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Tunable Laser Kit Components 


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Tunable Laser Kit Components 

Features

  • Components Compatible with Thorlabs' Tunable Laser Kits
  • Convert Laser Between Littman and Littrow Configurations
  • Alter Cavity to Support Other Gain Chips

This page includes products that are direct replacements of standard components in the Tunable Laser Kit and can be used to customize a tunable laser kit's performance. By using these components, customers can replace standard components, switch between cavity configurations, and alter the laser's performance. The images and tables immediately below label the components in our standard Tunable Laser Kits.

Spec SheetThis link opens a document that contains a comprehensive list of performance specifications and performance plots.

All quoted values are typical. Please see the gain chip's Spec Sheet (linked below) for the most detailed information on performance.

General Specifications
Item #Spec
Sheet
Reference CavityCWLaTuning
Rangea, b
Peak
Powera
Chip GaincGain RippleR1R2Chip Length
TFP780ASpec SheetTLK-L780M770 nm30 nm50 mW-3 dB0.01%90%d0.75 mm
SAF1171SSpec SheetTLK-L1050M1050 nm60 nm8 mW30 dB2.5 dB (Max)0.005%10%e1 mm
SAF1175SSpec SheetLittmann Cavity
(Offered as OEM)
1220 nm90 nm40 mW17 dB0.5 dB0.005%10%e1 mm
SAF1174SSpec SheetTLK-L1300R1310 nm100 nm50 mW35 dB0.35 dB0.005%10%e2 mm
SAF1550S2Spec SheetTLK-L1550R1550 nm120 nm40 mW17 dB0.4 dB (Max)0.005%10%e1 mm
SAF1550P2Spec SheetTLK-L1550R1550 nm120 nm40 mW17 dB0.4 dB (Max)0.005%10%e1 mm
SAF1900SSpec SheetTLK-L1900M1900 nm120 nm7 mW18 dB1.5 dB0.005%20%e2 mm

All values are typical, unless otherwise indicated.
a The values given in the highlighted columns were measured in the specified reference cavity. Different external cavities will produce different performance specifications.
b 10 dB point.
c Single-pass optical gain at center of gain curve.
d Refer to the FP chip reflectivity diagram below.
e Refer to the SAF chip reflectivity diagram below.


ASE Specifications
Item #Center Wavelength (Typ.)3 dB Bandwidth (Typ.)ASE CurrentOperating Current (Typ.)Operating Current (Max)
TFP780A780 nm30 nm80 mA (Typ.)140 mA180 mA
SAF1171S1050 nm60 nm150 mA (Max)-150 mA
SAF1175S1220 nm80 nm200 mA (Typ.)200 mA-
SAF1174S1320 nm80 nm600 mA (Typ.)500 mA800 mA
SAF1550S21550 nm80 nm300 mA (Typ.)300 mA500 mA
SAF1550P21550 nm80 nm300 mA (Typ.)300 mA500 mA
SAF1900S1930 nm150 nm400 mA (Typ.)500 mA800 mA

Note: The light polarization is vertical inside the Fabry-Perot Gain Chip, while the light polarization is horizontal inside the SAF Gain Chips.

SAF Reflectivity Drawing

*R2 = 10% for all models in the SAF series except the SAF1900S, for which R2 = 20%.

FP Reflectivity Drawing


Fabry-Perot Gain Chip Lasing Performance Using Littman Tunable Laser Kit

The Fabry-Perot (FP) laser diode has the two parallel ends of the semiconductor cleaved atomically flat to produce an oscillating cavity. Laser light is typically emitted through one of these highly reflective edges, using the semiconductor as the gain medium. FP lasers typically lase in a single longitudinal mode and exhibit temperature-dependent tunability over a small range. Since the end facets of the chip form the laser cavity, different longitudinal modes also appear in the emission, broadening the linewidth (100 - 1000 GHz). Given below are the typical TFP780A spectra and details on the packaged devices.

