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HyperMulti KX-KXR

HyperMulti KX-KXR
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HyperMulti KX-KXR

Product catalog summary
Safety Precautions
Before using the air-conditioner, it is essential to read the User's Manual thoroughly. The air-conditioner is intended for human use only and should not be used for storing food, animals, or precision devices. Improper use can lead to quality degradation or damage. Installation should be performed by a specialist to prevent water leakage, electric shocks, and fires. The outdoor unit must be installed on a stable base and not in areas where combustible gas could leak.
Refrigerant and Environmental Considerations
The air-conditioner uses R410A refrigerant, which is non-toxic and non-flammable. In small rooms, measures should be taken to prevent refrigerant leaks from exceeding tolerable levels, such as installing ventilation devices. In snowy areas, a snow-prevention hood should be installed to prevent snow from obstructing the air intake or freezing inside the unit.
Heating Performance and Maintenance
The heating performance is measured under specific conditions (outdoor temperature of 7°C and indoor temperature of 20°C) as per ISO Standards. Performance decreases with lower outdoor temperatures, so additional heating appliances may be necessary. Regular servicing is recommended to maintain performance, and a maintenance contract with a specialist is advised.
Installation and Usage Recommendations
Units should not be installed in oil-rich environments, acidic or alkaline atmospheres, or areas with high ceilings without additional circulation measures. The sound values provided are measured in controlled environments and may differ in actual installations due to surrounding noise.
Product Specifications
The catalog details a wide range of outdoor and indoor units with various capacities and configurations. The KX6 series boasts high efficiency with the industry's highest COP levels, compact design, and advanced inverter control systems. The units are designed for easy transportation and installation, with features like a compact high-efficiency heat exchanger and a new twin rotary compressor.
Technological Advancements
The air-conditioners incorporate advanced technologies such as vector inverter control systems and DC fan motors, which enhance efficiency and performance. The design optimizes air flow and heat exchanger efficiency, contributing to reduced running costs and environmental impact.
Overview: The document outlines advancements in refrigeration circuit technology, focusing on the KX6 series. Key improvements include enhanced control systems, increased efficiency, and greater design flexibility.
Specifications: The KX6 series features a compact integrated PCB with a 50% reduction in size, a new Superlink system control, and a fan blade design inspired by aerospace technology for increased air volume with less power input. The 3D scroll compressor offers high efficiency by compressing refrigerant both radially and axially.
Design Flexibility: The KX6 series allows for increased indoor unit connection capacity, ranging from 150% to 200% compared to previous models. This flexibility is achieved through a new lineup of indoor units and improved piping systems.
Control Systems: The series supports a wide range of control systems, including individual controllers, center consoles, and PC interfaces. It also integrates with BMS interfaces like BACnet and Lonworks.
Efficiency and Performance: The KX6 series employs a new inverter control with vector control technology, enhancing energy efficiency and system control. The use of a DC fan motor improves efficiency by approximately 60% over previous models.
Serviceability: The design allows for easy access to service parts and quick operation checks, reducing installation errors and maintenance time. The system supports a wide range of operations, including heating at temperatures as low as -20ºC.
Installation and Transportation: The KX6 series is designed for easy transportation and installation, with a reduced footprint that fits in standard elevators, eliminating the need for cranes.
Refrigerant and Piping: The series uses R410A refrigerant with reduced piping diameters, lowering installation costs. The system supports long piping lengths, with a maximum total length of 1000m.
Applications: The KX6 heat pump systems are suitable for a wide range of applications, from individual apartments to large multi-storey buildings, offering both heating and cooling operations.
Specifications and Features:
The document outlines the specifications and features of the KX6 and KXR6 series heat pump systems. These systems are designed for both cooling and heating operations, with a switch available to fix the operational mode to avoid energy wastage. The systems support a total piping length of up to 1000m and can connect indoor units up to 160m away from the outdoor unit.
Construction and Maintenance:
The control box structure has been improved from a 4-layer to a 3-layer construction, making service and maintenance easier. The systems are equipped with RS232C for direct PC connection, simplifying monitoring and service tasks with the "Mente PC" software.
Monitoring and Diagnostics:
The KX6 series includes features for servicing and troubleshooting, with data displayed on a 3-digit or 6-digit display on the outdoor unit PCB. Detailed fault diagnosis and operation history are available via a 7-segment display.
Corrosion Resistance:
