12.Attach the upper end of one of the Weight Guides (53) to the bracket on the Upright (43) with an M8 x 30mm Bolt (64) and an M8 Washer (77).

Attach the other Weight Guide (53) to the other Upright (43) in the same manner.

Tighten all of the Nylon Locknuts used in steps 1 to 12.

13.Press a 50mm x 70mm Outer Cap (10) onto each end of the Stabilizer (13).

Attach the Stabilizer (13) to the Bench Frame (5) with two M10 x 60mm Button Head Bolts (12) and two M10 Nylon Locknuts (11). Note: Position the

Stabilizer so that the warning decal is in the position shown.

Note: Do not tighten the Nylon Locknuts yet.

14.Press a 50mm Square Outer Cap (20) onto each end of the Bench Base (7).

Attach the Bench Base Joint Plate (19) to the Bench Base (7) with two M10 x 70mm Bolts (21), two M10 Washers (6), and two M10 Nylon Locknuts (11).

Attach the Bench Leg (1) to the Bench Base Joint Plate (19) with two M10 x 70mm Bolts (21), two M10 Washers (6), and two M10 Nylon Locknuts (11).

Be sure the welded nut is in the position shown. Note: Do not tighten the Nylon Locknuts yet.

15.Attach the Bench Leg (1) to the Bench Frame (5) with two Bench Joint Plates (18), four M10 x 70mm Bolts (21), and four M10 Nylon Locknuts (11).

Note: Tighten all the Nylon Locknuts used in steps 13-15.

12

 

 

 

64

 

 

 

 

 

 

 

 

77

 

 

53

 

43

 

 

 

 

13

 

 

 

11

 

 

 

 

 

 

 

 

13

 

5

10

 

Decal

 

 

 

 

 

 

 

12

 

 

 

 

10

14

 

 

 

Welded Nut

 

 

 

6

1

 

 

 

 

 

21

 

 

11

 

7

 

6

 

 

 

20

6

 

 

19

 

21

 

6

 

 

 

 

 

 

 

 

20

 

15

21

 

 

 

 

 

18

 

 

 

 

 

 

 

 

 

5

 

 

 

 

18

 

 

 

1

11

 

 

 

 

10

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Image 10
Image IMBE53901 user manual Tighten all of the Nylon Locknuts used in steps 1 to

IMBE53901 specifications

IMBE53901 is a cutting-edge image processing module that has garnered attention in various sectors, including healthcare, automotive, and security. Designed for high-performance applications, this module combines state-of-the-art technologies to deliver superior image quality and real-time processing capabilities.

One of the standout features of IMBE53901 is its advanced image sensor technology. Built with a high-resolution CMOS sensor, the module captures detailed images with exceptional clarity. This technology reduces noise and enhances color accuracy, making it ideal for applications where precision is paramount, such as medical imaging and surveillance.

The module is equipped with powerful image signal processing algorithms that optimize image quality in real time. These algorithms include features such as dynamic range optimization, noise reduction, and color correction. This ensures that the images produced are not only clear but also representative of real-life colors and details, which is crucial for diagnostic imaging and security monitoring.

Another key characteristic of IMBE53901 is its versatility in connectivity options. The module supports various protocols, including USB, Ethernet, and wireless connectivity, making it easy to integrate into existing systems. This flexibility allows developers to implement the module in diverse environments, whether it be in standalone devices or as part of a larger network.

Moreover, IMBE53901 is designed with efficiency in mind. It features low power consumption technology, which is particularly important for battery-operated devices or applications where energy efficiency is critical. This capability ensures that the module can perform high-level processing without draining power resources, extending the lifespan of the devices it is integrated into.

The compact design of the IMBE53901 also contributes to its appeal. Despite its robust capabilities, the module is lightweight and can be easily embedded in a variety of devices. This makes it an excellent choice for manufacturers looking to add advanced imaging capabilities to their products without compromising on space or weight.

In summary, IMBE53901 stands out as a leading image processing module that combines high-resolution imaging, advanced processing algorithms, versatile connectivity, energy efficiency, and a compact design. These features make it an appealing solution for industries seeking to enhance their imaging applications, ensuring they remain at the forefront of technology.