2016 Hexagon OC 322
Measuring machine
The machine is in perfect working condition.
The 2016 Hexagon OPTIV CLASSIC 322 is a type of coordinate measuring
machine (CMM) manufactured by Hexagon Manufacturing Intelligence. This
machine is used for precision measurement and quality control in
manufacturing processes.
PRODUCT DESCRIPTION
The Optiv Classic 322 combines optical and tactile measurement in one
system (optional touch-trigger probe).
The system supports multi-sensor measurements using the Vision sensor
(CMOS colour camera, motorised CNC zoom)
and the touch-trigger probe HP-TM. The Optiv Classic 322 provides easy
pallet station integration with good
accessibility to the measuring table from all sides. Measurement
software is PC-DMIS.
FIELDS OF APPLICATION
• Shop floor and inspection room
• Versatile geometry measurements and GD&T analysis
DESIGN
Design principle : Benchtop unit of proven cross-table design with a
solid metal base frame as a standard
Guides : Mechanical linear guides on all axes, counterbalance on Z
axis
Drives : DC servo motors, power transmission via plain shafts in
conjunction with rolling ring drives
Length measuring system : Incremental, optoelectronic length measuring
system
Resolution of the scales : 0.05 μm
MEASURING RANGE (X x Y x Z)
OPTIV CLASSIC 322
Measuring range Vision sensor Measuring range touch-trigger probe
Mutual measuring range(1)
X 300 mm (11.5 in.) 256 mm (10 in.) 256 mm (10 in.)
Y 200 mm (7.5 in.) 175 mm (6.5 in.) 175 mm (6.5 in.)
Z 200 mm (7.5 in.)(2) 200 mm (7.5 in.)(2) 200 mm (7.5 in.)(2)
(1) Vision sensor <—> Touch-trigger probe, see U5158834 page 6. (2)
At a maximum workpiece depth in Y of 140 mm, otherwise Z = 80 mm.
LOADING CAPACITY
• Load-bearing capacity of the table up to 16 kg
DIMENSIONS IN MM AND WEIGHTS IN KG
• Dimensions see machine layout on page 5
• Machine weight 260 kg + base frame 45 kg
MEASURING ACCURACY(3)
At 20°C, according to ISO 10360-7, with
Vision sensor, at highest zoom magnification,
standard measuring plane(3)
At 20°C, with touch-trigger probe(3)
XY measuring accuracy
MPE (Exy) = (2.8 + L/150) μm
XY measuring accuracy
MPE (Exy) = (2.8 + L/150) μm
Z measuring accuracy
MPE (Ez) = (5.0 + L/150) μm
Z measuring accuracy
MPE (Ez) = (5.0 + L/150) μm
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