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CR0201-FW-2200GLF

Description
Thick Film Resistors - SMD CHIP RESISTOR
CategoryPassive components    The resistor   
File Size261KB,2 Pages
ManufacturerBourns
Websitehttp://www.bourns.com
Environmental Compliance
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CR0201-FW-2200GLF Overview

Thick Film Resistors - SMD CHIP RESISTOR

CR0201-FW-2200GLF Parametric

Parameter NameAttribute value
Is it lead-free?Lead free
Is it Rohs certified?conform to
MakerBourns
package instructionSMT, 0201
Reach Compliance Codecompliant
ECCN codeEAR99
Factory Lead Time12 weeks
Samacsys DescriptionThick Film Resistors - SMD CHIP RESISTOR
structureRECTANGULAR PACKAGE
JESD-609 codee3
Installation featuresSURFACE MOUNT
Number of terminals2
Maximum operating temperature125 °C
Minimum operating temperature-55 °C
Package height0.23 mm
Package length0.6 mm
Package formSMT
Package width0.3 mm
method of packingTR, Paper, 7 Inch
Rated power dissipation(P)0.05 W
Rated temperature70 °C
resistance220 Ω
Resistor typeFIXED RESISTOR
size code0201
surface mountYES
technologyMETAL GLAZE/THICK FILM
Temperature Coefficient200 ppm/°C
Terminal surfaceTin (Sn) - with Nickel (Ni) barrier
Terminal shapeWRAPAROUND
Tolerance1%
Operating Voltage30 V
PL
IA
NT
Features
n
Requires 64 % less space than 0402-size
resistor
n
RoHS compliant*
n
Power rating at 70 °C = 1/20 W
n
Three layer termination process with
nickel barrier prevents leaching and
provides excellent solderability
n
Suitable for most types of soldering
processes
n
Standard packaging on paper tape and
reel
*R
oH
S
C
OM
LE
AD
F
RE
E
CR0201 - Chip Resistor
Derating Curve
Rated power in percentage (%)
Power Rating @ 70 °C ................ 1/20 W
Operating Temperature Range
............................... -55 °C to +125 °C
Derated to 0 Load at .................+125 °C
Maximum Working Voltage..............25 V
Maximum Overload Voltage ............50 V
Resistance Range
1 %, E-96
and E-24 .......10 ohms to 2 megohms
5 %, E-24 ....10 ohms to 10 megohms
Zero Ohm Jumper ............<0.05 ohms
Temperature Coefficient
1 % and 5 % ................. ±200 ppm/°C
Zero Ohm Jumper
......................... N/A
Zero Ohm Jumper
Rated Current..............................0.5 A
Maximum Overload Current ...........1 A
AEC-Q200 ..................... Contact Bourns
to confirm availability
For Standard Values Used in Capacitors,
Inductors, and Resistors,
click here.
Electrical Characteristics
Ro VE LEA
HS RS D
C ION FRE
OM S E
PL AR
IA E
NT
*
100
80
60
40
20
0
-55
0
70
125
Dimensional Drawings
0.12 ± 0.05
(0.005 ± 0.002)
0.23 ± 0.03
(0.009 ± 0.001)
Resistor (Ru0
2
)
(Jumper chip is
a conductor)
Overcoat
Part Marking System
No Marking on the CR0201 Chip
Resistors.
0.15 ± 0.05
(0.006 ± 0.002)
0.60 ± 0.03
(0.024 ± 0.001)
0.30 ± 0.03
(0.012 ± 0.001)
Alumina Substrate
Internal Electrode
Secondary Electrode (Nickel Plated)
External Electrode (Sn)
DIMENSIONS:
MM
(INCHES)
How to Order
Model
(CR = Chip Resistor)
Size
• 0201
Resistance Tolerance
F = ±1 % .................. For values from 10 ohms through 2 megohms
J = ±5 % ................... For values from 10 ohms through 10 megohms, and for zero ohm jumper
TCR (ppm/°C)
W = ±200 .................. Used with “F” and “J” Resistance Tolerance code for all values except zero ohm jumper
/ = N/A .................... Used with zero ohm jumper only
Resistance Value
For 1 % Tolerance:
<100 ohms ................ “R” designates 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)
For 5 % Tolerance:
≥10
ohms .................. First two digits are significant, third digit represents number of zeros to follow (example: 474 = 470k ohms; 000 = Jumper)
Packaging
G = Paper Tape (10,000 pcs.) on 7-inch Plastic Reel
Termination
LF = Tin-plated (RoHS compliant)
CR 0201 - F W - 8252 G LF
*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.
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