Installation Instructions

3PREPARE AIR CONDITIONER (CONT.)

CLoosen the lower screw on each side of the case and hook a security bracket on each side. To allow for later adjustment, do not tighten screws until installing the unit in the window.

Security bracket

Security bracket

DInsert the frames of the accordion panels into the top and bottom mounting rails. Attach the accordion panels to the side of the case using 6 type A screws.

Top mounting rail

Accordion panels

4INSTALL AIR CONDITIONER IN WINDOW

ACut the window sash seal to the window width and stick the adhesive side to the bottom of the sash.

Window sash seal

BPlace the air conditioner on the sill with the bottom mounting rail against its back edge. Center it and close the window securely behind the top mounting rail.

It should be level or slightly tilted to the outside. Use a level; about a 1/3 bubble will be the correct case slant to the outside.

4INSTALL AIR CONDITIONER IN WINDOW (CONT.)

CExtend the left and right accordion panels to the vertical window sashes and attach with 4 type B screws.

 

Type B

Type B

screws

screws

 

Type B screw

DAttach the brackets to the sill on both sides using two type B screws.

ETighten the screws to secure the brackets in place on each side of the air conditioner.

5INSTALL SECURITY BRACKET AND FOAM TOP WINDOW GASKET

AAttach a security bracket with a type B screw.

BCut the foam top window gasket to the window width.

CStuff the foam between the glass and the window to prevent air and insects from getting into the room.

Caulk or weather-strip any gaps or openings to the outside to seal the installation.

The installation is now complete.

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GE ASM06* installation instructions Install AIR Conditioner in Window, Install Security Bracket and Foam TOP Window Gasket

ASM06* specifications

The GE ASM06* is a sophisticated gas turbine engine designed and manufactured by General Electric, specifically tailored for aviation applications. This powerful engine is a result of advanced engineering and innovative technologies aimed at delivering superior performance, efficiency, and reliability.

One of the main features of the ASM06* is its robust design, which integrates state-of-the-art materials and manufacturing processes. Utilizing advanced composite materials in fan blades and complex cooling systems, the engine achieves a remarkable balance between weight and performance, which is crucial for maximizing fuel efficiency and minimizing operational costs.

The ASM06* incorporates a high bypass ratio, which enhances its thrust capabilities while reducing noise emissions. This is especially beneficial for commercial aviation, as it meets stringent environmental regulations while providing a comfortable flying experience. The fan configuration also plays a significant role in optimizing aerodynamic performance, leading to better fuel consumption compared to older models.

Another standout characteristic of the ASM06* is its advanced digital engine control system. This system allows for real-time monitoring and precise adjustments to engine parameters, ensuring optimal performance under various flying conditions. The use of innovative sensors and control algorithms provides significant reliability and enhances maintenance capabilities, enabling operators to monitor engine health and performance efficiently.

In terms of technology, the ASM06* features high-efficiency combustors designed to minimize nitrogen oxide (NOx) emissions. These advanced combustor technologies help the engine to operate with lower environmental impact while maintaining high power output. The use of additive manufacturing techniques has also been a game-changer in producing complex components that were previously difficult to fabricate, resulting in a reduction of weight and an increase in durability.

The modular design of the ASM06* facilitates easier maintenance and quicker turnaround times, which is vital for airlines looking to maximize aircraft availability. This capability not only reduces operational expenses but also enhances overall fleet performance.

In conclusion, the GE ASM06* represents a significant advancement in gas turbine technology, combining high performance, fuel efficiency, and lower emissions. Its innovative features and characteristics make it an attractive choice for airlines looking to improve their operational effectiveness while adhering to environmental standards. With its advanced design and technologies, the ASM06* will undoubtedly play a critical role in the future of aviation engines.