Comparison Choetech BS065 vs CTECHi ST2000 1536 Wh
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|---|---|---|
| Choetech BS065 | CTECHi ST2000 1536 Wh | |
| Outdated Product | Outdated Product | |
| User reviews | ||
| TOP sellers | ||
New models (from 2026) have a smartphone control feature (please confirm in the store before purchasing). | 2 USB A ports, 4 USB A Fast Charge ports, 2 USB-C ports. LiFePO4 – Lithium iron phosphate battery. Allows surges up to 3000 W. Battery capacity 1536 Wh. | |
| In box | charging station | charging station |
| Rated power | 1800 W | 2000 W |
| Peak power | 3200 W | 3000 W |
| Output waveform | sinusoid (PSW) | sinusoid (PSW) |
| UPS function | ||
| Switchover time to battery | 10 ms | 15 ms |
Outputs | ||
| Sockets (230 V) | 2 | 2 |
| USB-A | 2 pcs 18 W | 6 pcs 24 W |
| USB-C | 2 pcs 100 W | 2 pcs 60 W |
| Car cigarette lighter | ||
Inputs (station charging) | ||
| From solar panels | ||
| Input port XT60 | ||
Battery and charging time | ||
| Connecting an additional battery | ||
| Battery type | LiFePO4 | LiFePO4 |
| Battery capacity | 1536 Wh | 1536 Wh |
| Charging cycles | 3500 | |
| Charging time (socket) ≈ | 60 min | 90 min |
| Charging time (socket + solar panel) ≈ | 72 min | |
| Charging time (solar panel) ≈ | 90 min | 240 min |
| Charging time (cigarette lighter) ≈ | 900 min | |
| Charging power (socket) | 1500 W | 1200 W |
| Charging power (solar panel) | 1200 W | 500 W |
General | ||
| Smartphone synchronization | Bluetooth and WiFi | |
| PSU | built into the body | built into the body |
| Display | ||
| Built-in light | ||
| Carrying handle | ||
| Operating temperature | -10 °C ~ +40 °C | -10 °C ~ +40 °C |
| Dimensions (LxWxH) | 295x404x218 mm | 411x260x355 mm |
| Weight | 17 kg | 21.7 kg |
| Warranty | 2 years | 12 months |
| Added to E-Catalog | january 2025 | december 2024 |
Compare Choetech BS065 and CTECHi ST2000 1536 Wh
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Glossary
Rated power
Power that a device can consistently produce for an indefinitely long time without any unpleasant consequences. For normal operation of the charging station, the rated power must be at least 15 - 20% higher than the total power of all devices simultaneously connected to it.
Peak power
Some electrical appliances (in particular, units with electric motors - refrigerators, air conditioners, etc.) consume significantly more energy at startup than after reaching the operating mode. For such a load, the peak power of the charging station must be taken into account - its indicator must be higher than the starting power of the load.
Switchover time to battery
The delay (usually in milliseconds) between the power going out from the outlet and the moment when the station starts feeding connected devices from its battery, maintaining "pass-through" power. The shorter this time, the higher the chance that devices won't notice the drop at all: for routers, cameras, NAS, and PCs, this is critical because a long pause can cause a reboot, loss of connection, or even filesystem errors. Essentially, this is the same parameter as in a classic UPS, but for charging stations, it greatly depends on implementation: models with a more "UPS-like" switching scheme switch considerably faster, while some stations formally have a UPS mode but actually create a noticeable break or activate the output only after "realizing" the network's loss. In practice, this point helps distinguish a charging station that is truly suitable as a UPS for sensitive electronics from an option "for lights and charging": for example, for home internet and video surveillance, minimal switching time is important, while for lamps, charging phones, or a heater, a brief pause is typically not critical.
USB-A
Full-size USB ports for powering and charging compatible portable devices: smartphones, tablets, flashlights, action cameras, power banks, and other devices. USB-A remains relevant thanks to the large number of cables and accessories that use this connector, so it can be useful, for example, for simultaneously charging a phone and a flashlight during a power outage.
