TECHNOLOGY IN MOTION

MAX2M

Semi-
automated Parking System

MAX2M – semi-automated parking system for multi-row installations with a high parking space requirement

Parken in zwei bis vier Anlagenreihen

Many residential developments, neighbourhoods and mixed-use projects have to accommodate a large number of parking spaces within a limited plot. A single system row reaches its limits here, even though floor area is still available in the depth of the plot.

Within the range of semi-automated parking systems, MAX2M is particularly relevant where a high parking space requirement is to be met on a limited plot and several system rows can be arranged one behind the other for this purpose. This produces 6 to 38 parking spaces on two parking levels, depending on the number of system rows, without building below entry level.

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What is Swiss-Park MAX2M?

Swiss-Park MAX2M is a semi-automated parking system that organises parking spaces across two parking levels: at entry level and on an upper level above it. It serves two to four system rows one behind the other; no parking level is created below the entrance. The driver parks the vehicle personally, while the parking solution moves the platforms and presents the selected parking space at entry level. Every vehicle remains independently accessible. MAX2M is planned together with MAX1, MAX2 or MAX3. Swiss-Park is a Lödige Industries company.

View technical data

Your benefits at a glance

MAX2M organises parking spaces on two parking levels in several system rows one behind the other and so meets a high parking space requirement.

6 to 38 parking spaces on a limited area
Two parking levels in two to four system rows
Every vehicle independently accessible
Platforms driven onto horizontally
Can be realised without a pit below entry level
Can be planned together with MAX1, MAX2 or MAX3
Platform widths up to 270 cm for comfortable parking and retrieval
Higher loads per parking space with the reinforced version
Cost-effective alternative to full automation

Comfort, technology & planning

Semi-automated parking systems combine active use by the driver with system-side organisation of the parking spaces. The following information shows how comfort, the parking sequence, key technical data and planning aids can be assessed for an initial evaluation of the project.

Comfort & ease of use

CharacteristicValue
Parking is carried out by
Transfer levelentry level
Ramp requireddepends on the project, on the building access and on the installation concept
Access to the parking levelnot required, entry and exit take place at entry level
Independent parkingyes
User comfortplatforms driven onto horizontally, ease of use depending on platform width, aisle width and access
Platform designplatform width up to 270 cm, standard version or reinforced version
Vehicle positioningpositioning aid on every parking space
Operationoperating panel for selecting the required parking space
Group of usersdesigned for a fixed group of users; where users change, structural modifications to the system are required
Gate solutionsliding gates or roller gates, selected in accordance with DIN EN 14010
Safety logicplatforms move only behind locked gates; release only once the parking position has been reached
Electric mobilityto be examined on a project basis

Legend:

Driver

Parking Solution

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Parking sequence

DirectionParking stepCarried out byDescription
Parking space selection
The driver selects their parking space on the operating panel. Any gates must be closed while this happens.
Parking space provision
The parking solution moves the platforms at entry level and brings the selected parking space to entry level; parking spaces on the upper level are lowered for this purpose.
Release
The parking solution releases the entrance as soon as the parking space has reached its parking position.
Vehicle entry
The driver drives onto the platform and aligns the vehicle with the positioning aid.
Parking space organisation
The parking solution moves the platform into its parking position. The vehicle then stands secured on its parking space.
Vehicle request
The driver requests their parking space on the operating panel.
Vehicle provision
The parking solution brings the parking space to entry level and releases the exit.
Vehicle exit
The driver drives the vehicle out of the system.

Legend:

Parking

Retrieval

Driver

Parking Solution

Technical data

The values depend on the type, the vehicle heights and the gate design. A grid is one parking space bay with two parking levels one above the other; a system row is a row of such bays arranged one behind the other.