The application of blue coated fins for the heat exchanger improves corrosion resistance compared to previous models.
Back-up Operation:
In the event of a compressor failure, the system can continue operating with a good compressor in a 2-compressor module or with another unit in a combined module.
Refrigerant and Piping:
The systems use R410A refrigerant with reduced refrigerant volume due to thinner diameter pipes, reducing piping work costs. The systems operate with a 2-pipe system, suitable for a wide range of applications.
Airflow and Control:
The systems feature automatic external static pressure control and individual flap control systems for optimized airflow. Wireless remote control is available with an additional panel.
Installation and Dimensions:
Minimum installation space requirements are specified, with detailed dimensions provided for various models. The systems require specific clearances and anchoring for optimal performance.
Energy Efficiency:
The KX6 systems offer high efficiency with a COP of up to 4.0 in cooling mode. They are compliant with European energy labeling regulations, with SEER and SCOP ratings provided.
Overview: The document provides detailed specifications and installation guidelines for the KX6 heat pump 2-pipe systems, which are designed for high-performance Variable Refrigerant Flow (VRF) applications. These systems are suitable for either cooling or heating in open-plan areas.
Specifications: The KX6 systems are available in various capacities ranging from 4HP to 16HP, with nominal cooling capacities from 11.2kW to 45.0kW. They employ DC inverter compressors and use R410A refrigerant. The systems offer high efficiency with a Coefficient of Performance (COP) in cooling up to 4.0. The total piping length can reach up to 1000m, with a maximum pipe run of 160m.
Installation Requirements: The document outlines specific installation requirements, including a minimum overhead clearance of 1m and the use of anchor bolts for securing the units. It also specifies the necessary clearances around the units to ensure proper airflow and operation.
Operational Range: The systems operate within a temperature range of -20ºC to +43ºC for cooling and -15ºC to +15.5ºC for heating. The sound pressure levels are measured in an anechoic chamber and may vary under actual operating conditions.
Connection and Piping: The document details the refrigerant piping sizes and the number of connectable indoor units, which can be up to 40 units for the largest systems. It also provides guidelines for the maximum height differences between indoor and outdoor units.
Energy Efficiency: The systems are rated with energy classes A+/A+ for cooling and heating, respectively, and have specific Seasonal Energy Efficiency Ratio (SEER) and Seasonal Coefficient of Performance (SCOP) values.
Notes and Recommendations: The document includes notes on installation practices, such as ensuring the blower outlet faces perpendicularly to dominant wind directions and using specific pipe sizes for European installations. It also highlights the importance of not surrounding the unit with walls on all sides and maintaining proper spacing for optimal performance.
Specifications and Dimensions
All measurements are in millimeters. The unit must be secured with anchor bolts and requires a minimum of 2 meters of space above it. The nameplate is located on the lower right corner of the front panel. Ports for refrigerant and power cables are covered with half-blanks, which need to be cut for use. A ø88 port is recommended for refrigerant pipe connections. Anchor holes marked 'L J' are for renewal installations, and an oil-equalizing pipe should be used when combining outdoor units.
Nominal Cooling Capacity
The document lists various models with cooling capacities ranging from 73.5kW to 136.0kW. These models are part of heat pump combination systems with nominal horsepower ranging from 26HP to 48HP.
Electrical and Operational Characteristics
All models operate on a 3 Phase 380-415V, 50Hz power source. The KX6 heat pump systems are designed for high performance in either cooling or heating applications, suitable for open plan areas. They can connect up to 80 indoor units with a capacity of up to 160%. The systems use DC inverter compressors and support a total piping length of up to 1000 meters.
Installation Guidelines
Installation must be performed by a competent engineer using refrigeration quality copper tubes. The pipework should be pressure tested for leaks using dry nitrogen before connecting outdoor units. Additional R410A refrigerant should be charged by weight using electronic scales, based on the system's liquid refrigerant pipework length and diameter.
Piping Arrangements
The document provides examples of piping arrangements using branch pipe kits and headers. It specifies the sizes for liquid and gas pipes for different outdoor unit capacities. The branch piping sets and header sets are detailed for various capacities and configurations.
Specifications:
Mitsubishi KX6 equipment is designed for high quality and reliability, requiring installation by trained engineers using refrigeration quality copper tubes compliant with EN12735 European standards. The system uses R410A refrigerant, and pipework must be pressure tested with dry nitrogen to prevent leaks.
Installation Procedures:
Interconnecting pipework must use supplied branch and manifold kits, avoiding standard fittings. All brazed joints should be made with a dry nitrogen purge to prevent oxidation. Moisture and contaminants must be avoided during installation.
Refrigerant and Piping:
Additional R410A refrigerant must be charged by weight using electronic scales. Pipe sizes vary based on the distance to the furthest indoor unit, with specific sizes for gas and liquid pipes.
Wiring Requirements:
The KX6 design simplifies wiring with a polarity-free two-wire control loop. Separate power supplies are needed for outdoor (3-phase) and indoor (1-phase) units. Control wiring is a 5 Volt DC, non-polarized, two-wire connection.
Heat Recovery Systems:
The KXR6 system allows simultaneous heating and cooling with a unique three-pipe system. It supports up to 48HP/136.0kW on a single system and is not suitable for continuous cooling below 5ºC.
Energy Efficiency:
The KXR6 series achieves high COP levels, meeting Class A energy-saving standards. The system supports a wide range of indoor units, with up to 80 units connectable to the largest capacity outdoor unit.
Overview: The document provides detailed specifications and operational guidelines for the KXR6 heat recovery systems, which are designed for simultaneous heating and cooling. These systems are suitable for various building types and offer high energy efficiency through the use of DC inverter compressors.
Specifications: The KXR6 systems range from 8HP to 48HP, with cooling capacities from 22.4kW to 68.0kW. They utilize a 3-pipe system for heat recovery, allowing for simultaneous heating and cooling. The systems can connect up to 80 indoor units, with a total piping length of up to 1000m and a maximum pipe run of 160m.
Energy Efficiency: The systems boast a high Coefficient of Performance (COP), ranging from 3.7 to 4.2 in cooling mode, ensuring reduced running costs and environmental impact. They meet the Class A energy-saving standards.
Installation Guidelines: The document outlines specific installation requirements, including securing units with anchor bolts, allowing sufficient space above units, and proper connection of refrigerant piping. It also details the dimensions and weight of various models.
Operational Considerations: The systems are not suitable for continuous cooling operations in environments where outdoor temperatures fall below 5ºC. During defrosting or compressor protection periods, heating or cooling operations may temporarily stop.
Limitations: Certain models, such as FDUT15KXE6F-E and FDTC15KXE6F, cannot be connected to KXR systems. Additionally, some models are not available in the EU/EEA area.
Specifications:
The document outlines specifications for various models of heat recovery systems, including FDC504KXRE6, FDC560KXRE6, FDC615KXRE6, and FDC680KXRE6, with nominal cooling capacities ranging from 50.4kW to 68.0kW. The systems operate on a 3 Phase 380-415V, 50Hz power source and use R410A refrigerant. The systems are designed for simultaneous heating and cooling with a high performance VRF system.
Procedures:
Installation requires securing units with anchor bolts and ensuring a space of 2m or more above the unit. Refrigerant piping connections (suction gas, discharge gas, liquid) must be made on-site. The refrigerant piping connection entrance and power supply intake are half blank shapes that need to be cut before use.
Norms and Standards:
Measurements are taken under ISO-T1 conditions, with specific indoor and outdoor temperatures for cooling and heating. Sound pressure levels are measured in an anechoic chamber, with actual operation levels being higher due to ambient conditions.
Recommendations:
Use ø88 (or ø100) for refrigerant piping connection entrances. Anchor holes (M10x10) marked I, J, and M should be used for renewal purposes. The oil equalization pipe marked K should only be connected with the outdoor combination unit.
Key Data from Tables and Diagrams:
The document includes detailed dimensions and piping sizes for various models, with a total piping length capability of up to 1000m and a maximum pipe run of 160m. The systems can connect from 50% up to 160% capacity indoor units, with a maximum height difference of 50m above and 40m below the outdoor unit.
Overview: The document provides detailed technical specifications and installation guidelines for the KXR6 heat recovery systems, which are designed for high-performance Variable Refrigerant Flow (VRF) applications. These systems allow for simultaneous heating and cooling operations across individual indoor units, optimizing energy efficiency through the use of DC inverter compressors.
Specifications: The KXR6 systems support a range of models with varying nominal cooling capacities from 96.0kW to 136.0kW. The systems can connect from 50% to 130% capacity of indoor units, with a maximum piping length of 1000m and a maximum pipe run of 160m. The systems operate on a 3-phase 380-415V, 50Hz power source.
Installation Guidelines: The document outlines the necessary steps for installing the systems, emphasizing the importance of using high-quality materials and proper installation techniques to ensure reliability. Key installation points include securing the unit with anchor bolts, allowing sufficient space above the unit, and correctly connecting refrigerant piping.
Refrigerant Piping: The document specifies the sizes and types of connections required for refrigerant piping, including suction gas, liquid, and discharge gas lines. It also highlights the importance of using brazing methods to reduce the risk of refrigerant leakage.
Control Systems: The KXR6 systems support individual and central control options, allowing for flexible operation modes. The PFD control boxes enable connection of multiple indoor units, with options for individual control of up to four units.
