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Comparison BASEUS Super Energy Max Car Jump Starter 20000 vs BASEUS Super Energy Pro Car Jump Starter 12000

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BASEUS Super Energy Max Car Jump Starter 20000
BASEUS Super Energy Pro Car Jump Starter 12000
BASEUS Super Energy Max Car Jump Starter 20000BASEUS Super Energy Pro Car Jump Starter 12000
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Main
The USB type C port is only used to charge the power bank itself, but cannot be used to charge devices.
Display to show the charge level of the starter. High starting current up to 1000 A. Multi-level electrical protection system. Tri-mode flashlight. Reversible USB C connector.
Deviceboosterbooster
Specs
Battery voltage
12 V
12 V
Starting current1000 А600 А
Peak output current2000 А1000 А
Built-in battery capacity20000 mAh12000 mAh
Charging gadgets (outputs)
USB A
1
5V/2.4А
12 W
1
5V/2.4А
12 W
USB-A (fast charge)
1
5V/3А, 9V/3А, 12V/2.5А
30 W
 
 
 
USB type C
1
5В/2А, 9V/2А
18 W
1
5V/3А
15 W
General
Built-in flashlight
Power source230 V230 V
Size165x87x38 mm163x83x37 mm
Weight0.47 kg0.47 kg
Added to E-Catalogoctober 2022december 2021

Starting current

Rated starting current of the starter or booster (see "Type").

In this case, we mean the current that the device in the engine start mode can produce for a relatively long time (at least 30 s, or even more). This indicator must not be lower than the rated starting current consumed by the starter of the car — otherwise the device simply does not have enough power to effectively scroll the starter and start the engine. Information about the required starting current can be clarified by the documentation for the machine, or by the characteristics of the battery that is used in it as standard. For most passenger cars, this figure lies in the range from 200 to 400 A ; less powerful starting devices are intended mainly for motorcycles and other similar vehicles, and more powerful ones for buses, trucks and other heavy equipment, among such “starters” there are models for 400 – 600 A and even more.

Peak output current

Peak inrush current of the starter or booster (see "Type").

Peak current is the highest current that the device can deliver without problems for a short time (1 – 2 s). This current is noticeably higher than the nominal starting current (see above), which corresponds to the operation of a car starter: starting to spin up, the starter consumes a very high current, which, however, decreases almost immediately.

The peak inrush current of the ROM or booster must not be less than the peak inrush current of the starter. You can specify the latter according to the documentation for the car, or according to the characteristics of a regularly used car battery.

Built-in battery capacity

Capacity of the own battery provided in the design of the starter-charger.

As a rule, boosters and launchers with a power bank function are equipped with their own batteries (see “Type”). The main purpose of such a battery from the point of view of helping to “light up” is to provide the power necessary to start the engine. However, in some models the battery is responsible for other functions, such as the built-in compressor or flashlight. The larger the battery capacity, the longer the device can operate, and the more tasks it can perform on a single charge.

In starting devices with the powerbank function, this parameter is also given to estimate how much energy the battery can accumulate and then transfer to connected gadgets. It is important to consider that there is a nominal (declared) and real capacity - the latter is always less, because it takes into account the inevitable losses during energy conversion. Typically the difference is from 30 to 40%, i.e. a model with a conventional battery capacity of 10,000 mAh will not fully charge a smartphone with a 3,000 mAh battery three times, but at best will provide two power cycles, because in practice its working capacity is about 6,000 mAh. Therefore, it is not entirely correct to compare the mAh values of your gadget’s battery with the nominal capacity of the built-in battery - you should definitely take into account that the real capacity is always less than the “rated” one.

USB-A (fast charge)

Full size USB A ports with fast charging support. It allows you to charge your smartphone, tablet or other connected device much faster. The charging process takes place at increased power, and the current and voltage at each stage are regulated (for example, 5V / 3A, 9V / 2A, 12V / 1.5A) so as to remain within the optimal values.

USB type C

The presence of a USB C connector in the design of the ROM for recharging gadgets with the appropriate cable. Due to the popularization of this port, such a solution does not look unusual, but rather helps to keep up with the times.

In addition to the number of such ports, the voltage and current on which the port operates, as well as the maximum charging power, can be indicated.

- The strength of the current. The maximum current output through the USB type C connector to a charging device. Note that different ports of the charging station can output different current (for example, 1.5 A and 2.1 A). In this case, the highest current strength is usually indicated.

— Power. The maximum power in watts (W) that the charging station is capable of delivering to one rechargeable gadget. The high output power of the USB type C port allows you to speed up the charging process. However, the corresponding power must be supported by the device being charged - otherwise the speed of the process will be limited by the characteristics of the gadget.
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