50 μΩ Bolt-on shunt resistor With Two Sense Pins

Description

Overview

50 μΩ bolt-on shunt resistor with two sense pins offers high-precision current sensing for demanding DC applications. Made from premium manganin alloy, it ensures low temperature coefficient (TCR) and stable resistance over time, minimizing measurement errors. The bolt-on terminals allow for easy and secure installation in battery management systems, power supplies, and industrial equipment.

Feature

High power to resistor size ratio
• Proprietary processing technique produces
extremely low resistance values
• All welded construction
• Solid metal manganese-copper alloy resistive
element with low TCR (< 50 ppm/°C)
• Very low inductance (< 5 nH)
• Low thermal EMF (< 3 μV/°C)
• Material categorization: for definitions of compliance

Specification

ParameterValue
Resistance Value50 μΩ
TCR (Temperature Coefficient)≤ ±50 ppm/°C
Accuracy Class±0.5%
Maximum Current RatingDepends on model (e.g., 100A)
Operating Temperature Range-40°C to +125°C
MaterialManganin Alloy
Mounting StyleBolt-on Terminals
Sense PinsTwo (Kelvin connection)
Dimensions (L×W×H)customize
Power Rating50W

Bolt-on-resistor

Product Size

bolt-on resistor

ModelL (mm)D (mm)A (mm)B (mm)F (mm)M
FL3-6918-A-100μΩ69±0.518±0.552±0.518±0.53±0.2φ7.0×2 M4×2

size-bolt-on-resistor

ModelL (mm)D (mm)L1 (mm)A (mm)F (mm)MCB1 (mm)B2 (mm)
FL3-6918-B-50μΩ69±0.518±0.552±0.57±0.53.0±0.5φ7.0×21×14±0.16±0.15

Electrical performance:

ParameterValue
Rated Current300A
Accuracy Class0.2%、0.5%、1%、2%、5%
T.C.R (ppm/℃ at 20℃~60℃)≤50
Manganese Copper MaterialGB 6J12 precision manganese copper
Copper MaterialGB T2 Y2
Operating Temperature Range-55℃ ~ +170℃

Typical Applications Include:

  • DC Power Distribution Systems
    Accurate current monitoring in battery banks, busbars, and load distribution panels.

  • Inverter and Converter Systems
    Suitable for Variable Frequency Drives (VFDs), solar inverters, and EV motor controllers.

  • Battery Management Systems (BMS)
    Enables real-time current tracking in lithium-ion battery packs and energy storage systems.