Performance and Efficiency: The systems achieve a Coefficient of Performance (COP) ranging from 3.3 to 3.8 in cooling mode. The document provides performance data measured under specific conditions, ensuring users can optimize system efficiency.
Recommendations: The document recommends using trained engineers for installation and highlights the importance of adhering to specified guidelines to ensure optimal performance and longevity of the systems.
Specifications:
The document outlines the specifications for installing copper tubing in air conditioning systems using R410A refrigerant. The copper tubes must adhere to the EN12735 European standard due to the high operating pressures of R410A. Branch pipe kits and manifold kits are required for connections, and standard fittings are not permitted. All installations must follow the manufacturer's instructions and European standard E378:2000.
Installation Procedures:
During installation, it is crucial to prevent moisture, dirt, and contaminants from entering the copper pipes and air conditioning units. After installation, the pipework must be pressure tested for leaks using dry nitrogen. Additional R410A refrigerant should be charged by weight using electronic scales, with the amount calculated based on the manufacturer's data.
Electrical Wiring:
The document specifies separate power supplies for outdoor (3-phase) and indoor (single-phase) units. Control wiring connects outdoor to indoor units using a non-polarized, two-wire connection. The maximum number of indoor units in a system is 128, and the wiring must be a 2-core shielded cable. Signal lines should not form a loop, and specific wire sizes are recommended based on length.
Design and Efficiency:
The new design of the KXR6 equipment includes simplified wiring and a compact design with reduced height for indoor units. The use of DC fan motors enhances energy efficiency and reduces weight. The document also highlights the improved air flow control and heat exchanger design.
Key Parameters:
Nominal cooling and heating capacities are provided for various models, along with power consumption and sound power levels. The document includes detailed specifications for different models of indoor units, such as the FDT series, with specific dimensions and capacities.
Specifications:
The document outlines specifications for various ceiling cassette air conditioning units, including models FDT, FDTC, and FDTW. Key specifications include nominal cooling and heating capacities, power consumption, sound power and pressure levels, exterior dimensions, net weight, air flow rates, and refrigerant piping sizes. The units operate on a power source of 1 Phase 220-240V, 50Hz.
Design and Features:
The units feature an individual flap control system allowing for adjustable air flow directions, enhancing installation flexibility. The design includes a thinnest profile due to a new heat exchanger design and DC fan motors, improving energy efficiency and reducing weight. The FDTC models fit into standard 600x600mm ceilings and include a condensate drain pump as standard.
Sound Levels:
Sound pressure levels are measured in anechoic chambers, with operational values slightly higher due to ambient conditions. The document provides specific sound pressure levels for each model, with the FDTC15KXE6F achieving the industry's lowest sound pressure level of 25dB(A).
Installation and Maintenance:
Installation data includes options for outside air intake using OA spacers and joint ducts. The document highlights the ease of installation and maintenance, with features like a transparent access hole for checking the drain pan's condition and a flexible hose for drainage.
Remote Control Options:
Various wired and wireless remote control options are available, including models RC-EX1A, RC-E5, RCH-E3, and RCN-T-36W-E, allowing for enhanced user control over the air conditioning units.
Specifications Overview:
The document provides detailed specifications for various HVAC models, including FDTW, FDTS, FDTQ, and FDU series. Each model is described with its nominal cooling and heating capacities, power consumption, sound levels, dimensions, and weight.
Power Source and Consumption:
All models operate on a single-phase 220-240V, 50Hz power source. Power consumption varies across models, with specific values provided for cooling and heating modes.
Sound Levels:
Sound power and pressure levels are specified for each model, measured in an anechoic chamber. Actual operational values may be higher due to ambient conditions.
Dimensions and Weight:
Detailed dimensions (H x W x D) and net weight are provided for each unit and panel, facilitating installation planning.
Air Flow and External Static Pressure:
Air flow rates are specified in cubic meters per minute, with options for adjusting external static pressure using remote controls.
Installation and Piping:
Installation data includes refrigerant piping sizes and options for remote control (wired and wireless). Models offer flexible installation options with features like upward drainage discharge and compact design.
Additional Features:
Some models include features like washable air filters, optional remote controls, and powerful high-mode selections for enhanced performance.
Recommendations and Best Practices:
The document suggests using specific remote controls for optimal operation and highlights the importance of considering ambient conditions when evaluating sound levels.
