RLD2WMFL1-NEW Allicdata Electronics
Allicdata Part #:

RLD2WMFL1-NEW-ND

Manufacturer Part#:

RLD2WMFL1-NEW

Price: $ 0.00
Product Category:

Optoelectronics

Manufacturer: ROHM Semiconductor
Short Description: LASER DUAL WAVE 660/780NM LO POW
More Detail: Laser Diode 660nm, 780nm 7mW 1.8 ~ 2.3 V, 2.3 ~ 2....
DataSheet: RLD2WMFL1-NEW datasheetRLD2WMFL1-NEW Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Part Status: Obsolete
Lead Free Status / RoHS Status: --
Wavelength: 660nm, 780nm
Moisture Sensitivity Level (MSL): --
Voltage - Input: 1.8 ~ 2.3 V, 2.3 ~ 2.7 V
Current Rating: 18mA
Power (Watts): 7mW
Package / Case: --
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Introduction

RLD2WMFL1-NEW is a laser diode and module that can be used in a variety of applications. It is a versatile, high-performance device designed to deliver fast and reliable performance. The device offers low temperature stability, high resolution, and broad bandwidth for improved performance. This device is ideal for demanding applications such as laser processing and broadcasting. In this article, we will discuss the application field and working principle of the RLD2WMFL1-NEW.

Application Field

RLD2WMFL1-NEW can be used in a variety of applications due to its high performance and versatility. It can be used in laser processing applications such as laser cutting, welding, and drilling. It is also suitable for broadcasting applications. The device provides high stability and accuracy which is essential in precision laser processing applications.

This device can also be used in a variety of other applications. It can be used in medical imaging, light detection and ranging (LIDAR), optical communications, material analysis, and remote sensing. It is also suitable for unmanned aerial vehicles (UAVs) and automotive applications. This device can also be used in industrial laser marking and engraving.

Working Principle

RLD2WMFL1-NEW works by generating laser energy from a semiconductor laser diode. The device then converts the generated laser energy into the desired wavelength. This device works on the principle of semiconductor laser diode. The device has a combination of two elements – a laser diode and a laser cavity. The laser diode is used to generate light which is then directed onto the laser cavity. The laser cavity acts as a resonator and reflects the laser light in the desired direction.

In order to achieve the desired output, the laser diode is driven with a constant current. The constant current is necessary to ensure that the power output of the laser diode remains stable. The laser cavity is responsible for the emission of the laser and for focusing the laser energy. The laser diode is then tuned to the desired wavelength to achieve the desired output. Once the desired output is achieved, the power output of the device can be adjusted.

This device is an efficient and reliable laser diode and module. It offers high performance, low temperature stability, and high resolution for improved performance. This device is suitable for a variety of applications and is an ideal choice for demanding applications. It is also suitable for medical imaging, industrial laser marking, and other applications.

Conclusion

The RLD2WMFL1-NEW is a laser diode and module designed to deliver fast and reliable performance. It can be used in laser processing, broadcasting, medical imaging, and a variety of other applications. This device works on the principle of semiconductor laser diode, a combination of a laser diode and a laser cavity. The laser diode is used to generate light, and the laser cavity is used to focus and direct the laser energy. This device is efficient, reliable, and offers high performance, low temperature stability, and high resolutions. This device is ideal for demanding applications such as laser processing and broadcasting.

The specific data is subject to PDF, and the above content is for reference

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