Part #Center WavelengthPower vs. CurrentPower Spectrum
TFP780A770 nmSAF1175S Power Versus CurrentSAF1175S Power Spectrum

 

Basic Littman Configuration

Basic Littman Configuration

Fabry-Perot Gain Chip Drawing

Fabry-Perot Gain Chip


SAF Gain Chip Lasing Performance Using Littrow Tunable Laser Kit

The innovative design of an SAF gain chip is ideal for use in external cavity lasers because it virtually eliminates unwanted feedback from the intracavity facet of the gain chip. These devices offer superior performance in a wide variety of external cavity configurations. Given below are typical spectra and details on the packaged devices.

Part #Center WavelengthPower vs. CurrentPower Spectrum
SAF1171S1050 nmSAF1175S Power Versus CurrentSAF1175S Power Spectrum
SAF1175S1220 nmSAF1175S Power Versus CurrentSAF1175S Power Spectrum
SAF1174S*1320 nmSAF1174S Power Versus CurrentSAF1174S Power Spectrum
SAF1550S21550 nmSAF1550S2 Power vs. CurrentSAF1550S2 Power Spectrum
SAF1550P21550 nmSAF1550P2 Power vs. CurrentSAF1550P2 Power Spectrum
SAF1900S1900 nmSAF1900S Power Versus CurrentSAF1900S Power Spectrum

*Please note that the fluctuations in the power spectrum between 1350 and 1380 nm are associated with water vapor absorption. The power at these wavelengths can be improved by purchasing the TLK-E sealed laser enclosure and purging the enclosure with gas.

 

Basic Littrow Configuration

Basic Littrow Configuration

Fiber-Coupled SAF Gain Chip Drawing

SAF Gain Chip

Cavity DesignLittrowLittman-Metcalf
High Output Powerx 
Wide Tuning Rangex 
Narrow Linewidth x
Stationary 0th Order Beam x

Lasers consist of an active gain element and optical feedback to this gain element. The most common diode lasers are based on a Fabry-Perot design with a linear waveguide and reflective surfaces at both ends of the gain chip to provide feedback. Some Fabry-Perot lasers are constructed for external feedback, but this is rare. Single angle facet (SAF) gain chips, on the other hand, have a curved waveguide with only one internally reflective endface and rely on external optical feedback to produce lasing.

Through the use of an external feedback mechanism, a user is able to tune a laser cavity to sustain a desired wavelength with minimal linewidth. This is highly desirable for many applications, particularly in metrology where precision is essential. Littrow and Littman-Metcalf configurations are the two most common ways to build an External Cavity Laser (ECL). Many other ECL configurations are based on these designs, but typically modify the cavity with additional optical components. Littrow cavities have minimal losses and thus intrinsically offer higher power, while Littman-Metcalf cavities produce a narrower linewidth.

A Littrow cavity provides feedback to the gain element through the use of a grating. One end of the gain element must allow light to exit, such as the design of an SAF. Light emitted from this end is first collimated. A grating then diffracts this collimated beam with the 1st order diffraction coupled back into the gain element, which allows it to support lasing. Wavelength tuning of the laser is possible by altering the angle of the grating relative to the cavity. 0th order diffraction from the grating will exit the laser's cavity at an angle dependent on the grating angle.

Littman-Metcalf configured ECLs use both a grating and a mirror for tuning. Similar to the Littrow configuration, light emitted from the uncoated end of the gain element must first be collimated. This beam is then diffracted by a grating. The 0th order diffraction reflects off of a mirror back on to the grating, where it is diffracted a second time before being coupled back into the gain element. Since light is diffracted twice, losses are higher (power loss), but the side mode suppression ratio (SMSR) is increased to produce a narrower linewidth laser. In this configuration the grating remains stationary, while the mirror is turned to tune the laser cavity's supported wavelength. Unlike with Littrow lasers, the direction of the 0th order free space beam remains stationary, which can be beneficial in some applications.