Overview: This document provides technical specifications and installation guidelines for various models of ceiling suspended and floor standing air conditioning units, specifically the FDE and FDF series. It includes details on cooling and heating capacities, power consumption, sound levels, dimensions, and installation requirements.
Specifications:
  • Models: FDE36KXE6F, FDE45KXE6F, FDE56KXE6F, FDE71KXE6F, FDE112KXE6F, FDE140KXE6F, FDFW28KXE6F, FDFW45KXE6F, FDFW56KXE6F.
  • Cooling Capacity: Ranges from 2.8 kW to 14.0 kW depending on the model.
  • Heating Capacity: Ranges from 3.2 kW to 16.0 kW.
  • Power Source: 1 Phase 220-240V, 50Hz.
  • Sound Levels: Vary by model, with sound pressure levels ranging from 30 dB(A) to 50 dB(A).
  • Dimensions: Provided in mm for each model, with specific height, width, and depth measurements.
  • Weight: Starting from 28 kg, facilitating easy installation.
Installation Guidelines:
  • Design: The units feature a slim and sleek design, allowing for quick and neat installation.
  • Piping: Refrigerant piping can be routed in three directions (rear, up, right), and drain piping in left or right directions.
  • Space Requirements: Specific spacing is required between units when installing multiple units, ranging from 4000 mm to 5000 mm depending on the model.
  • Flap Control: Flap positions can be adjusted to different angles for optimal air distribution.
Additional Features:
  • Remote Control Options: Both wired and wireless remote controls are available, with models RC-EX1A, RC-E5, RCH-E3, and RCN-E-E.
  • Air Filters: Washable plastic net filters are included, with quantities varying by model.
  • Quiet Operation: The design minimizes sound levels, enhancing comfort in various room settings.
Overview: The document provides technical specifications and operational details for the SAF-DX series, a heating or cooling coil system compatible with MHI KX6 series controls. It is designed for integration with SAF series total heat exchangers and other KX6/KXR6 indoor units.
Specifications: The SAF-DX series offers various models with different nominal cooling and heating capacities. The units operate on a 1 Phase 220-240V, 50Hz power source. Key specifications include power consumption, running current, exterior dimensions, net weight, air flow, and internal resistance. Refrigerant piping sizes vary across models.
Remote Control Options: The system supports both wired (RC-E5, RCH-E3) and wireless (RCN-KIT3-E) remote controls. The eco touch Remote Control (RC-EX1A) offers advanced features such as a touch screen panel, sleep timer, peak cut timer, and energy-saving operations. It can be connected to a PC for programming and control.
Control Systems: The Superlink network allows connection of up to 128 indoor units and 32 outdoor units, providing comprehensive control and management. The RC-E5 controller includes a weekly timer, auto restart, and error code display. It supports individual and center control systems.
Installation and Operation: The document outlines installation data, including refrigerant piping sizes and remote control options. The system supports various operation modes such as cooling, heating, and auto, with features like high power operation and energy-saving settings.
Additional Features: The eco touch Remote Control includes user-friendly features like individual flap control, automatic fan speed, and temperature increment settings. It also offers convenience features such as error code display, operation data display, and service reminders.
Specifications:
The document outlines the specifications for various control systems used in air conditioning units. It includes details on fan speed settings, remote control compatibility, and the number of indoor units that can be controlled. The systems mentioned include RCH-E3, SC-SL1N-E, SC-SL2NA-E, and SC-SL4-AE/BE, among others. The SC-SL4-AE/BE features a 9-inch color LCD touch panel and can control up to 128 indoor units.
Procedures:
The document describes procedures for start/stop control, monitoring, scheduling, and administration of air conditioning units. It includes instructions for connecting units to a network and using central control systems like SC-SL1N-E and SC-SL2NA-E. The document also covers the use of external timers and emergency stop functions.
Standards and Recommendations:
The air conditioning charges calculations are based on OIML, the international standard. The document recommends consulting a dealer for combinations of center controls and BMS interface units. It also advises on the need for additional engineering services for certain configurations.
Key Features and Functions:
The SC-SL4-AE/BE offers control, monitoring, scheduling, and service/maintenance functions. It supports control via PC using Internet Explorer. The SC-SL2NA-E allows grouping of up to 64 indoor units and provides detailed monitoring and control functions. The document highlights the importance of proper installation and the availability of test-run modes for troubleshooting.
Data and Connectivity:
The document details the method of data export and connectivity options, including USB/LAN and Ethernet. It mentions the use of Superlink- network for communication and control of indoor units. The SC-LGWNA-A interface device converts Superlink- communication data to LonWorks code for integration with building management systems.
Overview: The document provides technical specifications and integration details for Mitsubishi Heavy Industries (MHI) air conditioning systems, focusing on interface devices, gateways, and system configurations for building management systems (BMS).
