

The "Christmas tree gecko" is a real fastener, also known as a "Christmas tree anchor bolt" or "Christmas tree expansion bolt"; it has an expansion sleeve section with a dense ring of teeth that looks like a Christmas tree on the side, hence the name. When installing, tap the whole into the pre-drilled hole. When inserted, the insection will produce huge friction, and when the force is reversed, the insection will open and "bite" the hole wall, forming a fixed. The Christmas Tree Gecko is designed to provide a quick, secure hold on hollow, porous or softer substrates.

Gypsum board gecko is a special anchor bolt specially designed for hollow and low-strength boards such as gypsum board. It mainly solves the problems that the self-tapping screw is not firmly fixed and the common expansion screw can not be used. It is directly screwed into the prefabricated hole of gypsum board like a screw, and is fixed by the huge friction and mechanical bite force between the thread and the gypsum board material. When installed, the inside forms an anchoring claw. It is designed to safely hang objects from gypsum board partitions or suspended ceilings.

The hollow gecko is a metal expansion anchor bolt (for all-metal) in the national specification, or more specifically, an internal thread type/internal force type expansion anchor bolt; the hollow gecko is a cylindrical (sleeve type) metal expansion part, which is usually composed of a conical screw rod with an internal thread at the tail and an expansion sleeve (metal sleeve) sleeved outside; During installation, the whole body is inserted into a pre-drilled hole, and when the nut or bolt is tightened, the internal conical screw is pulled to force the external metal sleeve to expand and open, so that a huge friction force and a mechanical bite force are formed inside a wall body or a base material to achieve a fastening effect. Its core use is to solve the problem of "hanging heavy objects safely and firmly on hollow and loose walls".



High precision: 1.6 million resolution, Z direction repetition accuracy up to 4 μm; High speed: compatible with GPU/CPU platform, imaging speed millisecond, scanning speed 3 Hz; Small size: the body is made of aircraft-grade aluminum alloy, the weight is only 230 G, industrial reliability. It is mainly oriented to high-precision online measurement and detection in narrow space, high-precision measurement and positioning at the front end of the mechanical arm, and is suitable for automated workstations with strict requirements on measurement accuracy and installation space.

High accuracy: 1.6 million resolution, repetition accuracy up to 15 μm in Z direction; high speed: compatible with GPU/CPU platform, imaging speed of millisecond, scanning speed of 3 Hz; small size: the body is made of aircraft-grade aluminum alloy, only 230 G, industrial reliability. It is suitable for installation in narrow space, and can realize large field of view, large depth of field and high-precision three-dimensional measurement; it is suitable for integrated installation of various manipulators, and is used for high-precision terminal 3D visual measurement and positioning. Typical applications include industrial scenarios such as disordered grasping, three-dimensional imaging of human body, tray monitoring, battery 3D measurement, etc.


This fingertip sensor is designed to simulate the tactile perception of human fingertips, using high-sensitivity sensing technology, especially with the ability of proximity, which can be used in the future. It can predict and perceive the existence and distance of objects before contacting objects, and can accurately capture the three-dimensional force, texture and temperature differences of contacting objects. This skill The technique improves the dexterity, accuracy and safety of the operation, enabling the robot to adjust its movements before contact, avoiding potential injuries or errors.

TS-V vision and touch fusion solution is an advanced technology designed by Tashan Technology for complex environments, which aims to improve the operation of robots by integrating a variety of sensing technologies, including vision, proximity, contact and force. Accuracy and reliability in work. Considering the common transparent, reflective and small objects in the environment, as well as the uncertainty caused by occlusion, lighting changes and surface slippage, this solution provides a full view of the scene through the vision sensor. It helps the robot to do global motion planning. Proximity sense provides real-time feedback in the process of machine approaching objects, accurately detects the position and distance of environmental objects, thus making up for the system modeling. Error. Contact sense can sense the contact details that the camera can not capture, such as contact position and shape, and monitor the state of the object in hand in real time. Force sense enables the robot to perceive the overall force when interacting with the environment or objects, ensuring the flexibility and natural sense of interaction. The integrated application of TS-V vision and touch fusion solution makes the robot more flexible and accurate in performing tasks.

The robot combines the tactile perception of Tashan technology with the polymorphic composite mobile platform of cloud trace technology, which can accurately perceive and adjust the force of delivering objects, and realize human-like service actions such as water delivery and microphone delivery. It is a typical demonstration of intelligent tactile landing service scenarios.


Haihou Press-Fitting Ecosystem The Haihou press-fitting ecosystem is designed for high-precision interference fit assembly between parts. It effectively controls the press-fitting depth (with a displacement precision of 0.01 mm) and press-fitting force (with a precision of 1%) while real-time data collection is performed. The system generates press-fitting process curves, which are used for monitoring and analyzing the press-fitting process.

Its stable and excellent structure effectively ensures the stability of screw feeding and tightening, and can effectively solve various complex working conditions for screw tightening. Modular Structure for quick installation Compatibility with intelligent electric screwdrivers from different brands Integrated Vacuum Suction for screw feeding, ensuring reliable blow-and-suction tightening for screws of various materials Suitable for Deep Holes and Tight Spaces, meeting assembly requirements in confined areas Ensures Perpendicular Assembly of screws Full Automation when used with a screw feeder, enabling fully automated tightening

By using a stepped pusher to feed the material, screws are pushed onto a linear track, then sorted and sequentially arranged before being separated by the feeding mechanism and finally blown to the gun head. This is a prerequisite for fully automated tightening, with simple operation and maintenance that can improve work efficiency and quality management. Performance Data: Stepped Pushing Feeding: Reduces tiny particles adhering to the screws. Reduced Vibration Source: Relatively less friction between screws. Expandable Large Capacity Hopper: Reduces the frequency of refilling. 0.01% Screw Jamming Rate: Zero failures in 5 million blow-feeding cycles. Vibration-Free Storage Unit: Effectively reduces noise. Suitable for Longer Screws: Good adaptability for longer screws. Wide Screw Size Range: Suitable for screws ranging from M2 to M16, up to 70 mm in length. Multi-Channel Feeding Capability: Can support up to six feeding channels for tightening. Primary Application Areas: This system can be applied to the automatic tightening processes in the automotive, mechanical, home appliance, and electronics industries.




