Single Axis Linear Module is a standardized transmission equipment used in the field of industrial automation to achieve precise linear motion. By integrating drive mechanisms, guidance systems, and load platforms, it provides efficient and accurate linear displacement solutions for automation equipment.
Single Axis Linear Module plays a crucial role in various fields such as industry, healthcare, home furnishings, and transportation due to their precise linear motion in a single direction.
Here we introduce Guide Rail Built-in Linear Modules to you as follows:
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Aluminum type: Guide Rail Built-in Linear Modules.
|
Model No |
Body Width (mm) |
Max Payload (kgs) |
Max Stroke (mm) |
Repeatability (mm) |
Drive |
Motor Power (W) |
Application Environment |
|
TM-TH5 |
54 |
30 |
800 |
±0.01/±0.005 |
screw |
100/200/400 |
Clean environment |
|
TM-TH8 |
82 |
50 |
1050 |
±0.01/±0.005 |
screw |
100/200/400 |
Clean environment |
|
TM-TH12 |
120 |
110 |
1250 |
±0.01/±0.005 |
screw |
200/400/750 |
Clean environment |
Steel Type: Guide Rail Built-in Linear Modules.
|
Model No |
Body Width (mm) |
Lead (mm) |
Rail Length(mm) |
Repeatability (mm) |
Walking parallelism(mm) |
Speed (mm/sec) |
Application Environment |
|
TM-K60 |
60 |
5/10 |
150~600 |
±0.003/±0.005 |
0.01/0.015 |
Max: 600 |
General/ Dust and Waterproof with Organ Cover |
|
TM-K86 |
86 |
10/20 |
340~940 |
±0.003/±0.005 |
0.015/0.03 |
Max: 1220 |

|
Model No |
Motor Power(W) |
Body Width (mm) |
Repeatability (mm) |
Ball Screw Rod (C7) |
Max Load (kgs) |
Stroke (mm) at Max speed (mm/s) |
Speed (mm/s) at Max stroke (mm) |
Rated Thrust |
||
|
Out dia (mm) |
Lead (mm) |
Horizontal |
Vertical |
|||||||
|
TMTH5 |
100W |
54 |
±0.01 ±0.005 |
12 |
2 |
23 |
10 |
600mm at 100mm/S |
60mm/S at 800mm |
854 |
|
5 |
30 |
10 |
600mm at 250mm/S |
150mm/S at 800mm |
341 |
|||||
|
10 |
15 |
5 |
600mm at 500mm/S |
300mm/S at 800mm |
170 |
|||||
|
20 |
10 |
2.5 |
600mm at 1000mm/S |
600mm/S at 800mm |
85 |
|||||
|
200W |
2 |
30 |
10 |
600mm at 100mm/S |
60mm/S at 800mm |
170 |
||||
|
5 |
30 |
10 |
600mm at 250mm/S |
150mm/S at 800mm |
682 |
|||||
|
10 |
28 |
8 |
600mm at 500mm/S |
300mm/S at 800mm |
340 |
|||||
|
20 |
15 |
5 |
600mm at 1000mm/S |
600mm/S at 800mm |
170 |
|||||
|
400W |
2 |
30 |
10 |
600mm at 100mm/S |
60mm/S at 800mm |
3389 |
||||
|
5 |
30 |
10 |
600mm at 250mm/S |
150mm/S at 800mm |
1353 |
|||||
|
10 |
30 |
10 |
600mm at 500mm/S |
300mm/S at 800mm |
674 |
|||||
|
20 |
22 |
8 |
600mm at 1000mm/S |
600mm/S at 800mm |
337 |
|||||
|
TMTH8 |
100W |
82 |
±0.01 ±0.005 |
16 |
5 |
30 |
10 |
750mm at 250mm/S |
75mm/S at 1100mm |
341 |
|
10 |
15 |
5 |
750mm at 500mm/S |
150mm/S at 1100mm |
170 |
|||||
|
20 |
10 |
2.5 |
750mm at 1000mm/S |
300mm/S at 1100mm |
85 |
|||||
|
200W |
5 |
50 |
15 |
750mm at 250mm/S |
75mm/S at 1100mm |
682 |
||||
|
10 |
30 |
8 |
750mm at 500mm/S |
150mm/S at 1100mm |
340 |
|||||
|
20 |
18 |
3 |
750mm at 1000mm/S |
300mm/S at 1100mm |
170 |
|||||
|
400W |
5 |
50 |
15 |
750mm at 250mm/S |
75mm/S at 1100mm |
1353 |
||||
|
10 |
40 |
12 |
750mm at 500mm/S |
150mm/S at 1100mm |
674 |
|||||
|
20 |
22 |
5 |
750mm at 1000mm/S |
300mm/S at 1100mm |
337 |
|||||
|
TMTH12 |
200W |
120 |
±0.1 ±0.005 |
16 |
5 |
95 |
27 |
800mm at 250mm/S |
117mm/S at 1250mm |
683 |
|
10 |
70 |
18 |
800mm at 500mm/S |
233mm/S at 1250mm |
341 |
|||||
|
20 |
20 |
6 |
800mm at 1000mm/S |
467mm/S at 1250mm |
174 |
|||||
|
32 |
10 |
- |
800mm at 1600mm/S |
747mm/S at 1250mm |
108 |
|||||
|
400W |
5 |
110 |
33 |
800mm at 250mm/S |
117mm/S at 1250mm |
1388 |
||||
|
10 |
88 |
33 |
800mm at 500mm/S |
233mm/S at 1250mm |
694 |
|||||
|
20 |
40 |
10 |
800mm at 1000mm/S |
467mm/S at 1250mm |
347 |
|||||
|
32 |
30 |
8 |
800mm at 1600mm/S |
747mm/S at 1250mm |
216 |
|||||
|
750W |
5 |
110 |
33 |
800mm at 250mm/S |
117mm/S at 1250mm |
2100 |
||||
|
10 |
110 |
33 |
800mm at 500mm/S |
233mm/S at 1250mm |
1050 |
|||||
|
20 |
60 |
16 |
800mm at 1000mm/S |
467mm/S at 1250mm |
528 |
|||||
|
32 |
50 |
10 |
800mm at 1600mm/S |
747mm/S at 1250mm |
380 |
|||||








Starting from specific scenarios, the following provides a detailed introduction to its applications:
1.Industrial automation field
This is the core application scenario of single axis linear actuators, mainly used to achieve automation actions such as material handling, equipment positioning, and process switching. Its characteristics are high load, high repeatability, and stable operation.
