FULL OVERLAY PANEL INSTALLATION INSTRUCTIONS

Step 1: Verify door alignment

Verify that the door is aligned with the cabinet prior to fabricat- ing the custom panel. Failure to do so could result in mis-align- ment of the custom panel with the hinge bracket. If alignment is necessary the door may be adjusted by loosening the 2 screws which secure the hinge adapter brackets on the top and bottom of the door and adjusting the door side to side. Use a 5/32” allen wrench for this procedure. (See Figure 8 below). When finished aligning the door, tighten the screws securely.

Step 4: Cut overlay panel

Depending on the refrigerator model cut the overlay panel to the dimensions shown. Use Figure 9 and Table A for glass door models.

The non-glass, solid door, will use the same height and width di- mensions as the glass door. The center of the solid door custom panel will not be removed.

NOTE

Hinge adapter brackets lo- cated on the top and bottom of the door.

Remove the top hinge pin to re- move the door.

9/32”

(7mm)

For overlay with lock option panel thickness to be 3/4” (19mm) maximum to 5/8” (16mm) minimum.

Weight of the overlay panel should not exceed 20 pounds (9.1 kilograms).

NOTE

For the door to close properly, it is necessary to maintain a minimum space of 9/32” (7mm) between the door and cabinet flange, (see Figure 8). This space can be adjusted by adjusting the top and bottom hinge adapter brackets.

 

Door should be

 

parallel to top

Figure 8

and sides of

refrigerator.

 

Step 2: Remove door

Remove the top hinge pin from the hinge with an 1/8” allen wrench. Remove the door by angling the top of the door out- ward and lifting the door off the bottom hinge.

(See detail in Figure 8).

Step 3: Remove gasket

Lay the door on its front being careful not to scratch it. Remove the door gasket by peeling up and out of the channel.

 

W

 

 

 

2-1/32”

 

Overlay

(38.77cm)

H

minimum

panel

 

 

 

dimensions

 

 

Figure 9

 

 

Glass Door Models and

 

 

Solid Door Models

 

Model

W

H

6GARM

23-5/8”

30-3/8”

(60.0cm)

(77.17cm)

 

Table A

Glass Door Models and

Solid Door Models

9

Page 9
Image 9
Marvel Group 6GARMP Full Overlay Panel Installation Instructions, Verify door alignment, Cut overlay panel, Remove door

6GARMP, 6GARM specifications

Marvel Group 6GARM and 6GARMP represent the latest advancements in the realm of high-performance specialized technologies, specifically tailored for the modern demands of network communications and data processing. These groups are indicators of a new trend in mobile communication and computing capabilities, designed to overcome the limitations of existing systems while paving the way for future developments.

One of the primary features of the 6GARM and 6GARMP is the integration of advanced artificial intelligence (AI) algorithms. This integration enables predictive maintenance and autonomous decision-making processes, significantly enhancing the efficiency of network management. By analyzing vast amounts of data in real-time, these AI capabilities ensure optimal performance and connectivity, thereby reducing downtime and improving user experiences.

In terms of technologies, 6GARM and 6GARMP leverage cutting-edge materials science to enhance the durability and lightweight characteristics of devices. This includes the use of graphene and other nanomaterials, which not only improve signal strength and range but also facilitate energy-efficient operations. As a result, users can expect longer battery life and reduced energy consumption, crucial features for an increasingly mobile and connected world.

Another characteristic that sets the 6GARM and 6GARMP apart is their compatibility with a wide array of devices and platforms. The architecture is designed to support seamless integration across different applications, from smart home devices to industrial IoT systems. This versatility ensures that users can enjoy a cohesive experience, regardless of the technology they are utilizing.

Moreover, the cognitive networking capabilities of 6GARM and 6GARMP allow for adaptive and self-organizing network operations. This means that the network can dynamically allocate resources based on current demand, optimizing bandwidth and ensuring consistent service quality. With the expected proliferation of connected devices, such a feature is essential in maintaining reliable and efficient communications.

Finally, security is a paramount concern for the 6GARM and 6GARMP frameworks. They incorporate advanced encryption techniques and decentralized security protocols to safeguard user data and ensure privacy. As cyber threats continue to evolve, the emphasis on robust security measures in these technologies is critical in fostering user trust and confidence.

In summary, Marvel Group 6GARM and 6GARMP represent a transformative leap in connectivity and performance, underpinned by AI, advanced materials, versatile compatibility, cognitive networking, and enhanced security. As these technologies continue to develop, they are poised to redefine the landscape of communication and data processing in the digital age.