF
厂家: BOURNS ELECTRONIC SOLUTIONS    BOURNS ELECTRONIC SOLUTIONS
描述:

CRM0805/1206/2010 Chip Resistors
CRM0805 / 2010分之1206贴片电阻

文件: 总3页 (文件大小:300K)
中文:  中文翻译
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Features  
Applications  
Power supplies  
Stepper motor drives  
Thick film technology  
Power rating of 0.25, 0.5 or 1 watt at 70 °C  
Strong pulse performance  
RoHS compliant*  
CRM0805/1206/2010 Chip Resistors  
Electrical Characteristics  
Characteristic  
General Information  
®
Bourns CRM Series are thick film chip  
Model  
Model  
Model  
resistors with high power ratings making  
them suitable for different applications in  
power supply circuits including current  
sensing, current limiting and high pulse  
resistance.  
CRM0805  
CRM1206  
CRM2010  
Power Rating @ 70 °C  
Operating Temperature Range  
Derated to Zero Load at  
0.25 W  
0.5 W  
-55 °C to +155 °C  
+155 °C  
1 W  
Maximum Working Voltage  
47 mohms to 910 mohms  
1 ohm to 1 megohm  
Insulation Resistance  
Resistance Range  
Characteristic Data  
551 mV  
150 V  
675 mV  
200 V  
>1000 megohms  
954 mV  
200 V  
Test  
ΔR Max.  
Load Life (1000 hoursꢂ  
Rated Voltage @ 70 °C  
(1.5 hrs. on, 0.5 hrs. offꢂ  
1 ꢀ Tolerance  
47 mohms to 910 mohms ( 1 ꢀ and 5 ꢀ, ꢁ24 Seriesꢂ  
1 ohm to 1 megohm ( 1 ꢀ, ꢁ96 Seriesꢂ  
0 ohm, 1 ohm to 1 megohm ( 5 ꢀ, ꢁ24 Seriesꢂ  
< 1 ꢀ  
< 3 ꢀ  
5 ꢀ Tolerance  
Resistance Tolerance  
1 ꢀ, 5 ꢀ  
Short Term Overload  
(5 X Rated Power for 5 sec.ꢂ  
1 ꢀ Tolerance  
Temperature Coefficient  
47 mohms to 91 mohms  
( 1 ꢀ and 5 ꢀ, ꢁ24 Seriesꢂ  
< 1 ꢀ  
< 2 ꢀ  
(1ꢂ  
(2ꢂ  
(1ꢂ  
200 ppm  
100 ppm  
100 ppm  
100 ppm  
5 ꢀ Tolerance  
100 mohms to 910 mohms  
Thermal Shock  
(2ꢂ  
( 1 ꢀ and 5 ꢀ, ꢁ24 Seriesꢂ  
100 ppm  
100 ppm  
100 ppm  
100 ppm  
100 ppm  
(5 Cycles: -55 °C/30 min.;  
+25 °C/2-3 min.; +155 °C/  
30 min.; +25 °C/2-3 min.ꢂ  
1 ꢀ Tolerance  
1 ohm to 1 megohm  
( 1 ꢀ, ꢁ96 Seriesꢂ  
(3ꢂ  
100 ppm  
100 ppm  
0 ohm, 1 ohm to 1 megohm  
< 0.5 ꢀ  
< 1 ꢀ  
( 5 ꢀ, ꢁ24 Seriesꢂ  
200 ppm  
5 ꢀ Tolerance  
ꢁxceptions:  
(1ꢂ  
47 mohms to 91 mohms (-25 °C to +55 °Cꢂ: 150 ppm (CRM2010ꢂ, 200 ppm (CRM1206ꢂ  
100 mohms to 910 mohms (-25 °C to +55 °Cꢂ: 150 ppm (CRM0805ꢂ  
1 ꢀ, 1 ohm to 9.76 ohms (-55 °Cꢂ: 150 ppm (CRM0805ꢂ  
For Standard Values Used in Capacitors,  
Inductors and Resistors, click here.  
(2ꢂ  
(3ꢂ  
Product Dimensions  
L
Model  
L
W
C
D
T
2.00 0.15  
1.20 0.15  
0.40 0.20  
0.40 0.20  
0.50 0.10  
CRM0805  
CRM1206  
CRM2010  
W
(0.079 0.006ꢂ (0.047 0.006ꢂ (0.016 0.008ꢂ (0.016 0.008ꢂ (0.020 0.04ꢂ  
3.10 0.15  
(0.122 0.006ꢂ (0.063 0.006ꢂ (0.020 0.010ꢂ (0.020 0.010ꢂ (0.022 0.004ꢂ  
5.00 0.20 2.50 0.20 0.60 0.25 0.60 0.25 0.60 0.10  
(0.197 0.008ꢂ (0.098 0.008ꢂ (0.024 0.010ꢂ (0.024 0.010ꢂ (0.024 0.004ꢂ  
1.60 0.15  
0.50 0.25  
0.50 0.25  
0.55 0.10  
T
C
D
Recommended Solder Pad Layout  
L
B
Model  
A
B
L
1.3  
1.15  
1.2  
CRM0805  
(0.051ꢂ  
(0.045ꢂ  
(0.047ꢂ  
A
1.8  
1.3  
2.1  
CRM1206  
CRM2010  
(0.071ꢂ  
(0.051ꢂ  
(0.083ꢂ  
3.0  
1.5  
3.8  
Cu TRACE  
(0.118ꢂ  
(0.059ꢂ  
