Xiaomi Electric Precision Screwdriver – Xiaomi Global Official

Xiaomi Electric Precision Screwdriver

Two-speed torque precise control, discover unlimited possibilities

Two-speed torque adjustable

Magnetic storage container

24 x S2 steel precision screwdriving bits

400+ precision screws on one full charge

All-metal gearbox

Powerful magnetic motor

High-quality rechargeable lithium battery

S2 steel screwdriving bits

Universal Type-C charging port

Aluminium alloy case

Push pop-up , magnetic Storage

Classic award-winning design

The Mi Precision Screwdriver has won five international
design awards; namely the iF, Red Dot, Japan Good
Design, IDEA and Chicago Good Design awards. The
Xiaomi Electric Precision Screwdriver uses the same popup
design, featuring a convenient, push-to-release
mechanism.

* The image on the left shows the Xiaomi Electric Precision Screwdriver, and the image on the right shows the Mi Precision Screwdriver. This image is used only to illustrate the different dimensions of the two products.

Electric precision screwdriver

Enhanced precision efficiency

Thanks to the powerful magnetic motor with a speed of up to 170rpm*. and the all-metal gearbox, the screwdriver has a screwdriving bit concentricity of no more than 0.2mm* when rotating, for greater precision efficiency.

170

rpm

Powerful magnetic motor speed

All-metal

gearbox

0.2

mm

screwdriving bit concentricity

Compact design with an extra-long battery life

400+ precision screws on one full charge

The screwdriver has a shaft diameter of just 16.4mm*. The built-in rechargeable lithium battery is powerful and long-lasting and can process 400+ precision screws on one full charge*.

16.4

mm

shaft diameter

400+

Pieces

precision screws

* Artistic rendering of the interior construction, which does not correspond exactly to the actual interior.

24 x S2 steel precision screwdriving bits in 9 major types

The 24 x high-quality S2 tool steel screwdriving bits are durable and tough and have a hardness of up to 60HRC*.

The 24 types of precision screwdriving bit are ideal for dismantling and assembling most standard electronics and new small household appliances.

Watches

Cameras

Gaming consoles

Laptops

Smartphones

Glasses

Toys

Handheld devices

Drones

6 commonly used 45mm long screwdriving bits

for complex deep-hole applications

6 commonly used screwdriving bits out of the 24 are 45mm long for use in a wide range of complex applications, such as deep holes and narrow spaces.

6

Pieces

45mm long screwdriving bits

18

Pieces

28mm short screwdriving bits

Two-speed precise torque adjustment

Precision screw protection

0.05Nm* for precision objects such as smartphones, watches and glasses

0.2Nm* for electronic products such as smart speakers and laptops

Turning off the power prevents accidental operation and facilitates manual screwing

Intuitive button design

Soft touch with effortless pressing

Learn how to use it in no time at all: Simply press the front R button to screw in and the rear L button to unscrew. The button is made of TPU soft rubber and requires soft finger pressure, which conserves your energy when operating for a long time.

L: unscrew

R: screw in

Low centre of gravity for greater control

Non-slip texture for easy grip

The internal structure of the main body of the screwdriver has been adjusted over and over to provide a balanced centre of gravity and improved handling. The 3D non-slip texture on the grip increases friction for a more secure hold of the screwdriver during use.

Unibody aluminium alloy case

Aluminium alloy anodising process

The storage case and the screwdriver body are both made of high-quality aluminium alloy, making them comfortable to hold. The anodised surface finish is non-slip and sweat resistant, and is less prone to rust.

Universal Type-C charging port

Worry-free charging alert indicator

The Type-C charging port is compatible with charging cables of popular electronic products, making charging more convenient. The indicators next to the charging port instantly alert you when the battery is low and display the charging status.

13 battery safety tests and 3 charging safety protection features for enhanced safety*

External short circuit test at room temperature

Overcharge test

Temperature cycling test

Forced discharge test

Low pressure test

Thermal abuse test

External short circuit test at high temperature

Vibration test

Crush test

Drop test

Acceleration impact test

Heavy weight impact test

Combustion test

Overheating charging protection

Overvoltage charging protection

Overcurrent charging protection

* Speed test method: The fully charged device is run at no load for 2 minutes and the speed is then tested with an infrared tachometer.

* Spindle runout (i.e. precision bit concentricity) test method: A standard test rod is inserted into the output shaft. A laser diameter gauge is used to measure the runout at a distance of 25.4mm from the end surface of the output shaft.

* The dimensions stated may vary or be inaccurate due to different measurement conditions.

* Screwing test method: The device is fully charged until the white lamp is illuminated. The ST2 x 5mm self-tapping screw is then driven into the pine board until the battery runs out.

* Hardness varies by ±2HRC. Screwdriving bit hardness tests were conducted by the National Light Industry Tool Hardware Quality Supervision & Testing Station, Shanghai. Report No.: G20200215.

* Torque at level I varies by ±0.03Nm and torque at level II varies by ±0.08Nm. Torque test method: The fully charged device is run without load for 2 minutes and a torque tester is then used to measure the torque at levels I and II.

* The battery was tested by the Southern Testing Company of the China Certification & Inspection Group. Report No.: SET2019-08673. The battery protection tests were conducted by Precise Testing & Certification (Guangdong) Co., Ltd.; Report No.: PTC20032303001S-GB01.

* Unless otherwise indicated, all data referred to on this page is from the HOTO Laboratory. Data may vary or be inaccurate due to differences in the objective environment and other factors.