Specifications: The document outlines the specifications for various MHI air conditioning models, including nominal horsepower, power source, nominal capacity, electrical characteristics, exterior dimensions, net weight, refrigerant charge, and piping sizes. Models range from 14HP to 48HP with cooling capacities from 40.0 kW to 136.0 kW.
Interface Devices: The SC-BGWNA-A/B and SC-LGWNA-A are interface devices that convert MHI’s Superlink communication data to BACnet and LonWorks codes, respectively. These devices allow control and monitoring of up to 96 cells or indoor units, integrating them into a central control point via a BMS network.
Gateways: The document describes the SC-WGWNB-A/B web gateway, which facilitates centralized control of up to 128 indoor units using Internet Explorer. It features a low-power embedded CPU, compact flash ROM, and security measures like IP address filtering and user authentication.
Integration with Other Systems: The document details the integration of MHI systems with KNX and Modbus installations using Intesis BMS interfaces. These interfaces support bidirectional supervision and control, robust hardware, and independent communication management.
Service and Maintenance: The design of outdoor units allows easy access to serviceable parts, with features like a test-run mode for installation error detection and a 7-segment digital display for fault finding. Operation data is stored for troubleshooting purposes.
Additional Features: The document mentions the High Head series, which allows a maximum height difference of 90m between outdoor and indoor units, and provides guidelines for installation and operation ranges.
Specifications:
The document provides detailed specifications for various models of outdoor units, including their nominal horsepower, power source, nominal capacity, electrical characteristics, exterior dimensions, net weight, refrigerant charge, and piping size. The units operate on a 3-phase 380-415V, 50Hz power source and use R410A refrigerant. The models range from 14HP to 48HP with cooling capacities from 40.0 kW to 136.0 kW.
Procedures:
Installation procedures emphasize the importance of fixing units with anchor bolts and ensuring adequate space around the units. Specific instructions are provided for connecting refrigerant pipes and power cables, including the use of half-blanks for port openings.
Norms and Recommendations:
The document outlines operational conditions based on ISO-T1 standards, specifying indoor and outdoor temperatures for cooling and heating. It also provides guidelines for sound pressure levels and the importance of ambient conditions.
Refrigerant Piping and Installation:
Details on refrigerant piping sizes and connection methods are provided, including specific dimensions for liquid and gas lines. The document also includes installation examples with dimensions and notes on the reuse of existing piping when replacing units.
High Head Series:
This section describes the High Head series, which allows for a maximum height difference of 90m between outdoor and indoor units. It specifies the total pipe length and conditions under which these models can be applied.
Data and Graphs:
The document includes tables and graphs illustrating the connectable capacity of indoor units, total pipe lengths, and operational ranges for heating and cooling. Key data points include maximum connectable capacities and the impact of pipe length on performance.
Installation Notes:
Important notes for installation include ensuring the unit is not surrounded by walls on all sides, the direction of the blower outlet relative to wind direction, and the height of walls in front of the blower outlet.
Environmental Goals and Initiatives: Mitsubishi Heavy Industries (MHI) is committed to environmental protection by setting goals and targets, examining the impact of overseas operations, and engaging in technological cooperation for environmental protection. The company also focuses on enhancing employee awareness and public relations regarding environmental issues.
Product Range and Technological Expertise: MHI manufactures over 700 products supporting industrial and civil activities globally, including ships, power systems, air-conditioners, and aerospace systems. The company is recognized for its technological expertise developed over a century, focusing on new energy development and environmental concerns.
Safety Precautions for Air-Conditioners: MHI air-conditioners are designed for human use and should not be used for storing food, animals, or precision devices. Installation should be done by specialists to prevent hazards. Special considerations are required for installation in snowy areas, and regular maintenance is recommended to ensure optimal performance.
Heating Performance and Sound Levels: Heating performance values are based on specific temperature conditions as per ISO standards. Actual sound levels may vary due to environmental factors. Additional heating appliances may be needed in extremely low temperatures.
Usage in Specific Environments: The air-conditioners should not be installed in oil-rich, acidic, or alkaline environments as these conditions can affect performance and cause corrosion. High ceilings may require additional circulators for effective heat distribution.
Certifications and Continuous Improvement: MHI's factories are ISO9001 and ISO14001 certified, ensuring quality and environmental management. The company reserves the right to change specifications as part of its continuous improvement policy.
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Catalog excerpts