Many modifications to these cavities can be made to produce a higher polarization extinction ratio (PER) or to improve the SMSR. We always seek to tailor our products to our customers' applications. Please contact Tech Support and let us know what accessories would benefit your application.

Littman Cavity Configurations

These are the differentiating components of each Littman Tunable Laser Kit. The Gain Chip, Top Plate, Grating Module, and Collimating Lens are the components you will need to convert from one supported wavelength to the next. If you are converting your Littrow Tunable Laser Kit to a Littman configuration, you will also need to purchase a Littman Mirror Module (TLK-LMM) and a Littman Grating Platform (TLK-LGP).

Littrow Cavity Configurations

These are the differentiating components of each Littrow Tunable Laser Kit. The Gain Chip, Top Plate, Grating Module, and Collimating Lens are the components you will need to convert from one supported wavelength to the next. If you are converting from a Littman to a Littrow configuration, you will not need any additional components than the ones listed below.

Included in Kit Item #Center WavelengthGain ChipTop PlateGrating ModuleCollimating Lens
TLK-L1220R1220 nmSAF1175STLK-P26TLK-G1350R2TLK-352230-C*
TLK-L1300R1310 nmSAF1174STLK-P26TLK-G1350RTLK-352230-C*
TLK-L1550R1550 nmSAF1550S2TLK-P26TLK-G1050RTLK-352230-C*
TLK-L1550R1550 nmSAF1550P2TLK-P26TLK-G1050RTLK-352230-C*
TLK-L1950R1950 nmSAF1900STLK-P26TLK-G0900RTLK-352230-C*

*Coming Soon

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Tunable Laser Gain Chips with TEC
  • Gain Chips Mounted for Easy Integration into External Cavity Lasers
  • Half-Butterfly Assembly with Thermoelectric Cooler
  • AR Coating Eliminates Unwanted Reflections, Increasing Laser Stability, Output Power, and Spectral Quality
  • FP Chip Designed for Use in a Free-Space Littman Cavity
  • SAF Chips Feature 1.5 m Long, SM or PM Tight Jacket Pigtail with FC/APC Connector

The SAF gain chips can also be coupled to PM fiber. Please contact Tech Support for more information on customization and quotes.

Note: The TFP780A does not include a fiber-coupled output.

Gain Chip
Item #
Compatible
Laser Kits
Typical Center
Wavelength*
TFP780A TLK-L780M 770 nm
SAF1171S TLK-L1050M 1050 nm
SAF1175S TLK-L1220R 1220 nm
SAF1174S TLK-L1300M
TLK-L1300R
1320 nm
SAF1550S2 TLK-L1550M
TLK-L1550R
1550 nm
SAF1550P2 TLK-L1550M
TLK-L1550R
1550 nm
SAF1900S TLK-L1900M
TLK-L1950R
1900 nm

*Center wavelength of the specified reference cavity.

Item #ASE Center
Wavelength
ASE 3 dB
Bandwidth
Peak
Gain
Gain
Ripple
TFP780A 780 nm 30 nm - 3 dB
SAF1171S 1060 nm 60 nm 30 dB 2.5 dB (Max)
SAF1175S 1220 nm 80 nm 17 dB 0.5 dB
SAF1174S 1320 nm 80 nm 35 dB 0.35 dB
SAF1550S2 1550 nm 80 nm 17 dB 0.4 dB (Max)
SAF1550P2 1550 nm 80 nm 17 dB 0.4 dB (Max)
SAF1900S 1900 nm 150 nm 18 dB 1.5 dB

All values typical unless otherwise noted. See the Gain Chip Specs tab for more information.

