Products

Sodium jump starter

Sodium jump starter

Company Profile

About us

Enervolts Technology Co., Ltd., is a high-tech enterprises specializing in R&D, production and sales of Sodium ion&lithium battery technology application products.

Our  business has expanded to more than 50 countries on 6 continents around the world.

Enervolts will continue to be committed to providing all user with a "one-stop solution" for instantly charging various products such as Home energy storage, Power Station, Car starting battery, yachts, motorcycles, etc.,.

At the same time, relying on the in-depth technology research and development of Sodium ion& lithium battery smart energy, we will  provide users with smart energy and a better life.

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NEWS

  • 05-20 2026
    When it comes to emergency roadside assistance, reliability is non-negotiable. For years, lithium-ion battery technology has been the undisputed king of portable jump starters due to its high energy density. However, as automotive technology advances, a new contender is shaking up the industry: Sodium-ion (Na⁺) battery technology. For distributors, fleet managers, and retailers looking for the next generation of reliable starting power, understanding the differences between sodium-ion and lithium-ion is crucial. Here is a deep-dive comparison between these two chemistries and why sodium-ion is becoming the ultimate choice for extreme environments. 1. Temperature Resilience: The Sub-Zero Showdown The most critical weakness of traditional lithium-ion jump starters is cold weather. In freezing temperatures, the liquid electrolyte inside a lithium battery becomes viscous, dra...
  • 12-24 2024
    It is understood that sodium-ion battery is a secondary battery (rechargeable battery) with a similar working principle to lithium-ion battery. The positive and negative electrodes are composed of two different sodium ion embedded compounds. During charging, Na+ is extracted from the positive electrode and embedded in the negative electrode through the electrolyte. At the same time, the compensation charge of the electrons is supplied to the negative electrode through the external circuit to ensure the charge balance of the positive and negative electrodes. During discharge, the opposite is true. Na+ is extracted from the negative electrode and embedded in the positive electrode through the electrolyte. Under normal charging and discharging conditions, the embedding and extraction of sodium ions between the positive and negative electrodes does not destroy the basic chemical stru...

FAQ

Q:
What is a sodium-ion emergency jump starter? How does it differ from traditional lithium-ion or lead-acid jump starters?
A
The sodium-ion emergency jump starter is a portable vehicle jump-starting device powered by next-generation polyanion sodium-ion cells. Compared to traditional lithium-ion jump starters, it offers superior low-temperature performance (delivering a high current of 650A effortlessly at -30°C), enhanced safety (no fire risk at high temperatures of 80°C and no capacity degradation), and a longer lifespan (over 3,000 charge-discharge cycles). Compared to traditional lead-acid jump starters, it is more compact, approximately 60% lighter, and requires less frequent charging, making it ideal for carrying in the vehicle.
Q:
Can the engine really start in extreme winter cold (such as -30°C)?
A
This is precisely the core advantage of sodium-ion cells! Traditional lithium batteries suffer a significant drop in discharge performance below 0°C and can even "freeze up" and fail to operate at -20°C. In contrast, sodium-ion cells exhibit excellent low-temperature activity, capable of delivering a 650A 3-second starting current even in extreme cold as low as -30°C.
Q:
How long does a single charge last? Will it still hold a charge if left in the car unused for six months?
A
Yes. Sodium-ion cells feature an extremely low self-discharge rate. When left fully charged inside a vehicle, they retain over 80% of their capacity after 24 months of inactivity, ensuring readiness for critical moments and completely resolving the pain point of batteries losing power and becoming unusable after just a few months of storage. Even if left to discharge to 0V over an extended period, they can be recharged and used again; sodium-ion batteries are resilient against over-discharge.
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