HyperMulti KX-KXR-1

Our Technologies, Your Tomorrow High Performance REMOTE CONTROL VRF inverter multi-system Air-Conditioners

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HyperMulti KX-KXR-2

History of Technologies more efficient , more sophisticated

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HyperMulti KX-KXR-3

High Head series 94-97 Refresh KX outdoor units 98 • 99

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HyperMulti KX-KXR-4

from 11.2kW up to 136.0kW(24models) Single use (1 Outdoor unit) Capacity Model Code : kW BTU / h kcal / h Combination use (2 Outdoor units) Capacity Model Index : kW BTU / h kcal / h For EU/EEA area, refer to the bottom part of page 17.

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HyperMulti KX-KXR-5

Wide variety of 17 types 92 models A range of 17 types of exposed or concealed indoor units, in wide capacities, 92 indoor models. The best selection of indoor units for many kinds of rooms and preference can be available from our full lineup. Indoor units lineup Capacity Model Code : kW Ceiling Cassette High Static Pressure Low/Middle Static Pressure Low Static Pressure (thin) Compact & Flexible Duct Connected Wall Mounted Ceiling Suspended with casing without casing Floor Standing Type Fresh Air Ventilation and Heat Exchange unit Fresh Air DX Assembly Not available in EU/EEA area.

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HyperMulti KX-KXR-6

1. High Efficiency (KX6) The industry's highest COP levels We have cleared the class A standard, the highest energy saving level, with our high COP (Coefficient Of Performance). Power Consumption[kW] *COP = Capacity[kW] /range ensures reduced running costs and reduced environmental impact. COP across the KX6 * • Transportation Becomes much easier • Easier to hide behind the fence (Harmonic Appearance) • Transportation Becomes much easier

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HyperMulti KX-KXR-7

High efficiency and compact design are realized applying the various advanced functions 4~6HP Compact High Efficient Heat Exchanger Compact high efficiency Heat Exchanger New Inverter Control Vector Inverter Control system • Optimizing relationship of the air flow velocity & fin pattern • Improvement of air distribution Maximizing efficiency of heat exchanger New Twin Rotary Compressor Heat Exchanger DC Fan Motor Compact & High efficiency Optimum New Refrigerant System Control Compact & High efficiency New Inverter Control Compact & Vector Inverter Control system Downsized accumulator Receiver...