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TFP780A Support Documentation TFP780A Mounted FP Gain Chip, Half Butterfly Pkg, CWL = 780 nm $2,200.00
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SAF1171S Support Documentation SAF1171S Mounted SAF Gain Chip, Half Butterfly Pkg, CWL = 1050 nm, SM Fiber $3,000.00
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SAF1175S Support Documentation SAF1175S Mounted SAF Gain Chip, Half Butterfly Pkg, CWL = 1220 nm, SM Fiber $2,500.00
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SAF1174S Support Documentation SAF1174S Mounted SAF Gain Chip, Half Butterfly Pkg, CWL = 1320 nm, SM Fiber $2,500.00
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SAF1550S2 Support Documentation SAF1550S2 Mounted SAF Gain Chip, Half Butterfly Pkg, CWL = 1550 nm, SM Fiber $2,500.00
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SAF1550P2 Support Documentation SAF1550P2 Mounted SAF Gain Chip, Half Butterfly Pkg, CWL = 1550 nm, PM Fiber $2,650.00
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SAF1900S Support Documentation SAF1900S Mounted SAF Gain Chip, Half Butterfly Pkg, CWL = 1900 nm, SM Fiber $2,500.00
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Mounting Plates for Half-Butterfly Gain Chips
Mounting Plate
Item #
Compatible LasersLaser Center Wavelength
TLK-P00 TLK-L780M 770 nm
TLK-P26 TLK-L1050M
TLK-L1300M
TLK-L1300R
TLK-L1550M
TLK-L1550R
TLK-L1900M
TLK-L1950R
1050 nm
1310 nm
1310 nm
1550 nm
1550 nm
1900 nm
1950 nm
  • Mounting Plates for 0° or 26.5° Angled Facets
  • Select Based on Lateral Beam Exit Angle of Gain Chip

Thorlabs offers half-butterfly gain chip mounting plates that properly angle the gain chip relative to the rest of the laser cavity. Mounting plates may be interchanged on both Littman and Littrow cavity configurations to pair with a gain chip to generate the desired output wavelength. Please see the table to the right for the correct top plate based on the cavity configuration.

The gain chip mounting plates feature a 6-pin half butterfly mount and preconnected pin recepticles. Mounting plate connections are made to the tunable laser kit via gold-plated, spring-loaded connectors on the bottom of the plate. Note that mounting plates for TO-packaged diodes are listed below.

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TLK-P00 Support Documentation TLK-P00 Tunable Laser Kit Mounting Plate, 0° $375.00
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TLK-P26 Support Documentation TLK-P26 Tunable Laser Kit Mounting Plate, 26.5° $375.00
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Mounting Plates for AR-Coated Laser Diodes in TO Cans
Pin Codes A-C
Pin Codes D-E
Pin Codes
  • Mounts Ø5.6 mm or Ø9 mm Diodes
  • Integrated TEC and Thermistor
  • Four-Pin Socket Accepts A, B, C, D, or E Pin Configurations (See Right)

These mounting plates integrate TO-packaged laser diodes into Thorlabs' Tunable Laser Kits. They are drop-in replacements for the standard Half-Butterfly Mounting Plates. As TO-packaged diodes are readily available with various center wavelengths, this represents an economical solution for building a customized tunable laser that operates at wavelengths for which a half-butterfly gain chip is not available.

The mounting plates incorporate a 10 kΩ thermistor into the diode bracket for accurate temperature readings, and a 1.5 A TEC element is placed in contact with this bracket via thermal grease, providing excellent heat transfer. If greater thermal control is required, the TEC element may be replaced with a larger TEC by the user.

These mounting plates ship ready to accommodate either a Ø5.6 mm or a Ø9 mm diode. Regardless of which model is ordered, a supplementary bracket is included to accept the other diode package size. When changing between brackets, ensure that the thermistor is disconnected from the wiring harness and re-apply thermal grease to the TEC element before re-attaching a laser diode bracket.

Installation Notes
To insert a laser diode in to the mounting plate, first remove the retaining ring from the bracket with an SPW301 spanner wrench. Next, insert a laser diode. Now thread the retaining ring behind the diode to secure it in the mount. Attach the laser diode socket to the diode and route the wires to the proper connection on the mounting plate.

