Products PI - Fast Multi-Channel Photonics Alignment Fast Multi-Channel Photonics Alignment Systems
F-712.MA1 High-Precision Single-Sided Fiber Alignment System
Stacked Multi-Axis System for Aligning Fibers and Optical Components
  • Integrated scan routines for fiber optic alignment
  • Ideal for applications in silicon photonics
  • Extensive software package
  • Direct detection of the optical signal
  • Position sensors for high accuracy and operational reliability
  • Automatic alignment of several fibers in <0.2s

Fast and high-precision drives

The basis of the fiber alignment system is a very stiff XYZ setup consisting of three motorized linear stages and a P-616  NanoCube® nanopositioner. The low overall height simplifies integration in limited installation space. The motorized drives make longer travel ranges possible and at the same time, the NanoCube® nanopositioner ensures fast scanning motion and dynamic compensation of drift effects. Flexure guides and all-ceramic insulated PICMA® actuators guarantee a long lifetime. Because all drives are equipped with position sensors, it is possible for example, to reliably prevent collisions with expensive silicon wafers.

Extensive software package

The software package supplied in the scope of delivery allows integration of the system into virtually any environment. All common operating systems such as Windows, Linux, and macOS as well as a large number of common programming languages including MATLAB and NI LabVIEW are supported. Thanks to sophisticated program examples and the use of software tools such as PIMikroMove, the time between starting integrating and productive operation is shortened considerably.

Application fields

Alignment of optical components, automatic wafer tests, assembling technology in silicon photonics

High-performance scan routines

The sophisticated scan routines are integrated directly into the controller. The performance is improved considerably and integration simplified. The system can manage all tasks in the field of fiber alignment. For example, this makes simultaneous alignment in several degrees of freedom possible.

High-resolution analog input

The controller receives the optical intensity signal directly via a high-resolution analog input. Complex setups with cameras are not necessary. Various distribution functions are available for determining the maximum intensity.

Motion and positioning

F-712.MA1

Unit

Number of active axes

6

Rough positioning

Active axes

X, Y, Z

Travel range in X, Y, Z

25, 25, 25

mm

Minimum incremental motion

3

µm

Max. velocity

20

mm/s

Sensor type

Rotary encoder

Guide

Crossed roller guide

Drive type

DC motor

Fine positioning

Active axes

X, Y, Z

Travel range in X, Y, Z, closed loop

100

µm

Min. incremental motion, open-loop

0.3

nm

Min. incremental motion, closed-loop

2.5

nm

Linearity error, for the entire travel range*

2

%

Repeatability (bidirectional) 10% travel range

2

nm

Sensor type

Incremental

Drive type

PICMA®

Alignment

Scanning time of spiraled area scan 500 µm Ø**

<3

s

Scanning time of spiraled area scan 100 µm Ø**

<0.3

s

Scanning time of spiraled area scan 10 µm Ø**

<0.2

s

Scanning time, gradient scan, randomized with ±5 µm (repeatability < 0.01 dB)***

<0.3

s

Miscellaneous

F-712.MA1

Unit

Operating temperature range, mechanics

-20 to 65

°C

Operating temperature range, controller

5 to 40

°C

Cable length

3

m

Requirements for the optical power meter

Unit

Output signal

Analog output, ideally converted from linear to logarithmic

Output voltage range, max.

-5 to 5

V

Bandwidth, min.

1

kHz

Noise level, max.

-60

dBm

Technical data specified at 20±3 °C.

* without polynomial linearization

** typical time span fod scanning the entire area and moving to the highest intensity

*** reaching the global maximum after first light has been found

3D Models
3D Models
F-712.MA1 3-D model
Version / Date
2019-11-27
zip - 3 MB
Datasheet
Datasheet
Datasheet F-712.MA1
Version / Date
2019-12-04
pdf - 646 KB
Documentation
Documentation
User Manual F603T0003
F-603.41 / F-603.42 / F-603.43 Fiber holders for P-616-type (NanoCube®) piezo positioners
Version / Date
2018-12-03
pdf - 793 KB
Documentation
User Manual E712T0016
Fast Multi-Channel Photonics Alignment. Hardware and Firmware for Fast Optical Alignment in Silicon Photonics Production.
Version / Date
2023-03-14
pdf - 3 MB
Documentation
User Manual F712T0019
Calculation of Optical Power - Using the F-712.PM1 Power Meter with F-712 High-Precision Fiber Alignment Systems
Version / Date
2020-02-24
pdf - 475 KB
Documentation
User Manual F712T0002
F-712.MA1 and F-712.MA2 Stacked Multi-Axis Systems for Fast Multi-Channel Photonics Alignment. Hardware description.
Version / Date
2023-08-07
pdf - 4 MB
Product Note
Product Note
Product Change Notification Piezo Actuator Driven Products
Version / Date
2021-04-19
pdf - 377 KB
Product Note
Product Change Notification Motor Driven Products
Version / Date
2021-04-19
pdf - 917 KB
White Papers
White Papers
Practical Examples of Parallel Alignment Automation
Version / Date
WP4010E 2018-04
pdf - 1 MB
F-712.MA1
Single-sided Fiber alignment system with stacked XYZ linear stages and NanoCube® Nanopositioner, E-712 digital controller with 4 analog inputs, firmware routines for extremely fast alignment functions, software package
Direct the future with the power of the past.
Expertise
Markets Technologies
Contact
Nano Dünya Mak. San. Tic. Ltd. Şti.
Parseller Mah. Gündoğan Sok. No:8/A
Ümraniye/İstanbul

02166140039
info@nanodunya.com.tr
Copyright © 2024 by Nano Dünya. All rights reserved.
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