(0.149ꢂ  
SENSING TRACE  
MM  
(INCHES)  
DIMENSIONS:  
*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.  
Customers should verify actual device performance in their specific applications.  
CRM0805/1206/2010 Chip Resistors  
Soldering Profile  
Derating Curve  
275  
<1>  
Maximum of 20 seconds between  
+255 °C and +260 °C  
260 °C peak  
<1>  
255 °C  
225  
175  
125  
75  
100  
220 °C  
190 °C  
90 - 150  
seconds  
Ramp Down  
6 °C/second  
150 °C  
60 - 120 seconds  
10 seconds minimum  
-55  
70  
155  
Ramp Up  
3 °C/second maximum  
Ambient Temperature (°C)  
25  
0
50  
100  
150  
Time (seconds)  
200  
250  
300  
Pulse Voltage Curve  
10000  
1000  
100  
10  
CRM2010  
CRM1206  
CRM0805  
1
10  
100  
1000  
10000  
100000  
RESISTANCE (OHMS)  
Test Method: 1.2/50 μs Waveform with 12 Ohm Resistor, 5 Pulses at 12 Second Intervals  
Specifications are subject to change without notice.  
Customers should verify actual device performance in their specific applications.  
CRM0805/1206/2010 Chip Resistors  
How to Order  
CRM 2010 - F X - R100 E LF  
Model  
(CRM = Precision Chip Resistor)  
Size  
0805 = 0805 Size  
1206 = 1206 Size  
2010 = 2010 Size  
Resistance Tolerance  
• F = 1 ꢀ  
• J = 5 ꢀ  
TCR (PPM/°C)  
• W = 200 PPM/°C  
• Z = 150 PPM/°C  
• X = 100 PPM/°C  
Resistance Value  
R <1 ohm (1 ꢀ or 5 ꢀ Tolerance: “R” (decimal point) followed by three significant digits (example: R100 = 0.100 ohm  
1ꢀ Tolerance:  
<100 ohms .......R” represents decimal point (example: 24R3 = 24.3 ohms)  
100 ohms.......First three digits are significant, fourth digit represents number of zeros to follow  
(example: 8252 = 82.5K ohms)  
5ꢀ Tolerance:  
<10 ohms .........R” represents decimal point (example: 4R7 = 4.7 ohms)  
10 ohms.........First two digits are significant, third digit represents number of zeros to follow  
(example: 474 = 470K ohms)  
Packaging  
• E = 5000 pieces on 180 mm (7 inch) reel - CRM0805, CRM1206  
4000 pieces on 180 mm (7 inch) reel - CRM2010  
Termination  
• LF = Tin-plated (RoHS Compliant)  
Packaging Dimensions (Conforms to EIA RS-481A)  
4.0 0.1  
(.157 .004)  
13.0 1.0  
(0.512 0.039)  
ꢀ.0 0.05  
(.079 .00ꢀ)  
B
DIA.  
A
180 +0/-3  
(7.09 +0/-0.118)  
DIA.  
F
60.0  
(2.362)  
MIN.  
DIA.  
W
1.75 0.1  
(.059 .004)  
1.5 +0.1/-0  
(.056 + .004/-0)  
P
0
15.4 2.0  
(0.606 0.079)  
Maximum 1 mm (.040) thick  
* Cumulative over 10 holes: 0.ꢀ mm  
13.0 1.0  
(0.512 0.039)  
MM  
(INCHES)  
DIMENSIONS:  
Model  
A
B
F
W
2.40 0.20  
1.65 0.20  
3.50 0.05  
8.00 0.30  
CRM0805  
(0.094 0.008) (0.065 0.008) (0.138 0.002) (0.315 0.012)  
3.57 0.20  
(0.141 0.008) (0.079 0.008) (0.138 0.002) (0.315 0.012)  
5.50 0.20 2.80 0.20 5.50 0.05 12.00 0.30  
(0.217 0.008) (0.110 0.008) (0.217 0.002) (0.472 0.012)  
2.00 0.20  
3.50 0.05  
8.00 0.30  
CRM1206  
CRM2010  
REV. 01/13  
Specifications are subject to change without notice.  
Customers should verify actual device performance in their specific applications.  

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