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Voltage matching

Voltage matching

Voltage matching Battery voltage matching is a crucial part of low-speed vehicle battery design, which is directly related to the compatibility, performance and safety of battery and electric vehicle power system. The battery voltage needs to match the operating voltage of the electronic control system, motor and other electronic components of the low-speed vehicle to ensure that the vehicle can…

Compatible with third parties

Compatible with third parties

Compatible with third parties Battery compatibility and third-party adaptation are critical to the market acceptance and development of low-speed vehicles and other e-mobility products. Good compatibility can not only improve product scalability, reduce maintenance costs, but also enhance consumer trust and loyalty to the brand. In terms of the compatibility of batteries and other electric vehicle components, ensuring compatibility with…

Nitrile rubber: the ideal material for battery sealing rings

Nitrile rubber: the ideal material for battery sealing rings

Nitrile rubber: the ideal material for battery sealing rings With the continuous development of new energy technology, battery as the core component of energy storage, its security and performance are particularly important. In this context, the battery sealing ring is a key part of the battery component, and its material selection is particularly critical. Nitrile rubber (NBR) has shown excellent…

Introduction of battery pack components

Introduction of battery pack components

Introduction of battery pack components A battery pack consists of several components that work together to ensure proper operation and safety of the battery. This article will briefly introduce the main components of the battery pack, including the single cell, welding terminals, socket terminals, connecting strips, insulation protection parts, battery pack support and support and guide parts, and safety valve…

Solid state batteries and new battery technologies

Solid state batteries and new battery technologies

Solid state batteries and new battery technologies As the demand for battery performance increases, traditional liquid lithium-ion batteries face limitations in energy density, safety and durability. As a representative of the next generation of battery technology, solid-state batteries are becoming an important direction of future battery technology development because of their high safety and energy density. In addition, other new…

UPS Case Materials – Introduction of Composite Materials

UPS Case Materials – Introduction of Composite Materials

UPS case materials – Introduction of composite materials In modern power management and uninterruptible power supply (UPS) systems, the selection of housing materials is critical to equipment performance, durability and safety. Because of its excellent physical, chemical and mechanical properties, composite materials have gradually become the ideal choice for UPS chassis. This article will explore the properties of composite materials…

Industrial chain integration and regional development

Industrial chain integration and regional development

Industrial chain integration and regional development The integration and regional development of the low-speed vehicle battery industry chain is a key factor to promote the sustainable development of the low-speed electric vehicle industry. As the core component of electric mobility solutions, the low-speed vehicle battery industry chain involves many links from raw material supply, battery production to recycling. With the…

Improved battery cycle life and safety

Improved battery cycle life and safety

Improved battery cycle life and safety The cycle life and safety of low-speed vehicle batteries are the core factors affecting user experience, product cost and market competitiveness. The cycle life of the battery directly determines how many charge and discharge cycles the battery can withstand during use, which affects the long-term use cost of consumers and the overall economy of…

Optimization of battery structure

Optimization of battery structure

Optimization of battery structure The innovation of battery structure is directly related to energy utilization efficiency and product stability. By improving the internal arrangement and modular design of the battery, energy loss can be reduced and space utilization can be improved, while enhancing the heat dissipation performance and earthquake resistance of the battery. Structural optimization can not only improve the…

The exploration of new materials

The exploration of new materials

The exploration of new materials When the liquid electrolyte used in traditional lithium-ion batteries is combined with higher performance positive and negative electrode materials (such as pure lithium metal negative electrode), it is easy to form lithium dendrites, resulting in accidental short circuit, causing thermal runaway or even spontaneous combustion explosion, so the solid electrolyte with high thermal stability can…