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Laser diode solutions, fiber modulators and synchronization tools
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AeroDIODE makes laser diode solutions

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Laser diode drivers

High speed laser diode driver with user-design nanosecond pulse shape
This high speed laser diode driver can generate any programmable pulse shape with down to 500 picosecond and 48 dB dynamic range. It includes many functionalities like gain switch peak suppression and 3 synchronized pulse delay generators..
pulsed laser diode driver very modular
This pulsed laser diode driver generates any pulsed or CW optical signal from 1 ns to CW. The GUI software lets the user have total control of all module functions. It includes several libraries for software integration..
Multi channel 2 channel version
This fiber laser diode driver integrates two laser diode drivers, 6 photodiode electronics, a pulse-picker synchronization tool and many other dedicated functionalities for nearly any type of fiber laser architecture. .
laser drivre with ultra low noise performances
This low noise laser diode driver is most useful only when the level of noise is a major constraint. Its noise level is comparable with industry lowest noise battery-based drivers. This makes it the most compact low noise laser diode driver with such performances..
TDLAS-gas-sensing-laser-diode-driver
TDLAS is a very modular laser diode driver which has been developed for demanding low noise applications like gas sensing. It contains a lot of functionalities such as internal and external modulation as well as many libraries for system integration..
Laser diode driver
This laser diode driver generates CW and modulated optical signals from a Butterfly laser diode or any other form-factor. It is USB controlled with a GUI. Several libraries are available for system integration (Labview, DLLs, Python, Hexa etc.). It is also available at a board level for OEM integration (Board-level versions have a Minimum Order Quantity of 5 pieces).
Aerodiode product exemple
Semiconductor Optical Amplifiers (SOA amplifiers), when driven in pulse regime with our pulsed SOA drivers become a high dynamic range fiber modulation solution available from 750 to 1700 nm. It is a lossless, high extinction ratio and potentially highly polarizing device. .
multi channel laser diode driver
This laser diode driver & temperature controller allows fully independent control of up to 8 laser diodes from CW down to very short pulses. It includes several functions such as one pulse generator and one very low noise current and modulation driver per laser diode..
high power laser diode driver very compact
This High Power Laser Diode driver is compatible with all multimode fiber coupled multi-emitter laser diodes from Nlight , Lumentum , IPG , Dilas  etc..

