Miniaturowa sonda stykowa OMP400 o wysokiej dokładności

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Ultra compact high-accuracy 3D measurement touch probe for small to medium sized machining centres.

 

Renishaw wins Queen's Award for Enterprise: Innovation 2009 for the OMP400 high accuracy touch probe

About OMP400

Strain gauge structureThe OMP400 is an ultra compact probe, ideally suited to small to medium machining centres. It combines the miniaturisation of the highly successful OMP40 probe with new advances in strain gauge technology, pioneered by Renishaw's high accuracy MP700 probe.

Strain gauges attached to the structure measure the smallest of stylus motions, allowing for a very sensitive system.

The innovative RENGAGE™ technology built into the OMP400 brings unrivalled performance in terms of 3D measurement. Use OMP400 with Renishaw OMV for advanced on-machine verification when machining contoured surfaces and complex shapes.

OMP400 features and benefits

  • RengagePatented RENGAGE™ technology brings unrivalled performance in terms of 3D measurement.
  • Increased stylus lengths can be supported without a significant decrease in probe performance
  • Compatible with all existing Renishaw receiver interfaces (modulated: OMI-2T and OMI-2C; legacy: OMI and OMM / MI 12)
  • The OMP400 sets new standards for reliability and, sealed to IPX8, OMP400 is designed to resist the harshest machine conditions

OMP400 system options

OMP400 with OMI-2T

 

OMP400 with OMI-2

 

OMP400 with OMI

 

OMP400 with OMM / MI 12

OMI-2TOffers twin probing option.

 

OMI-2Offers a state-of-the-art modulated optical transmission method.

 

OMIIdeal for factory fitment by machine tool builders.

 

OMMOffers installation flexibility making it ideally suited for retro-fitting in the field.

OMP400 specification

Specification

 
Principal application Small to medium machining centres and mould & die applications

Weight (without shank in g)

with batteries

without batteries

262 g (9.24 oz)

242 g (8.53 oz)

Sense directions Omni-directional: ± X, ± Y, +Z
Uni-directional repeatability

0.25 µm (10 µin) 2 sigma – 50 mm stylus length*
0.35 µm (14 µin) 2 sigma – 100 mm stylus length

2D lobing in X, Y ± 0.25 µm (10 µin) 2 sigma – 50 mm stylus length*
± 0.25 µm (10 µin) 2 sigma – 100 mm stylus length

3D Lobing in X, Y, Z

± 1.00 µm (40 µin) 2 sigma – 50 mm stylus length*
± 1.75 µm (70 µin) 2 sigma – 100 mm stylus length

Trigger speed range

10 mm/min to 1 m/min

Stylus trigger force**

XY plane

+ Z direction

0.06 N, 6 gf (0.22 ozf) typical minimum

2.55 N, 260 gf (9.17 ozf) typical minimum

Stylus overtravel force**

XY plane

+Z direction

1.04 N, 106 gf (3.74 ozf) typical minimum§

5.5 N, 561 gf (19.78 ozf) typical minimum †

Stylus overtravel

XY plane

+Z direction

± 11°

6 mm (0.23 in)

Battery life

- stand-by

- 5% usage

- continuous life

Legacy / Modulated mode

One year

90 / 110 days

110 / 105 hours

Sealing

IP X8 (BS 5490, IEC 529) 1 atmosphere

Shanks Various

Compatible interface

Legacy mode: OMI or OMM / MI 12

Modulated mode: OMI-2 or OMI-2T

* Performance specification is for a test velocity of 240 mm/min (9.45 in/min) with a 50 mm carbon fibre stylus. Test velocity does not constrain performance in application.

** The stylus trigger force is the force exerted on the component when the probe triggers. However, the maximum force applied to the component will occur after the trigger point and will be greater than the trigger force. The magnitude depends on a number of factors affecting probe overtravel including
measuring speed and machine deceleration. If the forces applied to the component are critical, contact Renishaw for further information.

§ Stylus overtravel force in XY plane occurs 70 µm after the trigger point and rises by 0.1 N/mm, 10 gf/mm (9.1 oz/in) until the machine tool stops (in the high force direction and using a 50 mm carbon fibre stylus).

† Stylus overtravel force in + Z direction occurs 10 to 11 µm after the trigger point and rises by 1.2 N/mm, 122 gf/mm (109.6 oz/in) until the machine tool stops.

OMP400 software options

The following software packages can be used to program probing routines for work piece set-up and inspection on CNC machining centres

EasyProbe - entry-level package for simple work piece set-up

Inspection - basic set-up and work piece inspection cycles, with automatic update of offsets

Inspection Plus - an integrated suite of inspection cycles including vector measurement

Productivity+ Active Editor Pro - a PC-based software package with GUI, allowing the user to select features directly from an imported CAD model, making the generation of probing cycles even easier.

Renishaw OMV - A PC-based software package for verification of complex parts and live data capture to PC during probing for instant feedback on component quality.

Marketing literature

Useful links

Trigger logic

OMP40 probe

OMI (legacy)

OMM / MI 12 (legacy)

OMI-2 (modulated)

OMI-2T (modulated)

M4 styli

EasyProbe

Inspection software

Inspection Plus

Adaptive machining

Productivity+

Productivity+ userIntegrated in-cycle adaptive machining and process control.

Verification

Renishaw OMV

Renishaw-OMV-softwareVerify complex geometric and free-form parts on the machine.

We recommend

QC20-W ballbar

QC20-W i podparcie środka obrotuThe 10-minute health check for your machine tool.

Następne kroki

Skontaktuj się z nami online, jeżeli potrzebujesz więcej informacji lub masz zapytanie o cenę bądź, alternatywnie, chciałbyś rozmawiać bezpośrednio ze swym lokalnym biurem Renishaw.