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FCR2WSGB-FKK0R

Description
Fixed Resistor, Carbon Film, 2W, 0ohm, 500V, 2% +/-Tol,
CategoryPassive components    The resistor   
ManufacturerYAGEO
Websitehttp://www.yageo.com/
Environmental Compliance
Download Datasheet Parametric View All

FCR2WSGB-FKK0R Overview

Fixed Resistor, Carbon Film, 2W, 0ohm, 500V, 2% +/-Tol,

FCR2WSGB-FKK0R Parametric

Parameter NameAttribute value
Is it Rohs certified?conform to
Objectid746703374
Reach Compliance Codecompliant
Country Of OriginMainland China, Taiwan
ECCN codeEAR99
YTEOL6.2
structureCylindrical
Lead diameter0.8 mm
Number of terminals2
Maximum operating temperature155 °C
Minimum operating temperature-55 °C
Package diameter4.5 mm
Package length11.5 mm
Package shapeCYLINDRICAL PACKAGE
Package formAxial
method of packingBulk
Rated power dissipation(P)2 W
resistance
Resistor typeJUMPER
technologyCARBON FILM
Tolerance2%
Operating Voltage500 V

FCR2WSGB-FKK0R Preview

Leaded ResistoRs
Carbon Film Resistors
Flame-Proof Type
Normal & Miniature Style [ FCR Series ]
FeatURes
Power Rating
Resistance Tolerance
T.C.R.
Flameproof Multi-layer Coating Meets
Flameproof Feature Meets Overload Test
1/4W, 1/2W, 1W, 2W, 3W
±2%, ±5%
see Table 1
UL-94V-0
UL-1412
deRatiNG CURVe
iNtRodUCtioN
The FCR Series Carbon Film Flame-Proof
Resistors are manufactured by coating a
homogeneous film of pure carbon on high
grade ceramic rods. After a helical groove has
been cut in the resistive layer, tinned connecting
leads of electrolytic copper are welded to the
end-caps. The resistors are coated with layers
of gray color lacquer.
For resistors operated in ambient temperatures above 70°C, power rating must be derated
in accordance with the curve below.
Rated Load (%)
70
100
80
60
40
20
20
40
60
80
100 120 140 160
155 °C
Ambient Temperature (°C)
taBLe 1 teMPeRatURe CoeFFiCieNt
stYLe
Max. VaLUe oF teMP. CoeFFiCieNt PPM/°C
under 100K
Ω
FCR100, FCR200, FCR2WS, FCR3WS
FCR-25, FCR-50, FCR50S, FCR1WS
±350
+350 / -500
100K
Ω
- 1M
Ω
-500
-700
1M
Ω
- 10M
Ω
-1,500
-1,500
diMeNsioNs
stYLe
Normal
ød
H
L
th color code: black
øD
FCR-25
FCR-50
FCR100
FCR200
Miniature
FCR50S
FCR1WS
FCR2WS
FCR3WS
diMeNsioN
L
6.3±0.5
9.0±0.5
11.5±1.0
15.5±1.0
ød
2.4±0.2
3.3±0.3
4.5±0.5
5.0±0.5
H
28±2.0
26±2.0
35±2.0
33±2.0
Unit: mm
ød
0.55±0.05
0.55±0.05
0.8±0.05
0.8±0.05
3
Note:
eLeCtRiCaL CHaRaCteRistiCs
stYLe
Power Rating at 70°C
Maximum Working Voltage
Maximum Overload Voltage
Voltage Proof
Resistance Range
Operating Temp. Range
Temperature Coefficient
FCR-25
1/4W
250V
500V
400V
FCR50s
1/2W
300V
600V
350V
700V
500V
FCR-50
FCR1Ws
1W
400V
800V
600V
500V
1,000V
750V
FCR100
FCR2Ws
2W
FCR200
FCR3Ws
3W
1
Ω
- 10M
Ω
& 0
Ω
for E24 series value
-55°C to +155°C
see Table 1
Note: Special value is available on request
eNViRoNMeNtaL CHaRaCteRistiCs
PeRFoRMaNCe test
Short Time Overload
Voltage Proof
Temperature Coefficient
Insulation Resistance
Solderability
Solvent Resistance of Marking
Robustness of Terminations
Periodic-pulse Overload
Damp Heat Steady State
Endurance at 70°C
Temperature Cycling
Resistance to Soldering Heat
Accidental Overload Test
test MetHod
IEC 60115-1 4.13
IEC 60115-1 4.7
IEC 60115-1 4.8
IEC 60115-1 4.6
IEC 60115-1 4.17
IEC 60115-1 4.30
IEC 60115-1 4.16
IEC 60115-1 4.39
IEC 60115-1 4.24
IEC 60115-1 4.25
IEC 60115-1 4.19
IEC 60115-1 4.18
IEC 60115-1 4.26
2.5 times RCWV for 5 Sec.
in V-block for 60 Sec., test voltage by type
-55°C to +155°C
in V-block for 60 Sec.
235±5°C for 3±0.5 Sec.
IPA for 5±0.5 Min. with ultrasonic
Direct load for 10 Sec. in the direction of the terminal leads
4 times RCWV 10,000 cycles (1 Sec. on, 25 Sec. off)
40±2°C, 90-95% RH for 56 days, loaded with 0.1 times RCWV
70±2°C at RCWV for 1,000 Hr. (1.5 Hr. on, 0.5 Hr. off)
-55°C
Room Temp.
+155°C
Room Temp. (5 cycles)
260±3°C for 10±1 Sec., immersed to a point 3±0.5mm from the body
4 times RCWV for 1 Min.
aPPRaise
±0.75%+0.05
Ω
By type
By type
>1,000M
Ω
95% Min. coverage
No deterioration of
coatings and markings
≥2.5kg (24.5N)
±1.0%+0.05
Ω
±3.0%+0.05
Ω
±3.0%+0.05
Ω
±1.0%+0.05
Ω
±1.0%+0.05
Ω
No evidence of flaming
or arcing
Note: Rated Continuous Working Voltage (RCWV) =
Power Rating x Resistance Value

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