The number of ports (1, 2, 3, and more) determines how many devices can be connected without a splitter, while the maximum power indicates the capabilities of the highest-output USB-A port: the other connectors may provide less. When several devices are connected simultaneously, the available power may also be distributed among the ports, so the actual charging speed depends on the station's output configuration and the supported standards.
The number of ports (1, 2, 3, and more) determines how many devices can be connected without a splitter, while the maximum power indicates the capabilities of the highest-output USB-A port: the other connectors may provide less. When several devices are connected simultaneously, the available power may also be distributed among the ports, so the actual charging speed depends on the station's output configuration and the supported standards.
USB-C
USB type C ports are smaller compared to classic USB ports and have a convenient reversible design that allows connecting the plug either way. USB type C was initially created to implement various advanced features: increased power, fast charging technologies, etc.
Since the port is relatively new and quite powerful (you can find USB type C with 60W, even 100W and 140W), the total number of such connectors is often limited to one port, or sometimes two).
— Current. The maximum current delivered through the USB type C port to the device being charged. Note that different ports of a charging station may deliver different currents (for example, 1.5A and 2.1A). In such cases, the highest current is usually specified.
— Power. The maximum power in watts (W) that the charging station can deliver to one charging gadget. The high output power of the USB type C port allows for faster charging. However, the device being charged must support the corresponding power; otherwise, the speed of the process will be limited by the gadget's specifications.
Since the port is relatively new and quite powerful (you can find USB type C with 60W, even 100W and 140W), the total number of such connectors is often limited to one port, or sometimes two).
— Current. The maximum current delivered through the USB type C port to the device being charged. Note that different ports of a charging station may deliver different currents (for example, 1.5A and 2.1A). In such cases, the highest current is usually specified.
— Power. The maximum power in watts (W) that the charging station can deliver to one charging gadget. The high output power of the USB type C port allows for faster charging. However, the device being charged must support the corresponding power; otherwise, the speed of the process will be limited by the gadget's specifications.
Connecting an additional battery
Ability to connect an external battery to the charging station to increase the overall energy consumption and, as a result, extend the battery life. This connection is fast and convenient. On the other hand, the battery takes up extra space on the outside, making the whole structure more cumbersome.
Charging cycles
The number of charge-discharge cycles that the battery can withstand without significant loss of performance.
In the process of operation, the batteries wear out, which causes their performance to suffer (in the first place, the capacity decreases). Battery life is usually measured in charge-discharge cycles. However, models with the same declared resource are not always equally durable in practice. Different manufacturers may interpret “significant loss of performance” in different ways: for example, one brand indicates the resource up to a 20% decrease in capacity (DOD > 80%), another - up to a 60% decrease (DOD > 40%) Behind the abbreviation DOD worth decoding Depth of Discharge, i.e. discharge depth. Therefore, when choosing, it makes sense to focus not only on pure numbers, but also on other sources - test results, reviews, etc. Also note that battery life can be noticeably reduced if the operating conditions are violated (for example, in case of overheating or hypothermia).
In the process of operation, the batteries wear out, which causes their performance to suffer (in the first place, the capacity decreases). Battery life is usually measured in charge-discharge cycles. However, models with the same declared resource are not always equally durable in practice. Different manufacturers may interpret “significant loss of performance” in different ways: for example, one brand indicates the resource up to a 20% decrease in capacity (DOD > 80%), another - up to a 60% decrease (DOD > 40%) Behind the abbreviation DOD worth decoding Depth of Discharge, i.e. discharge depth. Therefore, when choosing, it makes sense to focus not only on pure numbers, but also on other sources - test results, reviews, etc. Also note that battery life can be noticeably reduced if the operating conditions are violated (for example, in case of overheating or hypothermia).
Charging time (socket) ≈
Time to charge the portable power station from a fully discharged state to 100% charge when using the power adapter from a household outlet. This refers to the original battery and standard charger.
Charging time (socket + solar panel) ≈
The parameter allows you to estimate the approximate battery charging time in the mode of combined connection of a portable power station - from a power outlet and a solar panel overnight. This method of replenishing energy reserves allows you to speed up the charging process.







