No. Part name

 

Procedure

Remarks

 

 

 

ƒ Adjust corner

1. Detachment

 

cap

1)

Perform work of item 1. of .

 

 

2)

Remove screws at 4 corners of the

 

 

 

suction port. (Ø4 × 10, 4 pcs.)

 

 

3)

Push the knob outward and remove the

Screw

 

 

adjust corner cap by sliding it.

 

2.Attachment

1)Mount the adjust corner cap by sliding it inward.

2)Tighten screws at 4 corners of the suction port. (Ø4 × 10, 4 pcs.)

Push outward

Ceiling panel

1. Detachment

1)Perform works of items 1 of , 1 of and 1 of ƒ.

2)Remove the louver connector (CN33,

White, 5P) connected to the control

Remove the

P.C. board, and then remove the lead

louver connector

wire from the clamp.

 

 

 

NOTE :

 

Remove the connector by releasing

 

locking of the housing.

 

 

 

3)Remove screws fixing the ceiling panel. (M5, 4 pcs.)

4) Push the tentative hook outward to

Fixing screw

remove the ceiling panel.

 

2.Attachment

1)Hang the tentative hook of the main body drain pan to the tentative hook of the ceiling panel.

NOTE :

A panel has directional property, so mount a panel with attention to the marks.

Push the tentative hook outward

2) Tighten fixing screws. (M5, 4 pcs.)

3) Connect louver connector of the ceiling panel to connector (CN33, White, 5P) on the control P.C. board.

– 120 –

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Toshiba RAV-SM1102UT-E, RAV-SM1402UT-E, RAV-SM802UT-E, RAV-SM562UT-E service manual 120

RAV-SM562UT-E, RAV-SM802UT-E, RAV-SM1402UT-E, RAV-SM1102UT-E specifications

Toshiba has established itself as a leading name in the field of heating, ventilation, and air conditioning (HVAC) systems. Among their extensive range, the RAV-SM802UT-E, RAV-SM1102UT-E, RAV-SM1402UT-E, and RAV-SM562UT-E stand out for their performance, efficiency, and innovative technology.

The Toshiba RAV-SM802UT-E is designed for medium-sized commercial spaces, providing a cooling capacity of 8 kW. It employs advanced inverter technology, which enables it to adjust the compressor speed based on the load demand. This adaptability leads to a significant decrease in energy consumption, making the unit both eco-friendly and cost-effective. The unit also features a high-efficiency rotary compressor and a wide operating temperature range, ensuring reliable performance even in extreme weather conditions.

Next in line, the RAV-SM1102UT-E offers an impressive 11 kW cooling capacity, making it suitable for larger commercial applications. This model incorporates Toshiba’s cutting-edge Superlink technology, which allows multiple indoor units to be connected to a single outdoor unit, providing flexible installation options. The RAV-SM1102UT-E is also equipped with a sleek and modern design that blends seamlessly with any architecture while ensuring low noise levels during operation, enhancing comfort in the workspace.

The RAV-SM1402UT-E is a powerhouse among the series, boasting a cooling capacity of 14 kW. It is built with an enhanced refrigerant management system that minimizes refrigerant leaks and optimizes thermal efficiency. This model supports smart building management systems, making it an ideal choice for tech-savvy businesses looking to integrate their HVAC systems into a broader energy management framework. Furthermore, it maintains high EU energy efficiency ratings, verifying Toshiba's commitment to environmental sustainability.

Lastly, the RAV-SM562UT-E, with its 5.6 kW cooling capacity, is tailored for smaller commercial environments and residential use. It retains all the core technologies featured in its counterparts, including inverter technology and a high-efficiency compressor, ensuring comfort without excessive energy usage. This model also includes a user-friendly remote control and programmable timer functions, allowing for customized comfort settings and enhanced convenience.

In summary, the Toshiba RAV-SM series represents the pinnacle of HVAC innovation, blending energy efficiency with advanced technology. Each model caters to specific needs, from the compact RAV-SM562UT-E to the robust RAV-SM1402UT-E, ensuring that every commercial and residential space can achieve optimal climate control.