Manganin Alloy Bolt-On Shunt Resistor for DC Current Measurement

Description

Overview

High Current Bolt-On Shunt Resistor for Precision DC Current Sensing

This bolt-on shunt resistor is designed for high-current DC measurement applications where accuracy, stability, and long-term reliability are critical. It provides a precise millivolt output by creating a controlled voltage drop across a low resistance element, enabling accurate current monitoring in battery systems, power supplies, and industrial equipment.

Our high current shunt resistor features a precision manganin alloy (manganese copper) sensing element combined with high-conductivity copper terminals, delivering excellent thermal stability, low resistance drift, and consistent performance under continuous current loads.

The 50 μΩ bolt-on shunt resistor with two sense pins is optimized for precision current sensing applications requiring low TCR, minimal thermal EMF, and reliable signal measurement. The secure bolt-on mounting structure ensures strong mechanical connection and efficient heat dissipation, making it suitable for battery management systems (BMS), energy storage systems, DC power supplies, and industrial control applications.

Key Features of Bolt-On Shunt Resistor

Precision Low Resistance Design

  • Available in ultra-low resistance values for high-current measurement
  • 50μΩ shunt resistor design minimizes voltage loss and power consumption
  • Supports accurate current sensing in demanding DC applications

Manganin Alloy Sensing Element

  • High-quality manganese copper alloy provides excellent resistance stability
  • Low temperature coefficient (TCR ≤ ±50 ppm/°C)
  • Minimizes measurement errors caused by temperature variation

Robust Bolt-On Structure

  • Solid metal construction with welded assembly
  • Secure mechanical mounting for high-current applications
  • Improved heat transfer and long-term reliability

Electrical Performance

  • Very low inductance (<5 nH) for fast switching applications
  • Low thermal EMF (<3 μV/°C)
  • Suitable for precision current measurement systems

Common Challenges in High Current Measurement

Resistance Drift at High Temperature

High current operation generates heat, which may cause resistance variation and inaccurate current measurement.

Poor Connection Reliability

Traditional wire-based shunts may experience loose connections or increased contact resistance.

Limited Measurement Accuracy

Incorrect resistor selection can lead to voltage measurement errors in BMS and power systems.

Space and Thermal Management Issues

High-power applications require compact structures with efficient heat dissipation


How Our Bolt-On Shunt Resistor Solves These Challenges

Secure Bolt-On Installation

The screw-mounted structure provides reliable electrical connection and mechanical stability.

Stable Manganin Resistance Element

The manganin alloy design ensures low TCR and consistent resistance performance.

High Current Capability

Designed for continuous current operation while maintaining accurate voltage output.

Long-Term Industrial Reliability

Suitable for demanding applications including battery systems, energy storage, and industrial equipment.

Specification

Parameter Value
Resistance Value 50 μΩ
TCR (Temperature Coefficient) ≤ ±50 ppm/°C
Accuracy Class ±0.5%
Maximum Current Rating Depends on model (e.g., 100A)
Operating Temperature Range -40°C to +125°C
Material Manganin Alloy
Mounting Style Bolt-on Terminals
Sense Pins Two (Kelvin connection)
Dimensions (L×W×H) customize
Power Rating 50W

bolt-on-shunt-resistor

 

Product Size

bolt-on resistor

Model L (mm) D (mm) A (mm) B (mm) F (mm) M
FL3-6918-A-100μΩ 69±0.5 18±0.5 52±0.5 18±0.5 3±0.2 φ7.0×2 M4×2

size-bolt-on-resistor

Model L (mm) D (mm) L1 (mm) A (mm) F (mm) M C B1 (mm) B2 (mm)
FL3-6918-B-50μΩ 69±0.5 18±0.5 52±0.5 7±0.5 3.0±0.5 φ7.0×2 1×1 4±0.1 6±0.15

Manganin Alloy Material for Precision Shunt Measurement

Manganin alloy is widely used in precision shunt resistors due to its low temperature coefficient, stable resistance characteristics, and excellent long-term reliability. Combined with copper terminals, it provides both accurate sensing performance and efficient current conduction.

Electrical performance:

Parameter Value
Rated Current 300A
Accuracy Class 0.2%、0.5%、1%、2%、5%
T.C.R (ppm/℃ at 20℃~60℃) ≤50
Manganese Copper Material GB 6J12 precision manganese copper
Copper Material GB T2 Y2
Operating Temperature Range -55℃ ~ +170℃

For more technical background on current shunt measurement principles, you may refer to
Shunt resistor principle in electrical engineering:https://en.wikipedia.org/wiki/Shunt_(electrical)

Operating Conditions

  • Operating temperature: -40°C to +120°C
  • Suitable for high-current DC systems
  • Designed for industrial and energy environments
  • Resistant to vibration and thermal stress

Why Choose a Bolt-On Shunt Resistor for High-Current Sensing?

Bolt-on Shunt resistors offer superior mechanical strength and electrical stability, making them ideal for applications that require:

  • Secure fastening with screw terminals

  • Low-resistance, low-inductance current paths

  • High thermal conductivity

  • Robust performance under vibration and shock

The dual sense pins guarantee accurate Kelvin measurements, reducing errors caused by lead resistance.

Applications of Bolt-On Shunt Resistor

  • Battery Management Systems (BMS)
  • Battery Energy Storage Systems (BESS)
  • EV charging equipment
  • DC power supplies
  • Solar energy systems
  • Industrial power monitoring
  • Smart energy meters
  • Motor control systems

Looking for more current sensing and power testing solutions?
Explore our DC ammeter shunt resistor series  designed for industrial and energy applications.

Need a Custom Bolt-On Shunt Resistor?

  • Custom current range available
  • Fast sample support
  • Engineering assistance for your application

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