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RC0603 Fiches technique(PDF) 4 Page - TAITRON Components Incorporated

No de pièce RC0603
Description  Thick Film Chip Resistor General Purpose
Download  8 Pages
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Fabricant  TAITRON [TAITRON Components Incorporated]
Site Internet  http://www.taitroncomponents.com
Logo TAITRON - TAITRON Components Incorporated

RC0603 Fiches technique(HTML) 4 Page - TAITRON Components Incorporated

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Rev. C/JJ 2007-08-10
www.taitroncomponents.com
Page 4 of 8
Thick Film Chip Resistor – General Purpose
RC0603
Test and Requirements
Requirement
Test Item
Test Method
Test Condition
±1%
±5%
Jumper
Temperature
Coefficient of
Resistance(T.C.R.)
JIS C 5201 4.8
IEC 60115-1 4.8
-55°C~+155,20°C is
the reference
temperature
Within the specification
Short Time
Overload
JIS C 5201 4.13
IEC 60115-1 4.13
2.5 times RCWV or max.
overload voltage for 5
seconds
±(1.0%+0.05Ω)
±(2.0%+0.05Ω)
<50mΩ
Insulation
Resistance
JIS C 5201 4.6
IEC 60115-1 4.6
Max. overload voltage
for 1 minute
≥10G
Voltage Proof
JIS C 5201 4.7
IEC 60115-1 4.7
1.42 times RCWV
(RMS) for 1 minute
no breakdown or flashover
Substrate Bending
Test
JIS C 5201 4.33
IEC 60115-1 4.33
Bending once with 5
seconds for 3 mm
±(1.0%+0.05Ω)
±(1.0%+0.05Ω)
<50mΩ
Resistance to
soldering heat
JIS C 5201 4.18
IEC 60115 4.18
260±5°C for 10 seconds
±(0.5%+0.05Ω)
±(1.0%+0.05Ω)
<50mΩ
Leaching
JIS C 5201 4.18
IEC 60115 4.18
260±5°C for 60 seconds
no leaching
Solderability
JIS C 5201 4.17
IEC 60115-1 4.17
245±5°C for 3 seconds.
>95% coverage
Endurance at upper
category
temperature
JIS C 5201 4.23
IEC 60115-1 2.23.2
at +155°C for 1000 hrs
±(1.0%+0.05Ω)
±(1.5%+0.10Ω)
<50mΩ
Rapid change of
temperature
JIS C 5201 4.19
IEC 60115-1 4.19
-55°C to +155°C, 5
cycles
±(0.5%+0.05Ω)
±(1.0%+0.05Ω)
<50mΩ
Damp heat with
load
JIS 5201 4.24
40±2°C, 90~95% R.H.
or max. working voltage
for 1000 hrs
with 1.5hrs “ON” and 0.5
hrs “OFF”
±(2.0%+0.10Ω)
±(3.0%+0.10Ω)
<100mΩ
Endurance
JIS C 5201 4.25
IEC 60115-1 4.25.1
70±2°C, RCWV or Max.
working voltage for 1000
hrs with 1.5 hrs
“ON” and 0.5 hrs “OFF”
±(2.0%+0.10Ω)
±(3.0%+0.10Ω)
<100mΩ
Note: RCWV:Rated Continuous Working Voltage.
RCWV=
Rated power (W) × Resistance value (R)


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