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TLK-PM5 Support Documentation TLK-PM5 Customer Inspired! Tunable Laser Kit Mounting Plate for Ø5.6 mm TO-Packaged Laser Diodes $680.00
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TLK-PM9 Support Documentation TLK-PM9 Customer Inspired! Tunable Laser Kit Mounting Plate for Ø9 mm TO-Packaged Laser Diodes $680.00
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Tunable Laser Kit Base Module
  Base Plate of Tunable Laser Kit
  Includes Controller Interface with Laser Polarity Switches

The TLK-BM allows users to customize their Tunable Laser Kit so that it best suits their application. This base module is the common mounting plate on which all other tunable laser components are mounted. The table below lists many possible cavity configurations based on the gain chip used. A component or set of components from each column should be acquired to construct a tunable laser. While standard Tunable Laser Kits use a half-butterfly gain chip, AR-coated diodes and laser diodes may also be used. For help choosing the appropriate components for your tunable laser or for custom parts (i.e., other gratings), please contact Tech Support.

The base module includes a controller interface with polarity switches to support different AR-coated and laser diodes.

What You'll Need to Build a Tunable Laser with the TLK-BM
Gain ChipTop PlateTuning OpticsWavelength TuningMode Hop AdjusterCollimation
Half Butterfly Half-Butterfly
Mounting Plate

Littrow Grating Module

OR

Littman Grating Module
Littman Grating Platform
Littman Mirror Module

1/4"-80 Threaded Actuator Mount
1/4"-80 Threaded Tuning Actuator

OR

Ø9.5 mm Actuator Mount
Ø9.5 mm (Ø3/8") Tuning Actuator




Mode Hop Adjuster



Mounted Collimating Lens
Focus Adjuster

AR-Coated Diode*

TO-Packaged Diode
Mounting Plates
Laser Diode

*Available Third Party

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TLK-BM Support Documentation TLK-BM Customer Inspired! Tunable Laser Kit Base Module, Includes LD/TEC Controller Interface $1,200.00
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Littrow Grating Modules
Littrow Grating
Item #
Compatible
Littrow Kit
Optimal Center Wavelength
TLK-G1800R N/A 980 nm
TLK-G1350R2* TLK-L1220R 1220 nm
TLK-G1350R* TLK-L1300R 1310 nm
TLK-G1050R TLK-L1550R 1550 nm
TLK-G0900R TLK-L1950R 1950 nm

*Position of grating on arm differs between both 1350 grooves/mm products.

  • Grating Modules for Operation at 980, 1220, 1310, 1550, or 1950 nm
  • Includes Pivot Bracket, Arm, and Grating

Thorlabs offers five holographic reflection gratings featuring 900, 1050, 1350, or 1800 grooves/mm for use with TLK Series Littrow Tunable Laser Kits. The gratings are premounted on a pivot arm for easy installation into existing Tunable Laser Kits.

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TLK-G1800R Support Documentation TLK-G1800R Littrow Grating Module for Littrow Tunable Laser Kits, 1800 g/mm, 980 nm Operation $1,690.00
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TLK-G1350R2 Support Documentation TLK-G1350R2 Littrow Grating Module for Littrow Tunable Laser Kits, 1350 g/mm, 1220 nm Operation $1,690.00
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TLK-G1350R Support Documentation TLK-G1350R Littrow Grating Module for Littrow Tunable Laser Kits, 1350 g/mm, 1310 nm Operation $1,690.00
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TLK-G1050R Support Documentation TLK-G1050R Littrow Grating Module for Littrow Tunable Laser Kits, 1050 g/mm, 1550 nm Operation $1,640.00
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TLK-G0900R Support Documentation TLK-G0900R Littrow Grating Module for Littrow Tunable Laser Kits, 900 g/mm, 1950 nm Operation $1,610.00
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Littman Grating Modules
Littman Grating Item #Compatible Littman KitOptimal Center Wavelength
TLK-G1500M TLK-L780M 770 nm
TLK-G1150M TLK-L1050M 1050 nm
TLK-G0900M TLK-L1300M 1310 nm
TLK-G0750M TLK-L1550M 1550 nm
TLK-G0600M TLK-L1900M 1900 nm
  • Grating Modules for Operation Centered at 770, 1050, 1310, 1550, or 1900 nm
  • Includes Grating and Mount

