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Applications: 1. Rb Atomic clock; Features: 1. Circular beam spot and low divergence angle; 2. Single-transverse-mode and linear polarization; 3. Narrow linewidth (spectral width) 4. Operating temperature: 50±5℃.
Applications: 1. Rb Atomic clock; Features: 1. Circular beam spot and low divergence angle; 2. Single-transverse-mode and linear polarization; 3. Narrow linewidth (spectral width) 4. Operating temperature: 60±5℃.
Applications: 1. Rb Atomic clock; Features: 1. Circular beam spot and low divergence angle; 2. Single-transverse-mode and linear polarization; 3. Narrow linewidth (spectral width) 4. Operating temperature: 70±5℃.
Applications: 1. Rb Atomic clock; Features: 1. Circular beam spot and low divergence angle; 2. Single-transverse-mode and linear polarization; 3. Narrow linewidth (spectral width) 4. Operating temperature: 70±5℃.
Applications: 1. Rb Atomic clock; Features: 1. Circular beam spot and low divergence angle; 2. Single-transverse-mode and linear polarization; 3. Narrow linewidth (spectral width) 4. High operating temperature (>85℃).
Applications: 1. Rb Atomic clock; Features: 1. Circular beam spot and low divergence angle; 2. Single-transverse-mode and linear polarization; 3. Narrow linewidth (spectral width); 4. High single mode power.
Applications: 1. Rb Atomic clock; Features: 1. Circular beam spot and low divergence angle; 2. Single-transverse-mode and linear polarization; 3. Narrow linewidth (spectral width); 4. High single mode power.
Applications: 1. Rb Atomic clock; Features: 1. Circular beam spot and low divergence angle; 2. Single-transverse-mode and linear polarization; 3. Narrow linewidth (spectral width); 4. High single mode power.
Applications: 1. Rb Atomic clock; Features: 1. Circular beam spot and low divergence angle; 2. Single-transverse-mode and linear polarization; 3. Narrow linewidth (spectral width); 4. High single mode power, up to 1.5mW.
Applications: 1. Rb Atomic clock; Features: 1. Circular beam spot and low divergence angle; 2. Single-transverse-mode and linear polarization; 3. Narrow linewidth (spectral width); 4. High single mode power, up to 3mW.
Applications: 1. Cs Atomic clock; 2. Cs Magnetometer; 3. Quantum sensing. Features: 1. Circular beam spot and low divergence angle; 2. Single-transverse-mode and linear polarization; 3. Narrow linewidth (spectral width); 4. Operating temperature: 70±5℃.
Applications: 1. Cs Atomic clock; 2. Cs Magnetometer; 3. Quantum sensing. Features: 1. Circular beam spot and low divergence angle; 2. Single-transverse-mode and linear polarization; 3. Narrow linewidth (spectral width); 4. Operating temperature: 80±5℃.
Applications: 1. Cs Atomic clock; 2. Cs Magnetometer; 3. Quantum sensing. Features: 1. Circular beam spot and low divergence angle; 2. Single-transverse-mode and linear polarization; 3. Narrow linewidth (spectral width); 4. High operating temperature (>85℃).
Applications: 1. Cs Atomic clock; 2. Cs Magnetometer; 3. Quantum sensing. Features: 1. Circular beam spot and low divergence angle; 2. Single-transverse-mode and linear polarization; 3. High single mode power(1mW); 4. Operating temperature 50±5℃.
Applications: 1. Cs Atomic clock; 2. Cs Magnetometer; 3. Quantum sensing. Features 1. Circular beam spot and low divergence angle 2. Single-transverse-mode and linear polarization; 3. High single mode power(1mW) 4. Operating temperature: 60±5℃.
Applications: 1. Cs Atomic clock; 2. Cs Magnetometer; 3. Quantum sensing. Features: 1. Circular beam spot and low divergence angle; 2. Single-transverse-mode and linear polarization; 3. High single mode power(1mW); 4. Operating temperature: 70±5℃.
Applications: 1. Cs Atomic clock; 2. Cs Magnetometer; 3. Quantum sensing. Features: 1. Circular beam spot and low divergence angle; 2. Single-transverse-mode and linear polarization; 3. High single mode power(1mW); 4. Operating temperature: 80±5℃.
Applications: 1. Coherent optical communication 2. LIDAR 3. Optical sensing and detection 4. Seeder for high power lasers 5. RF and microwave photonics 6. Spectroscopy 7. Scientific research Features & Functions: 1. Frequency-stabilised external-cavity semiconductor laser 2. Center wavelength 1030±1nm 3. Single frequency emission 4. Narrow linewidth 5. Long coherence length 6. Low phase noise & Relative intensity noise (RIN) 7. Excellent power and wavelength stability 8. SMF and PM...
Applications: 1. Coherent optical communication 2. LIDAR 3. Optical sensing and detection 4. Seeder for high power lasers 5. RF and microwave photonics 6. Spectroscopy 7. Scientific research Features & Functions: 1. Frequency-stabilised external-cavity semiconductor laser 2. Center wavelength 1030±1nm 3. Single frequency emission 4. Narrow linewidth 5. Long coherence length 6. Low phase noise & Relative intensity noise (RIN) 7. Excellent power and wavelength stability 8. SMF and PM...
Applications: 1. Coherent optical communication 2. LIDAR 3. Optical sensing and detection 4. Seeder for high power lasers 5. RF and microwave photonics 6. Spectroscopy 7. Scientific research Features & Functions: 1. Frequency-stabilised external-cavity semiconductor laser 2. Center wavelength 1030±1nm 3. Single frequency emission 4. Narrow linewidth 5. Long coherence length 6. Low phase noise & Relative intensity noise (RIN) 7. Excellent power and wavelength stability 8. SMF and PM...
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Privacy statement: Your privacy is very important to Us. Our company promises not to disclose your personal information to any external company with out your explicit permission.