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Comparison Hator Stellar Wireless vs Hator Stellar Pro Wireless

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Hator Stellar Wireless
Hator Stellar Pro Wireless
Hator Stellar WirelessHator Stellar Pro Wireless
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Product typemousemouse
Connectionradio / Bluetooth / wiredradio / Bluetooth / wired
Bluetooth versionv5.4
Multi-Device
Sensoropticaloptical
Typefor gamefor game
Sensor and control
SensorPixArt 3311PixArt 3395
Sensor resolution400 – 12000 DPI26000 DPI
Max. acceleration35 G
Max. polling rate1000 Hz (1 ms)1000 Hz (1 ms)
Number of buttons44
Side buttons
DPI-button
Switch typeopticalmechanical
SwitchesHATOR x TTCKailh Sword GM X
Switch resource100 mln80 mln
Scroll wheels11
Additional features
Suitable for left-handers
Perforated body
Programmable buttons
Built-in memory
LightingRGBRGB
Lighting effects++
Feet materialteflon (PTFE)teflon (PTFE)
Connection and power supply
Cable
USB-A
braided
USB-A
braided
Cable length1.8 m2.1 m
Power sourcebatterybattery
Battery capacity400 mAh
Battery life64 h42 h
Port on the deviceUSB-CUSB-C
General
In box
USB-A dongle
replaceable legs
USB-A dongle
replaceable legs
Size (LxWxH)116x60x36 mm116x60x36 mm
Weight54 g52 g
Added to E-Catalogoctober 2025november 2023
Compare Hator Stellar Wireless and Stellar Pro Wireless
Hator Stellar Wireless often compared
Hator Stellar Pro Wireless often compared
Glossary

Bluetooth version

It is worth noting that any version of Bluetooth is able to pair devices with each other. And even if both devices have a different version, the connection will occur on the lowest of them — the protocols are interchangeable.

Sensor

The model of the sensor installed in the mouse. This information is indicated mainly for models equipped with high-end sensors, which are significantly superior in their capabilities to simpler solutions. Such characteristics are important primarily for gaming mice, so most of the devices for which the sensor model is specified belong to this category.

Knowing the name, you can find detailed data on the sensor and evaluate its capabilities. Note that one of the most popular brands nowadays, under which advanced sensors are produced, is PixArt ; on the market are often found, in particular, sensors PixArt 3212, PixArt 3325, PixArt 3327, PixArt 3335, PixArt 3360, PixArt 3389, PixArt 3395, PixArt 3950.

Sensor resolution

Resolution of the sensor responsible for tracking mouse movements on the work surface. Specified in DPI — dots per inch.

The physical meaning of DPI as a whole is as follows. The sensor of a modern mouse works on the same principle as the camera matrix, and consists of pixels. And DPI is the number of pixels that fall on 1 inch of the underlying surface (length or width), "visible" by the sensor.

It is believed that more DPI means a more advanced sensor and mouse in general; nowadays, models for 3500 – 5000 DPI, 12000 DPI, 16000 DPI even more are not uncommon. In a way, it is — high resolution contributes to accuracy. However, the only thing that is directly determined by this indicator is the speed at which the cursor moves across the screen: the higher the resolution of the sensor, the greater the number of pixels that the cursor will move when the mouse itself moves a certain distance. At the same time, it is worth recalling that too high a speed is even more undesirable than too low. So the real need for high DPI ( 1000 and above) arises mainly when working on large screens (4K resolution and more); for more modest displays (HD and Full HD), smaller values are often enough.

Max. acceleration

The greatest acceleration during movement, at which the mouse maintains normal performance; if this indicator is exceeded, the cursor may “break down” (moving to an unexpected place due to incorrect processing of data from the sensor).

The faster the mouse moves, the greater the acceleration acting on it. Accordingly, this parameter determines the sensitivity to sudden movements, the extent to which this model is able to normally perceive and process such movements. High values of maximum acceleration ( 40 G, 50 G) are important first of all in dynamic games, especially for professional e-sportsmen and advanced enthusiasts. If the mouse is bought for relatively simple tasks (working with documents, surfing the web, etc.), you can ignore this indicator.

Switch type

The type of switches in a mouse indicates the mechanism used under the main buttons to register a click. It affects the feel when pressing, actuation speed, lifespan, and resistance to accidental double clicks.

— Optical. Button mechanisms where the press is registered not by closing metal contacts but by interrupting a light beam. This makes them faster, less prone to wear, and almost unaffected by accidental double-click issues.
These switches are especially valued in gaming mice, where response speed and stability after a large number of clicks are crucial. For example, in shooters or MOBA games, they help achieve clear feedback without delay and contact bouncing.

— Mechanical. Classic button mechanisms where a click is registered due to the closing of metal contacts. They provide a familiar tactile feel, a well-audible click, and are widely used in both office and gaming models.
Compared to optical switches, mechanical ones are usually simpler and cheaper, but over time the contacts may wear out. For example, with active gaming or daily work, after a few years, a double click might occur instead of a single press.

Switches

The switches in a mouse indicate which specific switches are installed under the main buttons, such as Omron, Huano, Kailh, TTC, or proprietary solutions from the manufacturer. These determine the click characteristics, actuation force, click volume, lifespan, and the likelihood of double-clicking over time.

Unlike the general switch type, which refers to the working principle—mechanical or optical—the brand and model provide a more precise understanding of the performance level. For example, two mice with mechanical switches might feel different when clicked: some may be softer and quieter, while others could be stiffer, louder, and feel more "gaming-like."

Switch resource

The durability of mouse switches is measured by the number of clicks the keys can withstand before they begin to show signs of wear or malfunction. Switches can have a lifespan of several million to tens of millions of clicks. In laboratory conditions, this parameter is checked using special testing machines, which diligently press the keys the required number of times, on the basis of which a verdict is made regarding the approximate service life of the switches.

Cable length

The length of the cable that is equipped with a mouse with the possibility of a wired connection (see "Type of connection").

When choosing this parameter, you should first of all take into account the distance from the manipulator to the connection port: a cable that is too short may simply not reach the connector, and a cable that is too long may get tangled at hand and create inconvenience. As for specific values, the most modest wire length in modern mice is 1 m or less ; such devices are intended mainly for laptops. Most desktop manipulators come with cables that are 1.1-1.5m or 1.6-2m long, with some models running longer than 2m.

Battery capacity

The battery capacity in a mouse affects how long it can operate without recharging and determines how often the device will need to be charged. Although manufacturers usually specify the operating time, the capacity helps assess the battery's resource under intensive use or when additional features, such as backlighting, are activated.