OnyxDrafting Table

Assembly Instructions

Tools required: Phillips screwdriver and awl or 1⁄16" drill.

Parts Included:

B 2 pcs

C 2 pcs

E 4 pcs

F 2pcs

A 1 pc

 

Rear extension tubes

Front extension tubes

 

G 12 pcs

H 1 pc

Base frame

½" Phillip screws

Pencil ledge

Height

 

adjustment collars

Front guide tracks

J2 pcs

Pencil ledge screws

To Assemble: Unpack and inspect contents to confirm you have all the parts listed above.

1

A

 

Open base frame (

) in the upright position and place one

 

E

height adjustment collar (

) on top of each leg tube as

shown in figure 1. Position adjustment knobs facing out

and tighten lower screws using a Phillips screwdriver.

Figure 1

Figure 2

2

Insert front and rear extension

 

 

B

C

 

 

tubes, (

) and (

), into base frame

 

Rear extension tube

 

as shown in figure 1. For the time

 

 

being, set each tube at a height of

 

 

 

 

 

 

approximately 4" and lock into place

 

 

 

by tightening adjustment knob.

 

 

 

(see figure 2).

 

 

 

Front extension tube

 

Adjustment knob

 

 

 

 

Lower Phillips screw

 

3Place your drawing board/tabletop on a soft pad or carpet to avoid scratches with the best side facing down. Turn the assembled base

 

 

A

 

 

 

frame (

) upside down and place on tabletop as shown in figure 3.

 

Position the frame according to the dimensions in figure 4,

 

depending on the size or your tabletop. Center from left to right.

 

 

 

F

 

 

Place front guide tracks (

) under front leg extensions as shown.

 

Use an awl or a ⁄16" drill to start screw holes.

 

4

 

 

1

 

 

Be careful not to drill all the way through tabletop.

 

5

Attach rear extension brackets and front guide

 

 

 

 

G

tracks to tabletop using ½" Phillips screws (

).

Hint

Since some screws are hard to reach, try spinning

adjustment collar so that adjustment knob is out of your way.

 

 

6

Once all screws are secure, return table to its upright

position and adjust tube extensions until tabletop is at

 

 

desired height and angle.

 

 

Figure 3

Rear extension brackets

Front guide tracks

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Image 1
Alvin Onyx dimensions Rear extension tubes, Pcs, Insert front and rear extension, Tubes, By tightening adjustment knob

Onyx specifications

Alvin Onyx is an advanced autonomous underwater vehicle (AUV) designed for deep-sea exploration and research. Developed to meet the growing demands of marine science, this cutting-edge vehicle integrates a variety of innovative technologies and features that make it a cornerstone of modern oceanographic studies.

One of the main characteristics of Alvin Onyx is its robust, hydrodynamic design, which allows it to navigate efficiently through challenging underwater environments. With a streamlined structure, the AUV can reach depths of up to 6,000 meters, enabling researchers to explore some of the most remote and least understood areas of the ocean.

The vehicle is equipped with state-of-the-art sensors and imaging technologies, including multi-beam sonar and high-resolution cameras, which provide detailed mapping of the ocean floor and the surrounding ecosystem. This capability is crucial for researchers studying marine habitats, biodiversity, and geological features. The sensors also allow for real-time data collection and analysis, facilitating immediate decision-making during research expeditions.

Alvin Onyx incorporates advanced communication systems, enabling seamless data transfer between the AUV and research vessels. This connectivity allows scientists to monitor the AUV's activities in real-time and to make adjustments to the mission as needed. Additionally, the AUV can operate on pre-programmed missions, using sophisticated algorithms to navigate autonomously while avoiding obstacles.

Powering the Alvin Onyx is a hybrid energy system that combines rechargeable batteries with solar panels, extending its operational range and reducing the need for frequent returns to base. This sustainability feature is essential for long-duration missions, promoting a lower environmental impact during explorations.

Another notable aspect of Alvin Onyx is its modular design, which allows for the integration of various scientific instruments depending on the mission requirements. This flexibility ensures that the AUV can be adapted for different research objectives, whether for marine biology studies, geological surveys, or oceanographic data collection.

In summary, Alvin Onyx represents a significant advancement in underwater exploration technology. Its combination of depth-capable design, sophisticated sensor systems, advanced communication tools, and modular flexibility makes it an invaluable asset for researchers dedicated to understanding and protecting our oceans. As the demand for marine research continues to grow, AUVs like Alvin Onyx will play an increasingly vital role in uncovering the mysteries of the deep sea.