Plug-in PCB Jumper Resistor, Manganese Copper Wire Sampling Shunt Resistor

Product Details
Customization: Available
Resistance: Fixed Resistor
Function for Resistance: Shunt Resistor
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Number of Employees
2
Year of Establishment
2015-03-03
  • Plug-in PCB Jumper Resistor, Manganese Copper Wire Sampling Shunt Resistor
  • Plug-in PCB Jumper Resistor, Manganese Copper Wire Sampling Shunt Resistor
  • Plug-in PCB Jumper Resistor, Manganese Copper Wire Sampling Shunt Resistor
  • Plug-in PCB Jumper Resistor, Manganese Copper Wire Sampling Shunt Resistor
  • Plug-in PCB Jumper Resistor, Manganese Copper Wire Sampling Shunt Resistor
  • Plug-in PCB Jumper Resistor, Manganese Copper Wire Sampling Shunt Resistor
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Basic Info.

Model NO.
HMR
Installation
DIP Resistor
Material
Constant Copper Wire Resistor
Packaging
Throught Hole
Type
Fuse Resistor
Quantity
Single Connection
Shape
U Type
Resistance change scale
Linear Scale
Application
Radio
Brand
Kyx
Operating Ambient Temperature
-55ºC~+125ºC
The Lowest Resistance Is
3mΩ
Resistance Deviation
1% 5% 10%
Diameter
0.5, 0.6, 0.8, 1.0, 1.5, 2.0mm
Transport Package
Carton
Specification
1.2*10mm
Trademark
KYX
Origin
Shenzhen
HS Code
8516800000
Production Capacity
100000000pieces/Year

Product Description

Plug-in PCB Jumper Resistor, Manganese Copper Wire Sampling Shunt Resistor
Plug-in PCB Jumper Resistor, Manganese Copper Wire Sampling Shunt Resistor
Plug-in PCB Jumper Resistor, Manganese Copper Wire Sampling Shunt Resistor
Plug-in PCB Jumper Resistor, Manganese Copper Wire Sampling Shunt Resistor
Plug-in PCB Jumper Resistor, Manganese Copper Wire Sampling Shunt Resistor
Plug-in PCB Jumper Resistor, Manganese Copper Wire Sampling Shunt Resistor
Flame resistant
Inductance less than 10 nanohenry
Solderable copper lead
In some electronic measuring instruments, devices or products, there is often a need to measure the DC current in the circuit, so researchers have developed a variety of current sensing integrated circuits. It is an I/V converter that converts the measured current into a corresponding voltage, V = kI, where k is the proportionality constant. In addition, in some electronic products, the output current should be limited to prevent overcurrent caused by faults (partial short circuit of the load or short circuit of the output terminal, increase of the output voltage of the power supply, etc.) and cause greater loss. When an overcurrent condition is detected, it can be controlled to turn off the power or load switch, or to output with a limited current.

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