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quality High voltage precision resistor RESI HVLR1905J1M80K9 with low voltage coefficient and stable control factory
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quality High voltage precision resistor RESI HVLR1905J1M80K9 with low voltage coefficient and stable control factory
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Specifications
Type:
Thick Film Resistor
Resistance:
1.8MΩ
Voltage-Supply(Max):
3.5kV
Power(Watts):
1W
Temperature Coefficient:
±100ppm/℃
Tolerance:
±5%
Operating Temperature:
-55℃~+175℃
Mfr. Part #:
HVLR1905J1M80K9
Package:
Through Hole,D6.5xL19mm
Key Attributes
Model Number: HVLR1905J1M80K9
Product Description

Product Description

The HVLR series of precision non-inductive high-voltage resistors are manufactured using thick film technology and proprietary electronic paste developed by CBEURKA. Utilizing an alumina ceramic rod as a substrate, these resistors are produced through a precision manufacturing process from screen printing to final testing. They offer a temperature coefficient within 100ppm/ in the range of -25 to +125, with a maximum achievable accuracy of 0.1% and a typical voltage coefficient of 0.01ppm/V. The low voltage coefficient is a key indicator of the electronic paste's quality and the manufacturing process. Each resistor undergoes 100% high-voltage testing before shipment to ensure performance under high voltage conditions. The core materials and processes are independently controlled, ensuring stable quality and timely delivery. These resistors are ideal for applications requiring high precision, high voltage, low voltage coefficient, and high reliability.

Applications:

  • Medical Equipment
  • Electrical Equipment
  • Instrumentation
  • Automotive Electronics
  • Test and Measurement Equipment
  • Precision Power Supplies
  • Military and Aerospace

Product Attributes

  • Brand: CBEURKA ()
  • Origin: Shenzhen, China
  • Material: Alumina Ceramic Rod substrate, proprietary electronic paste
  • Certifications: IEC60115-1-2008, MIL-STD-202 Method 108, MIL-STD-202 Method 106, MIL-STD-202 Method 213, MIL-STD-202 Method 204, MIL-STD-202 Method 107, AEC-Q200 TEST 18

Technical Specifications

SeriesModel ExampleResistance RangePower Rating (+125)Max Working Voltage*AccuracyTemperature CoefficientOperating Temperature RangeVoltage Coefficient (Typical)Weight (g)
HVLRHVLR1505F100MK91K~1G0.7W26V1.0%100ppm/-55~+1750.01ppm/V1.701
HVLRHVLR1905F100MK91K~1G1.0W37V1.0%100ppm/-55~+1750.01ppm/V1.931
HVLRHVLR2505F100MK91K~1G1.2W59V1.0%100ppm/-55~+1750.01ppm/V2.451
HVLRHVLR2408F100MK91K~1G2.0W84V1.0%100ppm/-55~+1750.01ppm/V5.162
HVLRHVLR3908F100MK91K~1G3.0W118V1.0%100ppm/-55~+1750.01ppm/V7.572
HVLRHVLR5208F100MK91K~1G5.0W187V1.0%100ppm/-55~+1750.01ppm/V9.582
HVLRHVLR7609F100MK91K~1G7.5W265V1.0%100ppm/-55~+1750.01ppm/V18.602
HVLRHVLR1029F100MK91K~1G10.0W374V1.0%100ppm/-55~+1750.01ppm/V23.632
HVLRHVLR1179F100MK91K~1G11.0W592V1.0%100ppm/-55~+1750.01ppm/V26.242
HVLRHVLR1279F100MK91K~1G12.0W837V1.0%100ppm/-55~+1750.01ppm/V28.562
HVLRHVLR1379F100MK91K~1G13.0W1183V1.0%100ppm/-55~+1750.01ppm/V31.642
HVLRHVLR1529F100MK91K~1G15.0W1323V1.0%100ppm/-55~+1750.01ppm/V34.342

*The maximum working voltage of the resistor should be calculated as the smaller of U=(P*R) and Umax.


2504281715_RESI-HVLR1905J1M80K9_C48603702.pdf

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