ASSEMBLY INSTRUCTION FOR MR29230

Safety cable

Set screw

Hanger

Mirror frame

Mirror Paper board

Strap

Screw

ASSEMBLY:

1.Before beginning assembly, carefully unpack and identify all parts referring to the illustration.

2.Locate the mirror frame and place finished side face down on level work surface. Carefully place the mirror (reflected side) into the mirror frame, place the paper board over the backside of mirror.

3.Locate and align the holes in the strap with the mounting holes on backside of mirror frame, secure strap to the mirror frame using screws. Repeat process for remaining strap.

4.Position the mirror on the wall at desired location and marks the place for anchors to be installed with a pencil.

5.Drill pilot holes on the marked spots and insert anchors, screw the wood screw into the anchor for the proper length.

6.Carefully hang the mirror onto the wood screw by safety cable (you can choose one of two means for hanging mirror, one is that the longer side of mirror is down, the other is shorter of mirror is down).

7.Retain this sheet for future reference.

07.07

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Triarch manual Assembly Instruction for MR29230

MR29230 specifications

The Triarch MR29230 is a cutting-edge robotic system designed for both industrial and research applications, enhancing automation processes with its innovative features and advanced technologies. This versatile robot boasts a robust design that can tackle demanding tasks while ensuring precision and efficiency.

One of the defining characteristics of the MR29230 is its advanced motion control system, enabling seamless operation across a wide range of environments. With a high payload capacity, it can handle various tools and materials, making it suitable for diverse industries such as manufacturing, logistics, and assembly. The robot's articulated arm is engineered for flexibility, allowing it to reach difficult angles and positions, which greatly improves its operational range.

The MR29230 incorporates state-of-the-art sensors that enhance its ability to perceive and interact with its surroundings. This includes vision systems equipped with high-resolution cameras that allow the robot to identify and differentiate between multiple objects. Moreover, the integration of LIDAR technology enhances spatial awareness, enabling the MR29230 to navigate complex environments without colliding with obstacles.

In terms of software capabilities, the MR29230 runs on an intuitive platform that supports easy programming and integration with existing systems. Users can take advantage of built-in libraries and pre-defined scripts to accelerate the deployment process. Real-time data analysis features also allow operators to monitor performance metrics, ensuring that processes remain optimized.

The design of the MR29230 focuses on user-friendliness, with features such as a modular architecture that allows for quick maintenance and upgrades. Additionally, it is equipped with safety protocols that prioritize human safety, including emergency stop buttons and collision detection systems that halt operations if a human enters its working area.

Energy efficiency is another hallmark of the Triarch MR29230, designed to minimize power consumption while maintaining high performance levels. Its lightweight materials and advanced motor technologies contribute to reduced energy costs, making it an environmentally friendly option for businesses looking to optimize their operations.

In summary, the Triarch MR29230 excels in versatility, intelligence, and efficiency. With its advanced motion control, high payload capacity, robust sensors, user-friendly software, and focus on safety and energy efficiency, it stands as a leading choice for organizations looking to elevate their automation capabilities.