Assembly production line: used in the assembly process of electronic components and automotive parts, to push workpieces to designated workstations (such as feeding PCB boards into welding machines), control the feed rate of screwdrivers or pressing devices, and ensure assembly accuracy (positioning error can be controlled within ± 0.1mm).
Material conveying and sorting: In the conveyor belt system, materials are diverted by actuators (such as pushing packaging boxes of different specifications to corresponding slides), or gates are controlled to open and close to adjust the conveying rhythm, adapting to the high-speed sorting needs of industries such as food and logistics.
Machine tools and processing equipment: As the feed axis of CNC machine tools, Single Axis Linear Module drives the tool or worktable to move in a single direction (such as the X-axis feed of milling machines), and is coupled with ball screw transmission to achieve high-precision cutting, meeting the strict requirements for dimensional tolerances in metal processing.
Packaging Machinery: Control the pressing action of the sealing machine, the label pushing of the labeling machine, or adjust the tension of the packaging film to ensure the consistency of packaging sealing and appearance.
2.Medical and rehabilitation equipment
In medical settings, Single Axis Linear Module needs to meet the requirements of low noise, smooth operation, and hygienic design to avoid interference or contamination to patients.
Bed and nursing equipment: Drive the lifting and lowering of the bed (adjust the height for convenient medical operation), adjust the backrest angle (help patients sit up), or flip the nursing bed (prevent bedsores), replacing manual operation with electric control to reduce the labor intensity of medical staff.
Rehabilitation equipment: In lower limb rehabilitation robots, the driving pedal moves back and forth in a straight line to assist patients in gait training; Control the seat up and down in the wheelchair to facilitate users getting on and off the vehicle.
Medical testing equipment, such as CT machines and ultrasound devices, drives detectors or probes to move along the patient's body axis to achieve tomography or linear scanning, ensuring the integrity of the imaging range.
3.Smart Home and Office Equipment
This type of application emphasizes miniaturization, low power consumption, and ease of use, meeting the convenience needs of daily home and office work.
Home adjustment: Control the opening and closing of electric curtains (horizontal translation), the lifting of smart windows (vertical direction), or the lifting of hanging poles in the wardrobe (convenient for picking up and placing clothes), and achieve automation through remote control.
Office equipment: height adjustment of the drive lift desk (suitable for standing/sitting office), extension and retraction of the projector bracket (adjusting projection distance), or automatic drawer push and pull of the filing cabinet to enhance office comfort.
Home appliances: Control the reciprocating linear motion of the spray arm in the dishwasher to ensure that the water flow covers all utensils; Adjust the height of the partition in the refrigerator to fit different sizes of food materials.
4.Transportation field
In vehicles, aircraft and other equipment, Single Axis Linear Module is used to achieve component adjustment or function switching, and need to withstand complex environments such as vibration, high and low temperatures.
Automotive industry: Control the forward and backward sliding of car seats, adjust the backrest angle (by pushing and pulling the seat frame through actuators), or electrically open the trunk (lifting the lid vertically) to enhance the driving experience.
Rail transit: In high-speed trains or subways, the sliding and opening of the driving doors (in the horizontal direction), or the folding and resetting of the seats, ensure the efficiency and comfort of passengers getting on and off the train.
Aerospace: In the aircraft cockpit, adjust the height of the pilot's seat, the extension and retraction of the control lever, or the opening and closing of the cargo door to meet reliability requirements in high-altitude environments (such as low pressure resistance and impact resistance).
5.Agricultural and Environmental Equipment
In agricultural automation and environmental control, Single Axis Linear Module helps achieve precise operation and resource optimization.
Agricultural machinery: In greenhouses, driving the deployment and retraction of sunshades (adjusting lighting), linear movement of irrigation nozzles (uniform watering), or pushing of seeders by seeders can improve agricultural production efficiency.
Environmental monitoring equipment: Control the opening and closing of the louvers of the meteorological station (to protect sensors from rain and snow interference), and the lifting and lowering of the sampling probe of the water quality monitoring instrument (to sample at different depths) to ensure the accuracy of data collection.
The core application of Single Axis Linear Module is "precise linear motion in a single direction". By adapting to different transmission methods (screw, synchronous belt, etc.) and drive motors (stepper, servo, etc.), it can meet diverse needs from industrial high load to civilian lightweight. The simple structure and controllable cost of Single Axis Linear Module enables it to serve as an independent device to complete basic actions, as well as a component of a multi axis system (such as combining with other single axis actuators to form an XY axis platform), further expanding its application scenarios.
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