Thorlabs offers five holographic reflection gratings featuring 600, 750, 900, 1150, or 1500 grooves/mm for use at 1900, 1550, 1310, 1050, or 770 nm, respectively. The gratings, 17.0 mm x 7.3 mm, are premounted for easy installation into existing Tunable Laser Kits. When convertng from Littrow to Littman configurations, a TLK-LGP grating platform is also required.

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TLK-G1500M Support Documentation TLK-G1500M Littman Grating Module for Littman Tunable Laser Kits, 1500 g/mm $635.00
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TLK-G1150M Support Documentation TLK-G1150M Customer Inspired! Littman Grating Module for Littman Tunable Laser Kits, 1150 g/mm $485.00
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TLK-G0900M Support Documentation TLK-G0900M Littman Grating Module for Littman Tunable Laser Kits, 900 g/mm $635.00
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TLK-G0750M Support Documentation TLK-G0750M Littman Grating Module for Littman Tunable Laser Kits, 750 g/mm $585.00
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TLK-G0600M Support Documentation TLK-G0600M Customer Inspired! Littman Grating Module for Littman Tunable Laser Kits, 600 g/mm $350.00
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Littman Grating Platform
  • Mount for Grating in a Littman Tunable Laser Kit
  • Easily Rotate and Lock Grating at Correct Angle

The TLK-LGP Grating Platform is designed to securely hold a Littman grating module within the tunable laser kit assembly. The image to the right shows the TLK-G0900M grating mounted in the platform. To rotate the grating, simply loosen the M3 cap screw with the included hex key, and rotate the grating using the knurled knob below the platform. The platform is secured to the laser kit with two M4 cap screws and washers, which are also included.

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TLK-LGP Support Documentation TLK-LGP Littman Grating Platform for Littman Tunable Laser Kits $88.00
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Littman Mirror Module
  Mirror Module for Littman Tunable Laser Kit
  Premounted Mirror for Easy Installation
  Front Silvered Mirror

The Littman Mirror Module for Thorlabs' Tunable Laser Kit features a premounted, front silvered mirror for easy installation. The mirror, 25.0 mm x 18.0 mm, is mounted to a radial arm controlled by the Tunable Laser Kit.

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TLK-LMM Support Documentation TLK-LMM Littman Mirror Module for Tunable Laser Kits $1,350.00
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Tuning Actuator Mounts
  Mirror / Grating Actuator Motor Mount
  Radial Arm Retainer Spring
  TLK-MM1: 1/4"-80 Internal Thread Designed for Z812 Actuator
  TLK-MM2: Designed for Ø9.5 mm (Ø3/8") Barrel Actuators

Thorlabs offers two tuning actuator mounts. The first is the TLK-MM1, which has a 1/4"-80 threaded bushing. It is the standard tuning actuator mount included with tunable laser kits and is ideal for mounting the Z812 DC servo motor (below). The second tuning actuator mount is the TLK-MM2. This mount has a clamp for Ø9.5 mm (Ø3/8") barrel actuators. This allows the integration of actuators such as our PE4 manual and piezo drive or the Mitutoyo 148-142 high-resolution micrometer.

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TLK-MM1 Support Documentation TLK-MM1 1/4"-80 Threaded, Z8 Tuning Motor Mount for Tunable Laser Kits $225.00
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TLK-MM2 Support Documentation TLK-MM2 Ø9.5 mm (3/8") Barrel Tuning Motor Mount for Tunable Laser Kits $225.00
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DC Motor Tuning Actuator
  Direct Replacement for TLK Tuning DC Servo Motor
  12 mm Travel
  29 nm Theoretical Resolution
  3 mm/s Max Velocity

The Z812 is the standard DC servo motor used in Thorlabs' Tunable Laser Kits. Its 1/4"-80 threaded barrel mounts to the TLK-MM1 Tuning Motor Mount. We recommend using the TDC001 controller for this actuator.

