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DFB Laser Diode Module |
P/N: | LD-DFB Series |
Introduction: | Distributed feedback lasers (DFB) are the most common transmitter type in DWDM-systems. To stabilize the lasing wavelength, a diffraction grating is etched close to the p-n junction of the diode. This grating acts like an optical filter, causing a single wavelength to be fed back to the gain region and lase. Since the grating provides the feedback that is required for lasing, reflection from the facets is not required. Thus, at least one facet of a DFB is anti-reflection coated. The DFB laser has a stable wavelength that is set during manufacturing by the pitch of the grating, and can only be tuned slightly with temperature. Such lasers are the workhorse of demanding optical communication. |
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LD-DFB-1310-1-2.0-P4-B-FC/APC |
DFB LD,1310nm,<1.25Gb/s,2mW,SMF pigtailed,FC/APC |
S$400.00/pc |
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LD-DFB-1550-1-2.0-P4-B-FC/APC |
DFB LD,1550nm,<1.25Gb/s, 2mW,SMF pigtailed,FC/APC |
S$400.00/pc |
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FP Laser Diode Module |
P/N: | LD-FP Series |
Introduction: | A Fabry-Perot laser diode is an oscillator in which two mirrors are separated by an amplifying medium with an inverted population, making a Fabry-Perot cavity. Standard diode lasers are Fabry-Perot lasers. Fabry-Perot laser diodes are the most common type of diode laser and are the most economical, but they are generally slower and more noisy than distributed feedback (DFB) lasers. |
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LD-FP-1310-2-0.33-FC/UPC-VF |
FP, 1310nm, 2.5Gb/s, 0.33mW, Pigtailed, FC, VF |
S$200.00/pc |
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LD-FP-1310-2-0.33-FC/UPC-HF |
FP, 1310nm, 2.5Gb/s, 0.33mW, Pigtailed, FC, HF |
S$200.00/pc |
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LD-FP-1310-1-2.0-P4-B-FC/APC |
FP, 1310nm, <1.25Gb/s, 2mW, Pigtailed, FC/APC |
S$350.00/pc |
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LD-FP-1550-1-2.0-P4-B-FC/APC |
FP, 1550nm, <1.25Gb/s, 2mW, Pigtailed, FC/APC |
S$350.00/pc |
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VCSEL Chip TO56 SMA Receptacle ULM Photonics |
P/N: | LD-VCSEL Series |
Introduction: | VCSEL - Vertical Cavity Surface-Emitting Laser type Chip, TO56, SMA Receptacle etc versions available Up to 24mW peak power(chip) available >2.5Gbps speed Applications for data storge, free space communication and sensing devices Wavelength 650nm, 850nm,980nm,1060nm etc available upon request |
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VCSEL Transmitter Module |
P/N: | LDM-VCSEL Series |
Introduction: | VCSEL LD based; High modulation bandwidth, up to 20GHz Small current driven, and low power consumption Built-in driver circuit with DC power requirement Compact design |
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LDM-780VCSEL-1-TO/PD-MMF50-FC/UPC |
780nm,>1mW,VCSEL,10Gbps,MMF50/125um,FC/UPC |
S$315.00/pc |
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LDM-850VCSEL-1-TO/PD-MMF50-FC/UPC |
850nm,>1mW,VCSEL,10Gbps,MMF50/125um,FC/UPC |
S$335.00/pc |
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LDM-VCSEL3.0-850-12-SMA |
850nm,VCSEL,12mW,3GHz,MMF62.5um,SMA,DC12V |
S$1,550.00/set |
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Name: | SHARP 654/788nm Dual-wavelength Laser Diode |
P/N: | GH30507T2A | Keywords: | 5mW@654nm and 7mW@788nm,TO package,c/w PD |
Unit Price: |
S$20.00/pc
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Introduction: | Self-pulsation Type Dual-wavelength Laser Diode for DVD-ROM/DVD Video(654nm-5mW, 788nm-7mW) |
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Name: | MITSUBISHI 658/785nm Dual-wavelength Laser Diode |
P/N: | ML2065-24 | Keywords: | 90mW@658nm and 15mW@785nm,TO package |
Unit Price: |
S$158.00/pc
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Introduction: | A laser diode is a laser where the active medium is a semiconductor similar to that found in a light-emitting diode. The most common and practical type of laser diode is formed from a p-n junction and powered by injected electric current. These devices are sometimes referred to as injection laser diodes to distinguish them from (optically) pumped laser diodes, which are more easily produced in the laboratory. 658 / 785nm Laser Diode; 90mW@658nm and 15mW@785nm Mitsubishi high power LD(single mode) |
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Name: | HITACHI 660nm Single Longitudinal Mode Laser Diode |
P/N: | HL6548FG | Keywords: | 660nm,100mW,AlGalnP LD,SLM design,TO package |
Unit Price: |
S$200.00/pc
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Introduction: | A laser diode is a laser where the active medium is a semiconductor similar to that found in a light-emitting diode. The most common and practical type of laser diode is formed from a p-n junction and powered by injected electric current. These devices are sometimes referred to as injection laser diodes to distinguish them from (optically) pumped laser diodes, which are more easily produced in the laboratory.
660nm Laser Diode; 100mW@660nm Single Tranverse Mode; 9mm TO package Hitachi high power LD(Single Longitudinal Mode) |
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