Liebherr HC1011, HC1060 installation instructions Water supply, Installation

Page 8

Water supply

u The total opening of the cabinet (i.e. 70-3/8 in. (1788 mm)) plus the thickness of the top as well as the floor board (usually 3/4 in. (19 mm)) minus the height of the freezer door panel (xxx in. (xxx mm)) as calculated above and subtract the width of the gap (approximately 1/8 in. (3 mm)): 70-3/8 in. + 3/4 in. + 3/4 in. - xxx in. - 1/8 in. = 71-25/32 in. - xxx in. ( 1788 mm + 19 mm + 19 mm - xxx mm - 3 mm = 1823 mm – xxx mm )

5 Water supply*

WARNING

Electrical Shock Hazard!

u Do not make the water connection while the appliance is connected to an electrical outlet.

u Disconnect the water supply before connecting the water lines for the IceMaker.

u The connection to the water supply may only be made by a trained and licensed plumber.

WARNING

Poisoning Hazard!

u The water quality must comply with the drinking water regulations for the geographical area where the appli- ance is located.

u The IceMaker is designed exclusively to make ice cubes in quantities needed by a household and must only be operated with water appropriate for this purpose.

- The water pressure must be be- tween 21.76 psi (1.5 bar) and 87.02 psi (6 bar). (0,15 MPa - 0,6 MPa)

- Water must be supplied to the appliance by means of a cold- water pipe that can withstand the operating pressure and conforms to hygiene regula- tions.

Use the supplied steel hose

(59-1/16 '' (1.5 m) ) to connect to the water supply. A 118-1/8 '' (3 m) hose is availa- ble from Customer Service. This hose must be installed by a qualified fitter.

The connecting piece of the hose contains a filter with a gas- ket seal.

- A shut-off valve must be provi- ded between the hose line and the domestic water supply to turn off the water supply, if nec- essary.

- All devices and fixtures used to supply water must comply with the regulations in force in the respective country.

- Do not damage or bend the wa- ter supply pipe during installa- tion.

u Connect the straight portion of the supplied stainless steel hose to the solenoid valve.

The solenoid valve is located on the back of the appliance at the bottom. The connecting dimension on the solenoid valve is ¾”.

u Connect the bent portion of the stainless steel hose to the shut-off valve.

u Open the shut-off valve of the water supply pipe and check the entire water system to en- sure there are no leaks.

Before initial operation:

u Have a competent fitter bleed the water supply pipe.

6 Installation

All installation components are supplied with the appliance.

Fig. 8

Make sure you have the following tools on hand: q Cordless Torx 15. 20. 25 screwdrivers

q Hexagonal wrench 13

The floor and side walls of the unit must be at right angles to one another. Level the unit using a spirit level and set square. If necessary, level up by placing something under- neath.

The appliance can also be built into a normal kitchen cabi- net. In this case, detach the fittings on the unit door and the recess. They are no longer needed, as the unit door is fitted to the appliance door.

8

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Contents Installation Instructions Setting up the appliance General safety information ContentsGeneral safety information Changing the door hinges To detach the soft stop mecha- nismReversing the door Re-attaching the soft stop mecha- nismKitchen Cabinet Construction Kitchen Cabinet AirflowElectrical outlet Power cord Level Fish line for power cord Designing the Kitchen CabinetDesigning the Kitchen Cabinet Doors Height of the refrigerator door panel is Installation Water supplyFor appliances with a fixed water supply for the IceMaker To secure the appliance in the recess With 5/8 16 mm thick unitWith 3/4 19 mm thick unit Fitting the unit doors For a 23-5/8 600 mm wide recessFor a 24 609.6 mm wide recess For chipboard doorsConnecting the appliance For large unit doorsConnecting the appliance Connecting the appliance

HC1060, HC1011 specifications

The Liebherr HC1011 and HC1060 are advanced tower cranes known for their exceptional performance and reliability in construction projects. These models are part of Liebherr's commitment to engineering excellence, providing efficient solutions for high-rise building and heavy lifting tasks.

The Liebherr HC1011 crane features a maximum lifting capacity of 10 tons and a jib length of 50 meters, making it ideal for a wide range of construction applications. It is equipped with a robust hoisting mechanism that ensures smooth and precise lifting operations. The crane's modular design allows for easy assembly and dismantling, reducing setup time on construction sites.

One of the standout features of the HC1011 is its advanced control system, which integrates modern technology to enhance operational efficiency. The crane is equipped with Liebherr’s innovative Litronic control system, providing real-time monitoring and diagnostics. This system enables operators to make informed decisions based on live data, optimizing performance and safety.

The Liebherr HC1060, on the other hand, is designed for larger projects with a maximum lifting capacity of 12 tons and an impressive jib length of 60 meters. This model delivers exceptional reach and versatility, accommodating the needs of complex construction sites. Similar to the HC1011, the HC1060 also features the Litronic control system, enabling operators to manage lifting operations with precision.

Both models are distinguished by their high-quality materials and cutting-edge engineering. The cranes are built to withstand harsh weather conditions and heavy-duty use, ensuring durability and longevity. The ergonomic design of the operator’s cabin provides comfort and visibility, allowing for efficient monitoring of lifting operations.

In terms of technology, the Liebherr HC series incorporates advanced safety features, including overload protection and automatic lubrication systems. These innovations ensure safe operation and reduce maintenance requirements, allowing construction teams to focus on their projects.

In summary, the Liebherr HC1011 and HC1060 tower cranes are exemplary machines in the construction industry, characterized by their heavy lifting capabilities, innovative control systems, and robust construction. Their combination of technology and design makes them ideal for handling demanding construction tasks, ensuring that projects are completed safely and efficiently.