MC 110i EVO2

MC 110i EVO2

D-DRIVE (Diesel-direct)

39 in x 25 in x 15 in

441

US t/hr

The jaw crusher MOBICAT MC 110 EVO2 is used for the precrushing of almost all natural rock and in recycling. Compact dimensions, efficient prescreening, simple operation via SPECTIVE as well as impressive production output characterize the efficient key player.

  • Continuous Feed System (CFS) for optimal crusher feeding
  • Innovative crusher unblocking system for extremely short downtimes
  • Innovative overload and control systems for protection of the crusher
  • Independently vibrating double-deck prescreen
  • Efficient and powerful D-DRIVE diesel-direct drive
  • Simple and intuitive SPECTIVE control concept
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Highlights

Diverse applications, simple transportation, short set-up times, high machine availability: the mobile jaw crusher MOBICAT EVO2.

Feeding unit
Prescreen
CFS
Crusher unit
Unblocking system
Control and overload system
Drive
Control system
Accessibility & Safety
Transport
SPECTIVE CONNECT

Innovative diesel-direct electric drive concept - impressive performance with the best possible consumption values

The crushers of the EVO line have an innovative "diesel-direct electric" drive concept and are powerful and economical at the same time.

An efficient and powerful diesel engine drives the crusher directly via a fluid coupling. The drive technology thus impresses with extremely low efficiency losses and maximum output directly at the crusher.

All secondary drives – for example, for prescreen, vibrating chutes and conveyor belts – are driven electrically. The fluid coupling guarantees high operational safety – for operator and machine.

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Continuous Feed System (CFS)

For a continuous crusher feed.

Uniform loading is indispensable for a good product, optimum throughput and low wear.

To ensure that the crushing chamber is always evenly filled, the Continuous Feed System (CFS) monitors the crusher level (jaw crusher and cone crusher) or the load at the rocker and rotor as well as the motor utilization (impact crusher).

Independently of this, the CFS regulates the frequency of the vibrating feeder and prescreen. A backlog on the prescreen is thus avoided and crusher utilization is optimized. When the crushing chamber is free again after overloading, material transport is continued without a delay.

The CFS facilitates the work of the operator because the machine automatically guarantees a homogeneous material flow, thus ensuring optimum loading of the crusher.

Intuitive control concept SPECTIVE - for simple operation

The easy-to-operate control concept SPECTIVE allows the machines to be operated at a touch panel. All components and functions can be controlled comfortably from the ground.

SPECTIVE guides the operator step by step through the starting procedure. The start screen provides a graphical view of the plant with all adjustable functions at a glance. When the desired function is selected, clear instructions guide users through all operating steps. If a fault occurs, a fault diagnosis appears on the display. Fault localization, the description and remedy tips result in reduced downtimes. The 12" touch panel is resistant to dust and always easy to read thanks to the light intensity and high contrast. It reacts to fingers, pen or gloves.

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SPECTIVE CONNECT

Operator information App, unidirectional communication

All relevant data at a glance
> Dashboard
> Camera live image
> Reporting
> Messages and troubleshooting aids
> Overview of all plants in the train

The operator can remain in the excavator/wheel loader
> No interruption to the work process
> Increase in work safety

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News & Job reports

Technical specifications

Max. feed size
Feed height
Feed height with extension
Hopper width
Hopper width with extension
Hopper length
Hopper length with extension
Hopper volume
Hopper volume with extension
Max. feed size
39 in x 25 in x 15 in
Feed height
12 ft 10 in
Feed height with extension
14 ft 1 in
Hopper width
6 ft 9 in
Hopper width with extension
9 ft 1 in
Hopper length
11 ft 1 in
Hopper length with extension
11 ft 6 in
Hopper volume
5.8 yd³
Hopper volume with extension
10 yd³
Width x length
Width x length
40 in x 8 ft 6 in
Width x length
Type
Width x length
3 ft 4 in x 6 ft 1 in
Type
Double-deck heavy-piece screen
Discharge height
Discharge height, extended
Width
Length
Length, extended
Discharge height
6 ft 9 in
Discharge height, extended
9 ft 8 in
Width
20 in
Length
8 ft 10 in
Length, extended
16 ft 5 in
Crusher drive type
Crusher inlet width
Crusher weight (approx.)
Crusher capacity
Single toggle jaw crusher type
Crusher gap adjustment
Gap width max.
Gap width min.
Crusher drive type
direct
Crusher inlet width
44 in
Crusher weight (approx.)
37,500 lbs
Crusher capacity
215 hp
Single toggle jaw crusher type
STR110-070
Crusher gap adjustment
Fully hydraulic
Gap width max.
7 in
Gap width min.
1.2 in
Crushing capacity with CSS = 3.9" up to approx.
Crushing capacity with CSS = 2.4" up to approx.
Crushing capacity with CSS = 3.9" up to approx.
231 US t/hr
Crushing capacity with CSS = 2.4" up to approx.
143 US t/hr
Discharge height approx.
Discharge height, extended, approx.
Width
Crusher discharge conveyor length
Length, extended
Discharge height approx.
10 ft 4 in
Discharge height, extended, approx.
12 ft 4 in
Width
40 in
Crusher discharge conveyor length
31 ft 2 in
Length, extended
36 ft 1 in
Drive concept
Generator
Power pack manufacturer
Power supply unit output
Rated speed
Drive concept
D-DRIVE (Diesel-direct)
Generator
88 kVA
Power pack manufacturer
Scania
Power supply unit output
322 hp - 326 hp
Rated speed
1,500 rpm
Transport height approx. (standard value)
Transport length approx.
Transport width approx.
Transport weight of basic plant
Transport weight max. configuration approx.
Transport height approx. (standard value)
11 ft 2 in
Transport length approx.
49 ft 3 in
Transport width approx.
9 ft 10 in
Transport weight of basic plant
93,750 lbs
Transport weight max. configuration approx.
106,950 lbs

All details, illustrations and texts are non-binding and may include special equipment. We reserve the right to make technical changes without prior notice. Performance data are dependent upon actual operational conditions.