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Compact Atomic Clock Laser | Scientific Narrow Linewidth Laser for Rubidium Atomic Applications

Compact Atomic Clock Laser | Scientific Narrow Linewidth Laser for Rubidium Atomic Applications

MOQ: 1
Price: 1000-10000
Delivery Period: 10-30
Payment Method: L/C,D/A,D/P,T/T
Supply Capacity: 10000
Detail Information
Place of Origin
CHINA
Brand Name
DEEP PILOT
Model Number
509nm narrow-linewidth laser
Product Description
Type
Dual-channel 795nm narrow linewidth laser
place of origin
Hubei, China
customized support
OEM, ODM
power
other
Protection Class
IP55
Voltage
220 V
brand name
Quantum Optical
Application
Quantum precision measurement, Precision spectroscopy
warranty
1 Year
Central wavelength (nm)
795
Maximum output power (W)
2
Power stability (RMS) @12h/±2℃
0.5%(Typical )
Polarization extinction ratio (dB)
25(Typical )
Frequency fast tuning bandwidth (MHz)
5(Typical )
Line width (100us)
40KHz(Typical )
Temperature tuning range (GHz)
20(Typical )
Fast frequency tuning coefficient, GHz/V
0.5(Typical )
Frequency tuning voltage range (V)
±5(Typical )
Beam quality /M2
≤1.1


product name
Dual-channel 795nm narrow linewidth laser
material
stainless steel
color
Blue
shape
cuboid
size
M
characteristic

This compact narrow linewidth laser is designed for rubidium atomic control applications and is based on an optical fiber amplification and frequency-doubling technology system. It delivers single-frequency laser output with maximum output power exceeding 2 W, meeting the requirements of high-resolution scientific and industrial use.

The laser features a narrow linewidth, high polarization extinction ratio, compact structure, and excellent environmental adaptability, making it particularly suitable for field and laboratory environments.

An analog feedback interface is integrated, supporting ACC or APC control modes. According to customer requirements, the system can provide customized configurations, including frequency shift, sideband modulation, and optical switching functions.

Key Features:

  • Single-frequency laser output based on fiber amplification and frequency doubling

  • Narrow linewidth with high polarization extinction ratio

  • Compact and robust design for laboratory and field use

  • ACC/APC control modes with analog feedback interface

  • Customizable functionality to meet specific application needs


products
PRODUCTS DETAILS
Compact Atomic Clock Laser | Scientific Narrow Linewidth Laser for Rubidium Atomic Applications
MOQ: 1
Price: 1000-10000
Delivery Period: 10-30
Payment Method: L/C,D/A,D/P,T/T
Supply Capacity: 10000
Detail Information
Place of Origin
CHINA
Brand Name
DEEP PILOT
Model Number
509nm narrow-linewidth laser
Minimum Order Quantity:
1
Price:
1000-10000
Delivery Time:
10-30
Payment Terms:
L/C,D/A,D/P,T/T
Supply Ability:
10000
Product Description
Type
Dual-channel 795nm narrow linewidth laser
place of origin
Hubei, China
customized support
OEM, ODM
power
other
Protection Class
IP55
Voltage
220 V
brand name
Quantum Optical
Application
Quantum precision measurement, Precision spectroscopy
warranty
1 Year
Central wavelength (nm)
795
Maximum output power (W)
2
Power stability (RMS) @12h/±2℃
0.5%(Typical )
Polarization extinction ratio (dB)
25(Typical )
Frequency fast tuning bandwidth (MHz)
5(Typical )
Line width (100us)
40KHz(Typical )
Temperature tuning range (GHz)
20(Typical )
Fast frequency tuning coefficient, GHz/V
0.5(Typical )
Frequency tuning voltage range (V)
±5(Typical )
Beam quality /M2
≤1.1


product name
Dual-channel 795nm narrow linewidth laser
material
stainless steel
color
Blue
shape
cuboid
size
M
characteristic

This compact narrow linewidth laser is designed for rubidium atomic control applications and is based on an optical fiber amplification and frequency-doubling technology system. It delivers single-frequency laser output with maximum output power exceeding 2 W, meeting the requirements of high-resolution scientific and industrial use.

The laser features a narrow linewidth, high polarization extinction ratio, compact structure, and excellent environmental adaptability, making it particularly suitable for field and laboratory environments.

An analog feedback interface is integrated, supporting ACC or APC control modes. According to customer requirements, the system can provide customized configurations, including frequency shift, sideband modulation, and optical switching functions.

Key Features:

  • Single-frequency laser output based on fiber amplification and frequency doubling

  • Narrow linewidth with high polarization extinction ratio

  • Compact and robust design for laboratory and field use

  • ACC/APC control modes with analog feedback interface

  • Customizable functionality to meet specific application needs