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Z812 Support Documentation Z812 12 mm Motorized Actuator - 1/4"-80 Thread (0.5 m Cable) $685.00
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Fine-Tuning Piezo Actuator
  Wavelength Tuning Open-Loop Piezo Actuator
  Use in Tandem with Main Tuning Actuator
  9.1 µm Max Displacement
  150 V Max, 100 V Recommended Drive Voltage
  0.75 µF ± 20% Capacitance @ 1 kHz, 1 VRMS

This piezo module attaches to the grating pivot arm (Littrow) or mirror pivot arm (Littman) via its M12 x 1.25 threaded housing to provide fine wavelength tuning of a Tunable Laser Kit. The standard tuning actuator is a Z812 DC servo motor, which offers 12 mm of travel and a minimum incremental movement of 0.05 µm. The piezo module is used in tandem with the Z812 tuning actuator, allowing the user to access the full tuning range, while also having the ability to finely tune the wavelength. The TLK-PZT1 has a BNC connector for use with Thorlabs open-loop piezo controllers. The table below lists the incremental wavelength tuning of the tunable laser kits when the TLK-PZT1 is integrated into them.

Littman Item #TLK-L780MTLK-L1050MTLK-L1300MTLK-L1550MTLK-L1900M
Incremental Tuning 7 pm/µm 10 pm/µm 13 pm/µm 15 pm/µm 20 pm/µm
Littrow Item #TLK-L1220RTLK-L1300RTLK-L1550RTLK-L1950R
Incremental Tuning 10 pm/µm 7 pm/µm 14 pm/µm 18 pm/µm
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TLK-PZT1 Support Documentation TLK-PZT1 Piezo Adjuster, 9.1 µm Travel $270.00
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Mode Hop Adjuster
   Adjuster Designed to Minimize Mode Hopping
   Fine Push Adjustment
   Securely Fasten with Cap Screws

Thorlabs' Mode Hop Adjuster is designed to adjust the pivot point of the radial arm in a tunable laser to eliminate fluctuations in the laser's intensity/power at a given mode. The adjuster is designed to push the pivot bracket which the radial arm is mounted to. Once the desired position is reached, the pivot bracket can be secured to the kit base plate.

Please Note: The Mode Hop Adjuster is not designed to pull the radial arm stage. The pivot bracket must be manually reset to the starting position, followed by fine push adjustment by the adjuster.

Based on your currency / country selection, your order will ship from Newton, New Jersey  
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TLK-MHA1 Support Documentation TLK-MHA1 Mode Hop Adjuster for Tunable Laser Kits $1,350.00
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Half-Wave Plate
a   Zero-Order, Half-Wave Plate
a   780 nm Center Wavelength
a   Mounts to Collimation Lens, Featured Below
a   Retardation Error
a   Optic Axis Oriented at 45° ± 2° with Respect to the Mount (See Drawing to Right)
a   Custom Wave Plates Available, Contact Technical Support for Details
  Wave Plate Optic Axis

 

The TLK-WPH780 is a zero-order, half-wave plate for use with tunable laser kits. This mounted wave plate is most useful when working with short wavelength devices in TO can packaging where the user can optimize both the beam axis orientation (to illuminate the maximum number of grating lines) and the polarization of the light incident on the external cavity grating. See the Cavity Configuration tab for a more detailed description of the role polarization and wave plates play in optimizing the output power of a tunable laser kit.

