Allicdata Part #: | FP-1310-5I-100SMF-SCUPC-ND |
Manufacturer Part#: |
FP-1310-5I-100SMF-SCUPC |
Price: | $ 68.74 |
Product Category: | Optoelectronics |
Manufacturer: | Finisar Corporation |
Short Description: | LASER DIODE 1310NM 10MW MODULE |
More Detail: | Laser Diode 1310nm 10mW 1.4V 32mA Module, 4 Lead, ... |
DataSheet: | FP-1310-5I-100SMF-SCUPC Datasheet/PDF |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
30 +: | $ 62.49140 |
Series: | -- |
Part Status: | Active |
Lead Free Status / RoHS Status: | -- |
Wavelength: | 1310nm |
Moisture Sensitivity Level (MSL): | -- |
Voltage - Input: | 1.4V |
Current Rating: | 32mA |
Power (Watts): | 10mW |
Package / Case: | Module, 4 Lead, Single Mode Fiber |
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Modern industrial and commercial projects often involve a broad range of photonics applications, from laser light sources to optical fiber assemblies. FP-1310-5I-100SMF-SCUPC is a type of Fiber coupled semiconductor laser, or diode laser, used in many industrial and commercial settings. This type of laser is well-suited for applications ranging from barcode scanning, material inspection, and industrial marking to medical applications such a laser surgery.
About FP-1310-5I-100SMF-SCUPC
FP-1310-5I-100SMF-SCUPC is a semiconductor laser that utilizes infrared wavelengths. It has a narrow spectral width of 0.04nm, with an output power of 100mW, and an active area that is 1310nm. This laser is a collimated single-mode type, with transverse magnetic polarization. It does not require any additional cooling, and is generally easy to install and use.
The enclosure design includes a stainless steel housing, aluminum side covers, and a removable optical module. It is resistant to mechanical shock and vibration, making it suitable for use in industrial and commercial settings. It is also resistant to high temperature and humidity levels. The design of the laser module is such that it contributes to the effectiveness of the overall design. Additionally, the laser module has a wide temperature range, allowing it to be used in a variety of environments.
Application Field and Working Principle of FP-1310-5I-100SMFI-SCUPC
The most common application of FP-1310-5I-100SMFI-SCUPC is in barcode scanning. The laser emits a narrow beam of infrared light, which can be used to reflect off of a barcode, so that the code can be read. The laser is also used in manufacturing processes, such as the marking of materials or the inspection of materials. It is also used in medical applications, such as laser surgery, where precision is important.
The general working principle of FP-1310-5I-100SMFI-SCUPC is that a laser diode emits a beam of light, and then the beam of light is deflected off of a surface to create an image on the surface. This image can then be used to scan a barcode, or can be used as a reference for other industrial applications. In the case of medical applications, the beam of light is used to cut into certain tissues.
The laser works by using a highly efficient laser diode to emit a beam of coherent light. The laser diode is a semiconductor device that consists of two layers of semiconductor material, one n-type and one p-type. By applying a current to the two layers, the two materials create an electric field which causes electrons to move from one side to the other. This movement of electrons causes the diode to emit light.
The laser diode is then mounted inside a housing and enclosed in a package. The light emitted is then deflected by a mirror, or a series of mirrors, and then focused on the target. This focusing of the beam of light is where the power of the laser comes from.
FP-1310-5I-100SMFI-SCUPC is an excellent choice for a variety of applications. It is easy to use, requires no additional cooling, and is resistant to high temperature and humidity levels. The narrow spectral width of the laser makes it particularly suited for barcode scanning applications, and its wide temperature range also makes it suitable for industrial and medical applications.
The specific data is subject to PDF, and the above content is for reference
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