FB Laser

Laser Diode FB-M1800-200HO

KEY FEAUTURES
Output power

200

Wavelength

1800

Package type

HHL w/window

1240,00 $

DATA SHEET

Specification Symbol Typical Unit
Laser Emitter
Peak Wavelength lop 1800±20 nm
CW Optical Output Power Pop 0 W
Operation Current Iop <2 A
Operation Voltage Uld 1±0.1 V
Threshold Current Ith <1 A
Beam Divergence (FWHM) θ║ 8±2 degree
Beam Divergence (FWHM) θ┴ 1 degree
Spectrum Half-Width (FWHM) Dl <7 nm
Emitting Area Wxd 100×1 µmxµm
Operation Mode CW continuous
Operation Temperature Top 25 degree
Photo Diode Monitor
PD Monitor Current 1-1000 µA
PD Reverse Voltage 9 V
TEC
Maximum Current 5 A
Maximum Operation Voltage 3,8 V
Thermistor
Resistance 10 kilohm
Wavelength Temperature Coefficient ∆λ/∆T 8.0±0.5 Å/degree
Operation Temperature Range -20… +40 degree
Storage Temperature Range -40… +80 degree

Output window on the top of HHL (optional)

1-TEC (-) 2- 3- 4- Laser Anode(+) 5- Thermistor (2) 6- Thermistor (1) 7- Laser Cathode (-) 8- PD Anode (+) 9- PD Cathode (-) 10- TEC (+) Output window of 0.5 mm inthickness

Output window on the front side of HHL (by default)

1- TEC (-) 2- 3- 4- Laser Anode(+) 5- Thermistor (2) 6- Thermistor (1) 7- Laser Cathode (-) 8- PD Anode (+) 9- PD Cathode (-) 10- TEC (+) Output window of 0.5 mm in thickness

Introducing the FB-M1800-200HO, a premier multimode laser diode engineered for high-performance applications where both power and precision are crucial. Operating at a wavelength of 1800 nm, this diode delivers a formidable optical output of 200 mW, making it ideally suited for advanced telecommunications, high-resolution imaging, and precision environmental sensing.

The FB-M1800-200HO is designed with an advanced thermal management system that ensures optimal performance even under sustained high-power operation. This cutting-edge thermal control technology is essential for preventing overheating and maintaining consistent output. Effective thermal management not only enhances the diode’s reliability but also extends its operational lifespan, making it a dependable choice for continuous use in demanding environments.

A key highlight of the FB-M1800-200HO is its exceptional beam quality. With minimal noise and high coherence, this diode provides precise, repeatable results that are essential for applications requiring high accuracy and resolution. The High Output (HO) configuration is particularly advantageous for applications that demand robust performance, offering engineers and researchers flexibility in integrating the diode into a variety of systems and setups.

For those at the forefront of technological innovation, the FB-M1800-200HO represents an optimal blend of high output power, thermal stability, and superior beam quality. This laser diode is an invaluable tool for advancing research and achieving top-tier performance in high-tech applications. Trust in FB Laser’s expertise with the FB-M1800-200HO to deliver exceptional solutions that set new standards in laser technology.

We can ship to you both based on FCA Moscow or FCA Hong Kong as per your request 

The warranty term on our products is 12 month.

DATA SHEET

Specification Symbol Typical Unit
Laser Emitter
Peak Wavelength lop 1800±20 nm
CW Optical Output Power Pop 0 W
Operation Current Iop <2 A
Operation Voltage Uld 1±0.1 V
Threshold Current Ith <1 A
Beam Divergence (FWHM) θ║ 8±2 degree
Beam Divergence (FWHM) θ┴ 1 degree
Spectrum Half-Width (FWHM) Dl <7 nm
Emitting Area Wxd 100×1 µmxµm
Operation Mode CW continuous
Operation Temperature Top 25 degree
Photo Diode Monitor
PD Monitor Current 1-1000 µA
PD Reverse Voltage 9 V
TEC
Maximum Current 5 A
Maximum Operation Voltage 3,8 V
Thermistor
Resistance 10 kilohm
Wavelength Temperature Coefficient ∆λ/∆T 8.0±0.5 Å/degree
Operation Temperature Range -20… +40 degree
Storage Temperature Range -40… +80 degree

Output window on the top of HHL (optional)

1-TEC (-) 2- 3- 4- Laser Anode(+) 5- Thermistor (2) 6- Thermistor (1) 7- Laser Cathode (-) 8- PD Anode (+) 9- PD Cathode (-) 10- TEC (+) Output window of 0.5 mm inthickness

Output window on the front side of HHL (by default)

1- TEC (-) 2- 3- 4- Laser Anode(+) 5- Thermistor (2) 6- Thermistor (1) 7- Laser Cathode (-) 8- PD Anode (+) 9- PD Cathode (-) 10- TEC (+) Output window of 0.5 mm in thickness

Introducing the FB-M1800-200HO, a premier multimode laser diode engineered for high-performance applications where both power and precision are crucial. Operating at a wavelength of 1800 nm, this diode delivers a formidable optical output of 200 mW, making it ideally suited for advanced telecommunications, high-resolution imaging, and precision environmental sensing.

The FB-M1800-200HO is designed with an advanced thermal management system that ensures optimal performance even under sustained high-power operation. This cutting-edge thermal control technology is essential for preventing overheating and maintaining consistent output. Effective thermal management not only enhances the diode’s reliability but also extends its operational lifespan, making it a dependable choice for continuous use in demanding environments.

A key highlight of the FB-M1800-200HO is its exceptional beam quality. With minimal noise and high coherence, this diode provides precise, repeatable results that are essential for applications requiring high accuracy and resolution. The High Output (HO) configuration is particularly advantageous for applications that demand robust performance, offering engineers and researchers flexibility in integrating the diode into a variety of systems and setups.

For those at the forefront of technological innovation, the FB-M1800-200HO represents an optimal blend of high output power, thermal stability, and superior beam quality. This laser diode is an invaluable tool for advancing research and achieving top-tier performance in high-tech applications. Trust in FB Laser’s expertise with the FB-M1800-200HO to deliver exceptional solutions that set new standards in laser technology.

We can ship to you both based on FCA Moscow or FCA Hong Kong as per your request

The warranty term on our products is 12 month.

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