What is the Shunt Terminal for Magnetic Latching Relay?

This Shunt Terminal for Magnetic Latching Relay serves as built‑in current‑sensing hardware for magnetic latching relay assemblies. Composite construction combines 6J13 manganin alloy for signal sampling and high‑conductivity copper for terminal connection. Controlled low TCR limits resistance shift under the operating temperature range. Integrated mounting feet support direct installation inside relay housing. Product photos display stamped geometry, welding interface, and finished terminal dimensions for engineering reference. As an in‑house stamping and welding factory for latching relay parts, we produce units against customer drawings. Stable serial output supports medium‑and‑high volume relay production. Evaluation samples can be arranged for prototype verification; freight collected.
Product Specifications of Electricity Meter Shunt
| Item | Parameter |
|---|---|
| Alloy Grade | 6J13 Manganin alloy + high‑conductivity copper |
| TCR Value | ≤±20 ppm/℃ |
| Operating Temperature | -40℃ ~ +85℃ |
| Shock Resistance | 100 m/s², per relay component mechanical test |

Design Features for Stamped EBW Manganin Shunt Parts
Integrated Mounting Legs
Manganin Shunt for Electricity Meter features mounting legs stamped as one piece of the terminal. Dimensions and bend positions can be adjusted to match relay housing and internal supports, unifying electrical terminal and mechanical positioning functions.
Compact Shunt Connection
For Shunt Assembly, stamped compact structure fits the limited inner space of magnetic latching relays. Terminal profile assessment against adjacent conductors, insulators and housing clearance is completed prior to tooling development.
Manganin‑Copper Transition
Manganin‑copper structure divides current‑sensing zone and high‑conductivity connection section. Transition zone is strictly controlled; local geometry, joint quality and cross‑section size directly influence electrical path performance.
Assembly‑Oriented Terminal Profile
Customizable Copper Manganin Shunt Resistor applies terminal geometry designed based on real‑world placement inside latching relays. Mounting legs, bends, contact and sensing sections follow customer CAD data instead of generic terminal standards.

Product Features of Magnetic Relay Shunt Connection
Energy-saving and high-efficiency
The shunt terminal of the magnetic latching relay uses magnetic latching technology to achieve the goal of not needing to continuously supply power after being connected, thereby greatly reducing energy consumption.
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High reliability
The shunt terminal is made of high-quality materials to ensure stable operation in various harsh environments and improve the reliability of the entire system.
02
Quick response
The Magnetic Relay Shunt Connection has a compact design and fast response speed, and can complete the connection and disconnection of the circuit in a short time.
03
Long life
Because the Magnetic Latching Relay Shunt Terminal reduces mechanical wear, its service life far exceeds that of traditional relays.
Easy to integrate
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Easy to integrate
The design of the Magnetic Latching Relay Connector takes into account compatibility with other electronic components, making it easy to integrate into various complex circuit systems.
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Frequently Asked Questions about Quality Manganin Shunt
What is the typical TCR range for your Quality Manganin Shunt?
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Our shunt terminals maintain a tight temperature coefficient of resistance below ±20 ppm/K, ensuring stable current measurement accuracy across fluctuating operating temperatures in enclosed relay devices.
Can you customize the resistance value of Shunt Assembly for specific relay designs?
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Yes, we engineer and stamp terminals to precise resistance targets by adjusting the physical length and cross‑sectional profile of the manganin section to meet your exact circuit specifications.
How do you join the manganin alloy and copper sections?
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We utilize advanced electron beam welding and solid‑state diffusion bonding techniques to create a metallurgical joint that withstands high mechanical stress and prevents joint separation during heavy surges.
What quality certifications apply to your manufacturing facility?
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Our production lines operate under ISO 9001 and IATF 16949 quality management systems, with full material test reports (MTR) provided for every shipment.
What is the lead time for prototype samples of Ebw Manganin Shunt with 30A for Electronic Meter versus mass production?
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Custom prototype samples are typically dispatched within 10 to 15 business days, while standard mass production orders are fulfilled within 10 to 15 weeks depending on tooling complexity.

contact us
If you need more information, quotes, or samples about Shunt Terminal for Magnetic Latching Relay, please contact us directly. You can communicate with us by phone, email, or our website online customer service. We look forward to establishing a good cooperative relationship with you and jointly promoting your business development!
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