Laser diode sources

1030 nm laser diode - 2 diodes
These fiber coupled 1030 nm laser diodes are offered as stock items or associated with a CW or Pulsed Laser Diode Driver. They are compatible with our low noise CW or high speed nanosecond pulsed drivers. Turn-key laser modules with TEC controller are also offered in an open or integrated version..
Butterfly diode picture
These fiber-coupled 1040nm laser diodes are offered as stock items or associated with a CW or Pulsed Laser Diode Driver. They are compatible with our low noise CW or high speed nanosecond pulsed drivers. Turn-key laser modules with TEC controller are also offered in an open or integrated version..
These fiber-coupled 1053nm laser diodes are offered as stock items or associated with a CW or Pulsed Laser Diode Driver. They are compatible with our low noise CW or high speed nanosecond pulsed drivers. Turn-key laser modules with TEC controller are also offered in an open or integrated version..
1064 nm laser diode - 4 diodes
These fiber coupled 1064 nm laser diodes are offered as stock items or associated with a CW or pulsed laser diode driver. They are compatible with our low noise CW or high speed nanosecond pulsed drivers. The high output power laser diode modules at this 1064nm wavelength include a TEC controller. They are offered in an open frame or integrated version..
Butterfly module
These fiber-coupled 1270 nm laser diodes are offered as stock items or associated with a low noise CW or Pulsed Laser Diode Driver. All 4 models are single frequency versions (DFB laser diode) up to 120 mW. They are compatible with our high speed nanosecond pulsed drivers and this makes it an optimal solution for telecommunication, spectroscopy or 3D-sensing R&D. .
1290 nm DFB laser diode - Butterfly module
These fiber-coupled 1290 nm laser diodes are offered as stock items or associated with a low noise CW or Pulsed Laser Diode Driver. All 4 models are single frequency versions (DFB laser diode) up to 120 mW. They are compatible with our high speed nanosecond pulsed drivers and this makes it an optimal solution for Telecommunication or 3D-sensing R&D. .
1310 nm laser diode - 190 mW DFB
These fiber-coupled 1310 nm laser diodes are offered as stock items or associated with a low noise CW or Pulsed Laser Diode Driver.  4 models are single frequency versions (DFB laser diode) up to 190 mW and one model (Fabry-Pérot) is available up to 300 mW. They are compatible with our high speed nanosecond pulsed drivers and this makes it an optimal solution for Telecommunication or 3D-sensing R&D. .
picture of the butterfly module
These fiber-coupled 1330 nm laser diodes are offered as stock items or associated with a low noise CW or Pulsed Laser Diode Driver. All 4 models are single frequency versions (DFB laser diode) up to 120 mW. They are compatible with our high speed nanosecond pulsed drivers and this makes it an optimal solution for telecommunication, spectroscopy or 3D-sensing R&D. .
Butterfly laser diode picture
These fiber-coupled 1350 nm laser diodes are offered as stock items or associated with a low noise CW or Pulsed Laser Diode Driver. The 2 models are single frequency versions (DFB laser diode) up to 40 mW. They are compatible with our high speed nanosecond pulsed drivers and this makes it an optimal solution for telecommunication, spectroscopy or 3D-sensing R&D. .
Butterfly 1370 nm laser diode
These fiber-coupled 1370 nm laser diodes are offered as stock items or associated with a low noise CW or Pulsed Laser Diode Driver. The 2 models are single frequency versions (DFB laser diode) up to 40 mW. They are compatible with our high speed nanosecond pulsed drivers and this makes it an optimal solution for telecommunication, spectroscopy or 3D-sensing R&D. .
1390 nm DFB laser diode - butterfly module
These fiber-coupled 1390 nm laser diodes are offered as stock items or associated with a low noise CW or Pulsed Laser Diode Driver. All 2 models are single frequency versions up to 40 mW. They are compatible with our high speed nanosecond pulsed drivers and this makes it an optimal solution for  Telecommunication or 3D-sensing R&D. .
Butterfly 1410 nm laser module
These fiber-coupled 1410 nm laser diodes are offered as stock items or associated with a low noise CW or Pulsed Laser Diode Driver. The 2 models are single frequency versions (DFB laser diode) up to 40 mW. They are compatible with our high speed nanosecond pulsed drivers and this makes it an optimal solution for telecommunication, spectroscopy or 3D-sensing R&D. .
Butterfly laser diode module
These fiber-coupled 1430 nm laser diodes are offered as stock items or associated with a low noise CW or Pulsed Laser Diode Driver. The 2 models are single frequency versions (DFB laser diode modules) up to 40 mW. They are compatible with our high speed nanosecond pulsed drivers and this makes it an optimal solution for telecommunication, spectroscopy or 3D-sensing R&D. .
1450 nm DFB laser diode - Butterfly package
These fiber-coupled 1450 nm laser diodes are offered as stock items or associated with either a CW or pulsed laser diode driver. 2 butterfly DFB models are single-frequency versions up to 40 mW. They are compatible with our low noise CW or high speed nanosecond pulsed drivers and this makes it an optimal solution for thermal superficial laser matter interaction systems or other pumping applications..
These fiber-coupled 1470 nm laser diodes are offered as stock items or associated with either a CW or pulsed laser diode driver. 2 butterfly DFB models are single-frequency versions up to 40 mW. They are compatible with our low noise CW or pulsed high speed nanosecond pulsed drivers and this makes it an optimal solution for thermal superficial laser matter interaction systems, IR camera lighting or Er3+-ions pumping..
These fiber-coupled 1480 nm laser diodes are offered as stock items or associated with either a CW or pulsed laser diode driver. 2 butterfly DFB models are single-frequency versions up to 40 mW. They are compatible with our low noise CW or pulsed high speed nanosecond pulsed drivers and this makes it an optimal solution for Er3+-ions pumping, thermal superficial laser matter interaction systems or IR camera lighting. .
Butterfly module
These fiber-coupled 1490 nm laser diodes are offered as stock items or associated with a low noise CW or Pulsed Laser Diode Driver. The 2 models are single frequency versions (DFB laser diode) up to 40 mW. They are compatible with our high speed nanosecond pulsed drivers and this makes it an optimal solution for telecommunication, spectroscopy or 3D-sensing R&D. .
Butterfly module picture
These fiber-coupled 1510 nm laser diodes are offered as stock items or associated with a low noise CW or Pulsed Laser Diode Driver. The 2 models are single frequency versions (DFB laser diode) up to 40 mW. They are compatible with our high speed nanosecond pulsed drivers and this makes it an optimal solution for telecommunication, spectroscopy or 3D-sensing R&D. .
Butterfly laser diode picture
These fiber-coupled 1525 nm laser diodes are offered as stock items or associated with a low noise CW or pulsed laser diode driver. All 2 models are single frequency versions up to 30 mW. They are compatible with our high speed nanosecond pulsed drivers and this makes it an optimal solution for  Telecommunication, 3D-sensing or Quantum R&D. .
Butterfly laser diode picture
These fiber-coupled 1530 nm laser diodes are offered as stock items or associated with a low noise CW or Pulsed Laser Diode Driver. The 2 models are single frequency versions (DFB laser diode) up to 40 mW. They are compatible with our high speed nanosecond pulsed drivers and this makes it an optimal solution for telecommunication, spectroscopy or 3D-sensing R&D. .