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HyperMulti KX-KXR-8

3D Scroll Compressor Unit start up speed in heating mode drastically improved for lower outdoor temperature operation. Present scroll 3D scroll Lower at the inside Same height Fixed scroll Orbital scroll Downsizing High Efficiency High Endurance High strength due to the lower teeth inside 3D scroll compressor has the different height scroll at the outside and the inside. A high compression ratio is improved by compressing the refrigerant both radially and axially. 3-Dimension Compression has been realized with a much higher efficiency even if compression ratio is high. The strength of the scroll...

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HyperMulti KX-KXR-9

3. Design Flexibility Increased indoor unit connection capacity KX6 series(4~34HP) can connect indoor unit capacity up to 150~200% from 130% of previous models. If the connection capacity of indoor units is more than 100%, capacity of each indoor unit may be affected by connection capacity ratio. • In case that capacity connection is more than 130%, additional charge of refrigerant is required on site. • In case of 8-34HP of KX6/KXR6 system, if one or more indoor units of FDK, FDFL,FDFU and/or FDFW series are connected to the system, the total connecting capacity of indoor units should not exceed...

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HyperMulti KX-KXR-10

Long Pipe Length Piping length has extended max height difference between indoor units from 4m to 18m and enables us to put indoor unit on extra three floors. As a result of the adoption of thinner refrigerant piping and refrigerant volume reductions, the industry's longest 160 m actual piping length or 1000m total piping length is realized. Outdoor unit To the first branch: max 130m Indoor unit Indoor unit From the first branch to the furthest indoor unit: 40m 90m* Indoor unit * The difference between the longest and the shortest indoor Height difference 50m(outdoor unit above) 40m(outdoor unit...

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HyperMulti KX-KXR-11

Wide Range of Operation KX6,KXR6 series permits a system design considering a heating range operation under a low temperature condition up to -20ºC from -15ºC of previous model and a cooling range operation under -15ºC from -5ºC of that. -20 -10 0 10 20 30 40 For the capacities under low temperature conditions, refer to technical manual. Max length of electrical wiring The wiring must be a 2-core shielded cable size 0.75mm2 to 1.25mm2. The max length of 2-core can be 1500m from 1000m of previous models. 4. Serviceability Easy Service Quick and easy access to service parts by separation of compartments....

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HyperMulti KX-KXR-12

Monitoring Function KX6 series includes new feature to assist with servicing and trouble shooting. Various data can be monitored through 3-digit or 6-digit display on the outdoor unit PCB. Detailed fault diagnosis and operation history memory via 7-segment display. Equipped with RS232C for connection directly to your PC monitoring and service tasks made simple with our service software (“Mente PC”). all KX6, KXR6 series In, 2-compressor module, in the event of the compressor failure, the system will keep operating with good compressor. In combined module, in the event that one unit has a failure,...

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HyperMulti KX-KXR-13

heat pump systems KX6 heat pump systems operate with 2 inter-connecting pipes, thus commonly referred to as a '2-pipe system'. These systems provide either a heating or cooling operation to all indoor units and are suitable for a wide range of applications from an individual apartment (with "Micro KX", 1/phase system) to an entire multi storey building, especially where there are significant open plan areas to be controlled. The range starts with a 11.2kW cooling capacity, up to the largest capacity single outdoor unit in the industry (24hp) with 68.0kW cooling capacity. Outdoor units can also...

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HyperMulti KX-KXR-14

DUCT CONNECTED -Middle Static pressure- Automatic external static pressure (E.S.P.) control Duct design was simplified. Using DC motor, the most optimum air flow volume can be achieved by this automatic control. Indoor unit will recognize external static pressure by itself automatically and keep rated air flow volume. Longer Duct Ceiling Keep the same air flow volume External static pressure (E.S.P.) can be set by E.S.P. button. DUCT CONNECTED -High Static Pressure- FDU has the same E.S.P. control. Refer to page 58. Individual flap control system Wireless remote control According to room temperature...

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*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.