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Silicon carbide (SiC) MOSFETs achieves ultra-high efficiency primarily due to their wide bandgap, which leads to lower on-state resistance (Rds(on)), faster switching speeds, and reduced switching losses. These properties enable SiC MOSFETs to operate at higher frequencie and temperature with improved overall performance, resulting in more efficient power conversion systems

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SINEXCEL-RE is a leading manufacturer of battery testing equipment and a provider of battery testing equipment solutions.

Battery Test Equipment

High-Precision Battery Test Systems for R&D and Mass Production
Supporting Cell to Pack Level Testing with Regenerative Power, Ultra-High Accuracy, and Integrated Protection
Trusted by Global EV, ESS, and Battery Manufacturers

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High-Precision Battery Testing Equipment for R&D and Production

Scalable battery testing systems for cell, module, and pack testing — supporting high-voltage, high-power, and regenerative applications.

Detailed Introduction

Battery testing equipment is analytical equipment used in the fields of energy science and technology, and material science. It is mainly used to test various performance parameters of batteries, such as voltage, internal resistance, charge and discharge performance, etc. The equipment can quantitatively and accurately measure the basic parameters of the battery, including open circuit voltage, internal resistance, charge and discharge performance, etc. Especially for the protection of lithium batteries, such as overcharge protection, over-discharge protection, overcurrent protection and short circuit protection. SINEXCEL-RE’s solution uses advanced algorithms and excellent circuit structures to sample, calculate and display the measured voltage, current, capacity and other parameters. It is widely used in battery production, battery testing, pre-sales and after-sales services and other fields.

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High-Accuracy Measurement With Seamless Auto-Ranging

Achieves automatic seamless range switching within the full measurement range and a static measurement accuracy of 0.02% Full Scale through the systematic design of the signal chain, multi-range parallel topology, and full-digital closed-loop compensation.

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Low-Latency, High-Fidelity Data Acquisition Architecture

Delivers an end-to-end high-speed data acquisition system with low latency and high fidelity, enabling 1 ms high-frequency recording through synchronized hardware acquisition, real-time pipeline processing, and lossless data management.

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High-Efficiency Regenerative AC/DC/AC Power Conversion

High regeneration efficiency (96% @ 1700V) by constructing a high-efficiency, high-dynamic-performance, bidirectionally controllable AC/DC/AC power conversion system.

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End-to-End High-Speed Data Acquisition (1 ms Resolution)

Delivers a low-latency, high-fidelity end-to-end data acquisition system, enabling 1 ms high-frequency recording through synchronized hardware acquisition, real-time pipeline processing, and lossless data flow.

Our Products

Our range of battery test equipment includes various specialized test systems such as the Milliampere-level Test System, IT Battery Test System, and EV Battery Test System, among others

Multi-layer safety protection

Multi-layer-Safety-Protection

When testing new battery technologies, safety is paramount. Our solution offers multiple layers of hardware and software protection, including advanced features such as battery voltage/current trend protection, reverse battery protection, and cross-talk protection between device channels. These protective mechanisms are automatically built into the hardware, making them easy to control within a single solution. There are no hidden fees or additional costs; safety is integrated into the core of the product design, not added as an afterthought. All these advanced protection features are controlled and fully integrated into an automated system, providing comprehensive safety assurance for the entire testing environment.

Product Highlights

Discuss Your Battery Testing Requirements

Every battery testing application is different.
Our engineers work closely with customers to define system configuration, power level, accuracy, and scalability based on real test requirements.

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