CharacteristicValue
System data 
Product typeMAX2M / MAX2M-R
Technology classsemi-automated parking system
Parking principleindependent parking, cars above and beside one another
Parking levelsentry level and upper level, no parking level below the entrance
Number of parking spaces6 parking spaces in the smallest arrangement, up to 38 parking spaces in the largest
System rows and system width2 system rows up to 10 grids and 38 parking spaces, 3 system rows up to 6 grids and 33 parking spaces, 4 system rows up to 4 grids and 28 parking spaces
Combinationplanned together with MAX1, MAX2 or MAX3
Movement logicplatforms on the upper level move vertically, platforms at entry level horizontally
Operationoperating panel for selecting the parking space
Building requirements 
Clear passage height160, 175, 180, 185, 210 or 215 cm depending on the type
Building height330 to 440 cm depending on the type and the vehicle heights
System length560 cm for cars up to 5.0 m, 580 cm for cars up to 5.2 m, dimensional tolerance +5/-0 cm
System widthnumber of grids times the grid width plus 20 cm, grid width 250 to 290 cm depending on the platform width
Aisle width650 cm recommended, minimum dimension in accordance with local garage regulations
Gate solutionsliding gate or roller gate, selected in accordance with DIN EN 14010, clear height 210 to 230 cm
Gate actuationsliding gates manually operated as standard, optionally with an electric drive; roller gates with an electric drive
Rail systemrequirements for flatness and rail installation to be agreed on a project basis
Accessmaximum 3 % fall, maximum 5 % gradient
Electricalhydraulic power unit 3.0 kW, three-phase 230/400 V; main switch and control cabinet to be planned on a project basis
Sound insulationmaximum 30 dB(A) in living and sleeping rooms to DIN 4109-1, increased sound insulation 25 dB(A) to DIN 4109-5; achievable only with the sound insulation package as quoted and a weighted sound reduction index of at least 57 or 62 dB respectively provided by others
Vehicle data 
Vehicle height, entry level150, 165, 170, 175, 200 or 205 cm depending on the type
Vehicle height, upper level150 to 205 cm in steps of 5 cm, no greater than at entry level
Vehicle length500 to 520 cm
Vehicle width190 cm with a platform width of 230 cm, wider vehicles with a wider platform
Platform widthusable width 230 to 270 cm on the upper level, 220 to 260 cm at entry level depending on the grid width; 250 to 270 cm recommended
Load per parking space2000 kg with MAX2M, 2600 kg with MAX2M-R
Wheel loadmaximum 500 kg with MAX2M, maximum 650 kg with MAX2M-R

Detailed dimensions, loads and planning data are available in the product data sheet.

When is MAX2M the right solution?

MAX2M is suitable for Residential Developments, Residential Buildings, Mixed-Use Buildings and Urban Infill Projects where more parking spaces are to be organised on a limited plot than can be arranged as conventional individual parking spaces on the same area. Organising the parking spaces over two parking levels and several system rows keeps every vehicle independently accessible. In the standard version the system is designed for a fixed group of users; where users change, for example for short-stay parking in Office Buildings or Hotels, structural modifications to the system are required.

No pit is required; both parking levels are at and above the entrance. It is essential that the building height and the aisle are fixed at an early stage. Depending on the type, the clear passage height is 160, 175, 180, 185, 210 or 215 cm, and the building height is between 330 and 440 cm. The permissible vehicle heights depend on the type and range up to 205 cm, with the height at entry level always at least as great as on the upper level. The right design also depends on the parking space requirement, the number of system rows, the platform width, the rail system and the access.

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Applications

Residential Buildings

In larger Residential Buildings, the parking space requirement often becomes the limiting factor in the design. MAX2M organises cars above and beside one another across several system rows and so makes more intensive use of the available underground car park area. The design depends on the number of system rows, the building height, the clear passage height, the vehicle heights and the aisle width.

Residential Developments

Residential Developments require a large number of parking spaces within a limited plot. MAX2M is suitable for projects in which several groups of parking spaces are planned in a structured and space-efficient way. Within the MAX family, MAX2M is planned together with MAX1, MAX2 or MAX3.

Urban Infill Projects

In Urban Infill Projects, limited plot areas, high parking space requirements and structural constraints come together. MAX2M can help to organise larger groups of parking spaces within an underground car park. The building height, the clear passage height, the rail system, the aisle width and the works to be provided by others are to be clarified at an early stage.

Mixed-Use Buildings

In Mixed-Use Buildings, residential, office and commercial use come together with differing vehicle sizes and usage times. MAX2M organises larger groups of parking spaces system-side and thereby creates additional parking capacity within a shared floor plan. For the residential share with permanently allocated parking spaces the system is directly suitable; for areas with changing users, structural modifications to the system are required.

