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多通道電動光纖偏振控制器

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  • 公司名稱北京波威科技有限公司
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  • 更新時間2021/8/19 19:40:30
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北京波威科技有限公司坐落于北京海淀中關村高科技園區,是一家集生產、研發、銷售及代理為一體的光電領域的高科技技術服務公司。 產品涉及激光、光電子、光通訊、光學、物理、電子和生物等多個學科領域,可廣泛應用于教學、科研、產品開發及規模生產。業務范圍覆蓋了國內各大所屬各研究所、航天科工/科技集團所屬研究所、中電集團所屬研究所、所屬各研究所等不同系統內的研究機構及相關領域內的高科技公司。 波威公司始終堅持高起點,高要求,與一線生產廠商攜手,做到產品在技術上秉承嚴謹的科學態度,務實的工作作風,誠實的經營理念,與廣大客戶攜手共創美好明天! 我們的產品有:固體激光器、半導體激光器、可調諧激光器、光纖激光器、窄線寬激光器、激光測量儀器與配件、太赫茲、高速光電探測器、紫外探測器、紅外探測器、超快探測器、焦平面陣列探測器、科學相機、光譜儀、高光譜成像系統、光束質量分析儀、空間光調制器、聲光調制器、電光調制器、高速光開關、光發大器、光衰減器、可調諧濾波器、波長轉換器、高溫光纖、紅外光纖、能量光纖、微波放大器、微波元器件、光學透鏡等光電類產品。
近紅外光譜儀
MotorizedPolarizationController,MPC1-02Controllingpolarizationisessentialwithinthefiber-opticsindustryintegratingthisfunctionwithcomputercontrolledcapabilityenhancesmeasurementspeed,accuracy,an
多通道電動光纖偏振控制器 產品信息

詳細信息

Motorized Polarization Controller, MPC1-02

Controlling polarization is essential within the fiber-optics industry – integrating this function with computer controlled capability enhances measurement speed, accuracy, and overall productivity.

FiberControl’s family of 1, 2 and 4 channel Motorized Polarization Controllers provides stable and rapid control of the state-of polarization of laser sources without altering the time-averaged power. Utilizing the all fiber Lefèvre loop design, this time-tested approach has proven to provide excellent control with ultra-low power variations (PDL). The flexibility inherent within this design allows for a wide range of applications from component testing to PMD related activities. The continuous length of fiber enables high power and ultra-low insertion loss. This design offers a wide range of AutoScan rates and high incremental angular resolution. Supply voltages range from 85 VAC to 264 VAC (47 Hz to 63 Hz). Operating wavelengths: 1070 nm or 1300 nm to 1600 nm.

Features:

Single-fiber design

Ultra-low insertion loss, PDL, and back-reflection

Convenient save/recall settings

Multi-rate polarization scrambling

AutoScan operation with a wide dynamic range of rotational speed

GPIB IEEE 488.2 & RS-232 and BTM standard

Labview 6.0 driver provided. May be used with C,C++, VB, or any other development language featuring GPIB support

950 nm to 1070 nm or 1300 nm to 1600 nm

Applications

Component level PDL measurements

Sub-system PDL testing

General purpose in-line control of the SOP

Low to medium-speed polarization scrambler

Polarization pattern generator

Maximize or minimize signal intensity with feedback from optical power meters (or OSA)

Component within PMD emulator

Component within PMD compensator

Polarization stabilizer

Specifications:(optical, line,. power, physical)

Optical Specifications

 

Insertion-Loss (typical) *

< 1.00 dB

Extinction Ratio (typical) **

> 40 dB

Coverage of Poincaré Sphere

1

Polarization Dependent Loss **

< ± 0.002 dB

Wavelength Operating Range

1300 nm to 1600 nm,

or 980 nm region

Connector Types

FC, SC, or Bare Fiber

Return Loss

(Connector polish)

> - 50 dB (0°)

> - 60 dB (8°, fusion splice)

Max. Signal Power ***

+30 dBm

Max SOP Transit Time

of Single Waveplate****

2,880°/sec

Minimum Rotational

Resolution 

0.15 °/step

Angular Accuracy

(averaged over 360°) ‡§

0.00024° (<±0.9")

Angular Repeatability

(1- Sigma) 

± 0.014°

Rotation Stability

(Drift) Over Time§

< 0.0069°

Range of Rotational Speed

of Single Waveplate****

1  2880 °/sec @ 33 º/sec

Maximum Rotational

Speed per Channel****

8,640°/sec

Maximum Rotational Speed,

Cascaded Channels****

8,

MPC1-01 (3 waveplates),

640°/sec,

MPC1-02 (6wp),

17,280°/sec,

MPC1-M (12wp)

34,560°/sec

Settling Time

0.007 sec  0.015 sec

Number of AutoScan Rate Settings

20

Number of Save/Recall Settings

9

* 1550 nm with connectors

** 1550 nm with FC/PC connectors, completely polarized light

*** Below SRS limit (SBS limit determined by the spectral broadening of user’s source)
**** Corresponding to transitions in Stokes 3-space
† Mechanical rotations via micro-stepped stepper motors
‡ Statistically calculated mechanical value from exp. meas. of a representative sample of early production units, not guaranteed/non-warranted specification 
§ Below mechanically resolved experimental meas. limit of 0.0069° (<0.5')

Instrumentation Control

 

Parallel Interface

Standard GPIB (IEEE 488.2)

Serial Interfaces

Standard EIA-RS232

Response Time

< 5 msec

Software Compatibility

LabView 6.0, C, C++,

w/ GUI interface

or any GPIB compatible language

SOP AutoScan

User algorithms entered at front

(pseudo-random)

panel or via GUI

SOP Scramble

Near uniform inStokes 3-space

Waveplate Actuation

Stepping motor with micro-stepping excitation

System Controller

Embedded Microcontroller, 40 MHz

Operating System

Windows9x, 2000 Pro, Win NT 4.0, XP

† - Control IEEE 488.2 GPIB, RS232, Binary Transparent

Line Power / Temperature

 

Electrical Input Voltage

85-264 VAC, auto-switching

Line Frequency

47-63 Hz

Power Dissipation (nominal) MPC1-01, MPC1-02, MPC1-M

11.0 W, 19.9 W, 41.5 W

Fusing Requirements
MPC1-01, MPC1-02, MPC1-M

1 Amp

Power Receptacle

IEC 320

Power Supply Efficiency (nominal) Operating Temperature

82%
-10 °C to +35 °C

Physical

 

Dimensions (H x Wx D) 
MPC1-1, MPC1-2, MPC1-M

9.2 x 23.5 x 40 cm ( 3½ x 9 ¼ x 15 ¾")
9.2 x 44.8 x 40 cm ( 3½ x 17½ x 15¾")

Weight 
MPC1-1, MPC1-2, MPC1-M

35.7 N (8.03lbs), 41.4 N (9.32lbs), 
70.8 N (15.92lbs)

When ordering, please select from the option tables below:

 

 

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