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quality Durable FOJAN FRC0603J472 TS thick film chip resistor featuring epoxy protective layer for appliance factory
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quality Durable FOJAN FRC0603J472 TS thick film chip resistor featuring epoxy protective layer for appliance factory
>
Specifications
Resistance:
4.7kΩ
Power(Watts):
100mW
Voltage Rating:
75V
Temperature Coefficient:
±100ppm/℃
Operating Temperature:
-55℃~+155℃
Type:
Thick Film Resistor
Tolerance:
±5%
Mfr. Part #:
FRC0603J472 TS
Package:
0603
Key Attributes
Model Number: FRC0603J472 TS
Product Description

FRC-Series Thick Film Chip Resistor

The FRC-Series Thick Film Chip Resistors are designed for a wide range of applications, offering small size, light weight, and high reliability. They are suitable for use in entertainment systems, appliances, computers, communication equipment, power supplies, illumination, and measuring instruments.

Product Attributes

  • Brand: FOJAN
  • Product Type: Thick Film Chip Resistor
  • Material: Ceramic substrate (Al2O3), Conductive layer (Ag), Resistive layer (RuO2+ glass), Outer Protective layer (Epoxy), Plating (Ni, Matte Tin)

Technical Specifications

Type Rated Power (at 70) Max. Working Voltage Max. Overload Voltage T.C.R. (PPM/) Resistance Range Dimensions (L x W x H) Rated Current of Jumper Max Current of Jumper
0201 1/20W 25V 50V ± 400 (1~10), ± 200 (10~10M) 1~10M 0.60x0.30x0.23 mm 0.5A 1A
0402 1/16W 50V 100V ± 200 (1~10, 10M~22M), ± 100 (10~10M) 1~22M 1.00x0.50x0.35 mm 1A 2A
0603 1/10W 75V 150V ± 200 (1~10, 10M~22M), ± 100 (10~10M) 1~22M 1.60x0.80x0.45 mm 1A 2A
0805 1/8W 150V 300V ± 200 (1~10, 10M~22M), ± 100 (10~10M) 1~22M 2.00x1.25x0.50 mm 2A 5A
1206 1/4W 200V 400V ± 200 (1~10, 10M~22M), ± 100 (10~10M) 1~22M 3.10x1.60x0.55 mm 2A 10A
1210 1/2W 200V 400V ± 200 (1~10, 10M~22M), ± 100 (10~10M) 1~22M 3.10x2.50x0.55 mm 2A 10A
1218 1W 200V 500V ± 200 (1~10), ± 100 (10~1M) 1~1M 3.10x4.60x0.55 mm 6A 10A
1812 3/4W 200V 400V ± 200 (1~10), ± 100 (10~10M) 1~10M 4.50x3.10x0.55 mm 2A 10A
2010 3/4W 200V 400V ± 200 (1~10, 10M~22M), ± 100 (10~10M) 1~22M 5.00x2.50x0.55 mm 2A 10A
2512 1W 200V 400V ± 200 (1~10, 10M~22M), ± 100 (10~10M) 1~22M 6.35x3.10x0.55 mm 2A 10A
Item Test Method Test Conditions Specification
Temperature Coefficient JIS C 5201 4.8 / IEC60115-1-4.8 TCR=R-R0 /t-t0R0 106ppm R0: resistance at room temperature, R: resistance at 125 or -55, t0: room temperature, t: test temperature (125 or -55) As SPEC
Short-time overload JIS C 5201 4.13 / IEC60115-1-4.13 Applied 2.5 times of rated voltage for 5 seconds. Measure the variation of resistance. 0.5%, 1%: ±(1.0%+0.05), 5%: ±(2.0%+0.05)
Solderability JIS C 5201 4.17 / IEC60115-1-4.17 Dip the terminal in a flux and then dip into a soldering bath at 245±5 for 3±0.5sec. >95% coverage
Resist to soldering heat JIS C 5201 4.18 / IEC 60115-1-4.18 Dip the terminal in a flux and then dip into a soldering bath at 260±5 for 10 ± 0.5sec. Measure the variation of resistance. ±(1.00% +0.05)
Insulation resistance JIS C 5201 4.6 / IEC60115-1-4.6 Applied the dielectric withstanding voltage on the center of body for 60± 5seconds. Then measure insulation resistance. >10G
Dielectric withstanding voltage JIS C 5201 4.7 / IEC60115-1-4.7 Applied the dielectric withstanding voltage on the center of body for 60± 5seconds. No evidence of flashover, arcing or insulation breakdown
Terminal bending JIS C 5201 4.33 / IEC60115-1-4.33 Specimen shall be mounted on test board, then bend the board and maintained for 20± 1s. Bending distance: 5+0.2/0 mm (size ≤1206) or 2+0.2/0 mm (size >1206). Measure the variation of resistance. ±(1.00% +0.05)
Rapid temperature changes JIS C 5201 4.19 / IEC60115-1-4.19 Put specimen in a chamber with T1: -55±3; T2: 155±3/125±3, 30min each, repeated 300 cycles. Measure the variation of resistance. 0.5%, 1%: ±(1.0%+0.05), 5%: ±(2.0%+0.05)
Humidity JIS C 5201 4.24 / IEC60115-1-4.24 Temperature 40±2, Humidity 90~95 %RH; Applied rated voltage for 1.5 hours, then power off for 0.5 hours; repeat for 1000 +48/-0 hours. Measure the variation of resistance. (Specification not fully provided in source)

2510101005_FOJAN-FRC0603J472-TS_C2907166.pdf

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