Everything from a single source – from planning to modernisation

Lödige supports your project throughout its entire life cycle – from system-independent planning and delivery through to service and modernisation.

Planning and consultancy

The right parking solution for your project

Whether mechanical, semi-automated or fully automated parking system: what matters are the requirements of the project. Lödige advises independently of any particular system, also assesses existing solutions from other manufacturers and develops a suitable parking concept based on many years of experience and a wide range of technical options.

man working on some electronics
Service and modernisation

Operating parking systems reliably over the long term

Regular maintenance, fast support in the event of a service call and targeted modernisation safeguard the availability, safety and value of the system. Lödige looks after its own systems as well as systems from other manufacturers and supports operators throughout the entire life cycle.

Which parking system suits your project?

Send us the key details of your project or ask us your questions. We look forward to talking with you.

FAQs

With MAX2M the driver parks and retrieves the vehicle personally at entry level. The parking solution takes over the organisation of the parking spaces: it moves the platforms on the ground floor and lowers the platforms of the upper level until the selected parking space is at entry level. The parking sequence remains user-led, while the organisation of the parking spaces runs system-side.

All four belong to the family of semi-automated MAX systems and differ in the arrangement of the parking levels. MAX1 uses entry level and one level below it, MAX2 uses entry level and one level above it without a pit, and MAX3 uses all three levels for the highest parking space density. MAX2M works at entry level and one level above it and additionally serves several system rows one behind the other – it is planned together with one of the other three systems.

In the standard version MAX2M is designed for a fixed group of users with allocated parking spaces, as is usual in residential buildings. For uses with changing users, for example short-stay parking in Office Buildings or Hotels, structural modifications to the system are required. This should be clarified early in the design, because it affects the operating concept and the version supplied.

Yes. MAX2M is intended to be combined with MAX1, MAX2 and MAX3. This allows MAX2M to be integrated into larger parking concepts. Which combination makes sense depends on the floor plan, the parking levels, the vehicle heights, the number of system rows and the required number of parking spaces.

MAX2M can be planned from 2 grids; a grid is one parking space bay with two parking levels one above the other. How wide the system can be depends on the number of system rows: with two rows up to ten grids and 38 parking spaces, with three rows up to six grids and 33 parking spaces, with four rows up to four grids and 28 parking spaces. The actual suitability depends on the floor plan, the building height, the vehicle dimensions, the aisle width and the access.

The permissible vehicle heights depend on the type: 150, 165, 170, 175, 200 or 205 cm at entry level, and 150 to 205 cm in steps of 5 cm on the upper level. Which height can be realised in the project depends on the clear passage height, the building height and the configuration. In addition, the permissible vehicle height at entry level must be at least as great as the vehicle height on the upper level.

MAX2M accommodates cars with lengths of 500 to 520 cm. The system length is 560 cm for cars up to 5.0 m and 580 cm for cars up to 5.2 m. The usable platform width extends to 270 cm on the upper level and to 260 cm at entry level; 250 to 270 cm are recommended, and with a platform width of 230 cm the permissible vehicle width is 190 cm. For comfortable entry and exit, an aisle width of 650 cm is additionally recommended.

The important points are the building height, the clear passage height, the vehicle heights, the platform width, the aisle width, the access gradient, the rail system and floor flatness, the gate concept, the electrical connection, the position of the control cabinet, the hydraulic power unit and sound insulation. The floor slab and the walls are to be executed in concrete with a grade of at least C20/25. Ventilation, lighting, fire protection and drainage are also to be taken into account at an early stage; the system requires approval under the state building regulations and the garage regulations.

Which alternative might also be suitable?

Depending on the size of the project, the floor plan, the parking space requirement and the expectations regarding comfort, a different technology class may also make sense. The following starting points help with an initial orientation. A comparison within the MAX family is available on the overview of semi-automated parking systems.

Should a ramp to the parking level be replaced?

Car lifts move vehicles vertically between levels and can replace space-intensive ramps.

Should more parking spaces be created on the same area?

Car stackers increase the density of parking spaces mechanically and create additional parking space on existing area.

Should the maximum parking space density be achieved?

Fully automated parking systems store vehicles automatically and make particularly efficient use of the available area.

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