Fiber intensity modulators

fiber optic modulator
This fiber optic modulator is a high speed (nanosecond), high dynamic range, high extinction ratio solution.  It is a low noise and lossless device available from 750 to 1700 nm. Choose your wavelength on the datasheet table or table image above..
Aerodiode product exemple
Semiconductor Optical Amplifiers (SOA amplifiers), when driven in pulse regime with our pulsed SOA drivers become a high dynamic range fiber modulation solution available from 750 to 1700 nm. It is a lossless, high extinction ratio and potentially highly polarizing device. .
AOM modulator free space - picture
These Acousto Optic Modulator (AOM) are designed to offer an optimal solution for amplitude modulation of laser light between 380 and 1700 nm (most models are in stock).  AOM Modulators are easy to implement and offer direct control of the timing, intensity and temporal shape of the laser output down to a few nanoseconds..
This fiber-coupled laser pulse picker is designed to offer an optimal solution for selecting optical pulses from an optical pulse train with a high rejection of the input laser light. It is offered between 700 and 1750 nm.  The precision embedded synchronization electronics allows to handle any complex pulse picking need up to 200 MHz input pulse repetition rate. .
Semiconductor Optical Amplifier (SOA) are offered as stock items or associated with a choice of low-noise CW or high-speed pulsed drivers. An SOA optical amplifier driven in CW or pulse mode operates as a full-range amplifier, full-range variable optical attenuator, a lossless high dynamic range amplitude modulator or an isolation switch. .
Fiber coupled AOM with a fiber on both sides
These fiber coupled acousto-optic modulators (AOM) are designed to offer an optimal solution for amplitude modulation of laser light in a single mode optical fiber. They are offered between 680 and 1850 nm (most models are in stock).  These AOM’s are easy to implement and offer direct control of the timing, intensity, and temporal shape of the laser output down to a few nanoseconds..

Synchronization electronics

Bursta shaper timing
Burst shaper is a synchronization tool to drive external modulating devices such as EOM, AOM, SOA etc.  It has been especially designed to work with low level electrical or optical input pulses power. It is ideal to synchronize mode locked lasers to reach any pulse burst shape..
This pulse delay generator provides high frequency pulses, delays and bursts. It is an ideal testing and timing control instrument for electronics, lasers or camera setup..
Delay generator hand
This compact delay generator is intended for use in embedded OEM applications. It is an ideal tool for timing and gating optoelectronics instruments such as cameras or lasers, or for applying picosecond-resolution time trims to special instruments..
Pulse picker synchronization board
Pulse Picker is a synchronization tool to drive external modulating devices such as EOM, AOM, SOA etc.  It has been designed to work with low level electrical or optical input pulse power. It includes 3 pulse picking modes (frequency divider, external  triggering & high frequency clock, burst shaping) : see the detailed application note : Pulse-Picker.

Laser diode test systems

multi channel laser diode driver
This laser diode driver & temperature controller allows fully independent control of up to 8 laser diodes from CW down to very short pulses. It includes several functions such as one pulse generator and one very low noise current and modulation driver per laser diode..
laser diode reliability test system
Life-test and qualification test system for laser diode reliability evaluation in CW or pulsed regime down to 1 nanosecond. Up to 112 fully independent fibered devices are electrically, thermally and optically tested according to several user-programmed test scenario..

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