Based on your currency / country selection, your order will ship from Newton, New Jersey  
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TLK-WPH780 Support Documentation TLK-WPH780 780 nm Mounted Half-Wave Plate $330.00
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Mounted Aspheric Collimating Lenses
Collimating Lens Item #Compatible Laser KitCenter Wavelength
TLK-352330-B TLK-L780M 770 nm
TLK-352330-C TLK-L1300M 1310 nm
TLK-352330-C TLK-L1550M 1550 nm
  • Mounted Aspheric Lenses
  • Available in Two Coatings: 600 - 1050 nm or 1050 - 1620 nm

Thorlabs' offers two different Mounted Aspheric Lenses for use in the Tunable Laser Kit. The premounted lenses offer easy integration and alignment. The TLK-352330-B Collimating Lens incorporates a Ø5.00 mm, f = 3.1 mm, NA = 0.68 Geltech Aspheric Lens with AR coating for 600 - 1050 nm (Part # 352330-B). The TLK-352330-C Collimating Lens incorporates a Ø5.00 mm, f = 3.1 mm, NA = 0.68 Geltech Aspheric Lens with AR coating for 1050 - 1620 nm (Part # 352330-C).

Based on your currency / country selection, your order will ship from Newton, New Jersey  
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TLK-352330-B Support Documentation TLK-352330-B Tunable Laser Kit Collimating Lens, AR Coating: 600-1050 nm $183.00
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TLK-352330-C Support Documentation TLK-352330-C Tunable Laser Kit Collimating Lens, AR Coating: 1050-1620 nm $183.00
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Focus Adjuster
  Stainless Steel Body Flexure Focus Adjuster
  Provides 0.3 mm Travel
  100 TPI Adjuster
  Steel Lead Screw with Steel Ball Contacting a Sapphire Disk

Thorlabs' Flexure Focus Adjuster provides a precise and stable linear adjustment of the aspheric lens in the Tunable Laser Kit. Fine adjustment is achieved using the 100 TPI adjustment screw. A steel lead screw with steel bearing contacting a sapphire disk along with the flexure mechanism provides enhanced stability. The Mounted Aspheric Collimating Lens is secured to the Focus Adjuster using two M3 x 0.5 cap screws. The Focus Adjuster is secured to the Gain Chip Mounting Plate using two M3 cap screws.

Based on your currency / country selection, your order will ship from Newton, New Jersey  
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TLK-FM1 Support Documentation TLK-FM1 Flexure Focus Adjuster for Tunable Laser Kits $485.00
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Enclosure and Accessories
  • Enclosure Protects Cavity and Allows for Purging
  • Heater Kit Stabilizes Enclosure & Cavity Temperature
  • Steering Mirrors for TLK-E Align Free-Space Laser Beams to Optical Table

The TLK-E enclosure is essential for the most sensitive applications. Designed to act as a sealed container, it allows the user to purge the system with gas to remove absorption lines. Thorlabs' Pure Air Circulator Unit, which generates an extremely dry, nearly particle-free environment, can be attached to the TLK-E enclosure with the use of hose adapters. To provide temperature stability beyond that of the thermoelectric cooler included with the gain chip, a heater kit (TLK-H) can be added. This heater attaches between the base plate of a Tunable Laser Kit and the bottom plate of the enclosure. By connecting a TC200 temperature controller, the temperature of the whole enclosure can be precisely stabilized.

When using a free-space tunable laser kit, it is often desirable to have your emitted beam aligned to your optical table (i.e., beam path follows the hole matrix). The TLK-SM-1 steering mirrors redirect the beam of a free-space Littman configuration beam so that it is aligned to the hole matrix. Please note that these mirrors attach to the base of the enclosure, and thus the enclosure is required.

Based on your currency / country selection, your order will ship from Newton, New Jersey  
+1 Qty Docs Part Number - Universal/Imperial Price Available / Ships
TLK-E Support Documentation TLK-E Tunable Laser Kit Enclosure $1,800.00
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TLK-SM-1 Support Documentation TLK-SM-1 Steering Mirror for Littman TLK w/ Enclosure, 1 Mirror Element $355.00
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TLK-H Support Documentation TLK-H Tunable Laser Kit Heater $125.00
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