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>LOS激光干涉儀

LOS激光干涉儀

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光傲科技股份有限公司

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面議

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606

產(chǎn)品介紹

LOS雙頻激光干涉儀是以波長作為標準對位移和幾何量進行度量的儀器,LOS采用了自制的穩(wěn)頻激光作為激光光源,精度可達到n m量級。LOS可以在很遠的距離達到很高的測試精度和解析度。

LOS系統(tǒng)應(yīng)用范圍廣,除了可用于長度的精密測量外,配上適當?shù)母郊€可測量角度、直線度、平面度、振動距離及速度等等。

該公司同時提供基于CCD的幾何度量系統(tǒng),使得測量更加靈活、快速,并保證精度。

主要特點:

  • 3年內(nèi)激光波長精度不低于 0,02 ppm.
  • 激光10年內(nèi)滿足測試要求
  • 激光無需采用任何穩(wěn)頻措施(如加熱)
  • 無需預(yù)熱,開機即可開始測量(一般激光需要預(yù)熱,使得激光波長穩(wěn)定下來)
  • 激光波長精度不受反射激光影響?。ㄒ话愕募す飧缮鎯x反射可導(dǎo)致嚴重的測量誤差)
  • 提供激光氣體更換服務(wù),即10年后,可以更換激光管的氣體,達到新激光管的性能(擁有自己的**HeNe激光生產(chǎn)技術(shù))
  • 空氣和材料溫度傳感器等均采用無線連接,安裝和使用簡單易用。
  • 通訊界面可以選 Ethernet, USB and WiFi,并自帶獨立顯示器
  • 標準質(zhì)保期 36 個月(3年)

測量參數(shù):

  • 位置測量 Position
  • 速度 Velocity
  • 加速度 Acceleration
  • 線性,準直度 Straightness
  • 矩形 Squareness
  • 角度 Angles
  • 平面面型 Flatness
  • 平行度 Parallelism

應(yīng)用領(lǐng)域:

Machinery機械行業(yè)
機床校正和補償 Machine tool calibration and compensation

三坐標測量機校正 Calibration of CMMs

測量儀器校正 Calibration of measuring devices

產(chǎn)品質(zhì)量控制 Production quality control

幾何尺寸測量 Measurement of dimensions

機床調(diào)整,對中 Adjustment and alignment of machines and devices

機床維護 Maintenance of machines

高精度機床內(nèi)部Internal measurement system for high-accuracy machines

螺桿質(zhì)量測試 Lead screw verification

動態(tài)測量 Dynamic measurement

航空和汽車工業(yè) Aircraft and automobile industry
大尺寸工件高精度測量 Measurement and checking of large dimensions
計量校正 Metrology and calibration institutes
作為長度標準,具有不同的應(yīng)用 The system is used in various applications as a length standard
微電子行業(yè) Microelectronic industry
The internal multiaxis system for high precision positioning mechanisms with both open and closed control loop, e.g.

- step and repeat cameras

- testing of semiconductor wafers

- laser writing machines

Other applications
任何需要對位置和幾何參數(shù)精密測量的行業(yè)和應(yīng)用,以及研發(fā)、科學(xué)研究等領(lǐng)域

動態(tài)測試功能:

LOS 雙頻激光干涉儀可以進行動態(tài)測試,采樣頻率可達500Hz, 完成測量后,即可進行數(shù)據(jù)處理,可以按照需要的格式進行顯示和打印。 WinScope軟件除了可以提供測試的數(shù)值外,還有許多便利的功能,如,觸發(fā)模式設(shè)置,計算和統(tǒng)計功能, FFT快速傅里葉變換算法,光譜分析, 強大的圖形顯示等.
位移,速度、加速度測試
閱讀: 1806
Standard LOS System configuration is designed to measure position, velocity and acceleration. A typical application is the calibration of positional accuracy of CNC machine tools. In this measurement the difference between the desired and actual position of the machine's moving part is evaluated. The method of measurement and evaluation corresponds to international standards (ISO 230-2, VDI/DGQ 2617,3441, NMTBA). The whole measurement process and printing of protocol is controlled by the computer programme and is fully automatic.
Software Compensation of Machine Tool Positional Errors
The measured positional errors can be transferred as correction data on line into the machine tool control system immediately after measurement. Considerable improvement of positional accuracy can thus be achieved in a minimum time. The producer delivers software modules which compensate for various control systems (SIEMENS, HEIDENHEIN, DYNAPATH, SELCA, YASNAC, FANUC, ACRAMATIC).
Further Applications

Positional accuracy of a co-ordinate measurement machine can be calibrated in a similar way (VDI 2617 standard). The LOS system is used also for the calibration of dimensional gauges. Laser systems cannot be replaced when precision measurement of long distances (up to 40 meters) is required.

Technical Specifications
Measurement range0 - 40 m
Resolution1.25 nm (lambda/512)
Accuracy in vacuum10-7 x measured length ± resolution ± 0.6 nm
Accuracy with the LS70 Comp. unit(0 - 40°C ): 1µ/m
Max. velocity1 m/s - PC card LS 30.11

2 m/s - PC card LS 30.12

線性度 Straightness 測量
閱讀: 1808
Errors in straightness of movement and in parallelity of axes can be measured by the LS 127ST set. The laser beam is split in the LS 127.1 differential beamsplitter into two parallel beams. After going through the optical wedge LS 127.2 the beams diverge at a small angle. The optical wedge functions as the straightness sensor. Reflector LS 127.3, formed by two inclined extremely precise plane mirrors, returns the beams back into the differential beamsplitter. The axis of the mirror reflector defines the straight line reference. This straightness measurement method is less sensitive to air turbulence disturbances than other methods. This straightness set also shows low sensitivity to possible inclinations of the straightness sensor during its movement at measurement.
The standard configuration for position measurement except the LS 20.1, LS 21.1, LS 70, LS 90.1, LS 90.3 is used for straightness measurement. The optical parts are fixed by the set of holders LS 51.

技術(shù)參數(shù)

Longitudinal measurement range3 m (or according to requirements)
Transverse measurement range±3 mm
Measurement Accuracy(± 0,005 X ±0,5 ±0,3 M2 ) µm

X - measured deviation in µm

M - measured longitudinal distance in m

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