



Control system Heidenhain: TNC 425
:
: 600
: 400
: 400
: 0 - 6300
YOM:2015
Control system OKUMA: OSP P300M
: 1300 x 560
: 1050
: 560
: 460
: 0 - 15000


YOM:2010
Control system Heidenhain: TNC 530
: 1300 x 600
: 1016
: 610
: 710
: 0 - 10000






YOM:2002
Control system Heidenhain: TNC 620
: 1300 x 600
: 1000
: 600
: 650
: 0 - 8000







YOM:2019
: i Series
: 1200 x 540
: 1020
: 540
: 530
: 0 - 6000









: 0i - MC
: 610x305
: 510
: 305
: 305
: 0 - 2400







YOM:2022
Control system Haas:
: 500
: 762
: 508
: 508
: 0 - 8100
















YOM:2021
Control system Haas:
: d400
: 610
: 406
: 406
: 0 - 15000


YOM:2017
Control system Haas:
: 500
: 762
: 508
: 508
: 0 - 12000








YOM:2012
Control system Haas:
: 914x356
: 762
: 406
: 508
: 1 - 8100











YOM:2013
Control system Heidenhain: TNC 530
: 630
: 650
: 600
: 500
: 0 - 18000







YOM:2005
Control system Heidenhain: TNC 430
: 280 x 160
: 530
: 450
: 450
: 10 - 12000







YOM:2018
Control system Haas:
: 500
: 762
: 508
: 508
: 0 - 12000











YOM:1995
Control system Haas:
: 356 x 660
: 514
: 412
: 523
: 0 - 7500

YOM:2003
Control system Heidenhain: TNC 426
: 1800x780
: 1650
: 810
: 810
: 0 - 6000










YOM:2011
Control system Haas:
: 1321 x 584
: 1016
: 660
: 635
: 0 - 7500









YOM:2008
Control system Heidenhain: TNC 530
: 500x380
: 500
: 450
: 400
: 20 - 18000






YOM:2007
Control system Fanuc: 0i - MC
: 1220x508
: 1016
: 508
: 508
: 0 - 10000





YOM:2004
Control system Hurco: UltiMax
: 1020 x 510
: 760
: 510
: 610
: -














YOM:2007
:
: 600 x 300
: 480
: 360
: 270
: 0 - 10000






YOM:2005
Control system Heidenhain: TNC 530
: 900 x 500
: 740
: 500
: 500
: 1 - 12000








YOM:2010
Control system Heidenhain: TNC 530
: 1200x600
: 1020
: 610
: 610
: 10 - 12000



YOM:2022
Control system Haas: NGC
: 3048 x 711
: 3048
: 1016
: 762
: 0 - 7500







YOM:2015
: CNC 8055i
: 1800 x 800
: 1600
: 800
: 710
: 1 - 12000






YOM:2003
: 1440
: 600
: 500
: 1650 x 600
In used vertical machining centers, the fundamental defining element is the C-frame construction and its ability to absorb high-frequency vibrations. Unlike horizontal machines, the Z-axis in a VMC is stressed directly against gravity, requiring a pristine ball screw condition and effective headstock balancing (mechanical or nitrogen counterbalancing). For used machines equipped with linear guideways, the focus is on G-force dynamics, which directly influence chip-to-chip time and efficiency in producing complex geometries.
Spindles with BT40, SK40, or HSK-A63 tapers define the technological range. While 8,000–12,000 RPM systems are optimized for heavy-duty milling and drilling, High-Speed Machining (HSM) spindles exceeding 15,000 RPM require flawless ceramic bearings to maintain low runout. Control systems such as Heidenhain TNC 620/640 or Fanuc 0i-MF on used VMCs enable advanced adaptive milling cycles, reducing thermal load on the tool edge and increasing process stability.
A used VMC is the fastest route to increasing production capacity for finishing and precision drilling operations. The primary ROI advantage is the low entry price compared to new technology, allowing for faster amortization even on lower-margin contracts. Furthermore, the vertical concept offers a smaller footprint, increasing profitability per square meter of factory floor.
FERMAT emphasizes OEE through the minimization of non-productive times. Fast Automatic Tool Changers (ATC)—both umbrella and arm-type—combined with upgraded drives, allow these machines to achieve productivity levels comparable to new mid-tier machines. For tool-and-die shops or automotive suppliers, a used VMC is a strategic asset for handling peak workloads without long-term leasing burdens.