EDFA112A2PD-JD-F-R TR Allicdata Electronics
Allicdata Part #:

EDFA112A2PD-JD-F-RTR-ND

Manufacturer Part#:

EDFA112A2PD-JD-F-R TR

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Micron Technology Inc.
Short Description: IC DRAM 16G PARALLEL 933MHZ
More Detail: SDRAM - Mobile LPDDR3 Memory IC 16Gb (128M x 128) ...
DataSheet: EDFA112A2PD-JD-F-R TR datasheetEDFA112A2PD-JD-F-R TR Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Obsolete
Memory Type: Volatile
Memory Format: DRAM
Technology: SDRAM - Mobile LPDDR3
Memory Size: 16Gb (128M x 128)
Clock Frequency: 933MHz
Write Cycle Time - Word, Page: --
Memory Interface: Parallel
Voltage - Supply: 1.14 V ~ 1.95 V
Operating Temperature: -30°C ~ 85°C (TC)
Description

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EDFA112A2PD-JD-F-R TR Application Field and Working Principle

Introduction

EDFA112A2PD-JD-F-R TR (Erbium-Doped Fiber Amplifier) is a type of optical amplifier developed by Hewlett Packard (HP) and utilized in fiber optics communication systems. It is considered to be the most effective solution for long distance communication and has a very small form factor. EDFA112A2PD-JD-F-R TR offers superior performance compared to traditional optical amplifiers, enabling better transmission of data over large distances.

Application Field

EDFA112A2PD-JD-F-R TR is used in a number of different applications, such as telecommunications, broadcasting, and data transmission. It is an ideal solution for a variety of applications due to its reliable performance and cost effectiveness. A key application field of EDFA112A2PD-JD-F-R TR is in Network Switching Systems and Wide Area Networks (WANs) where it can be used to provide optical amplification of signals transmitted over long distances. EDFA112A2PD-JD-F-R TR is also utilized for mobile communication systems, secure networks, and high-speed fiber optic internet connections. The performance of EDFA112A2PD-JD-F-R TR is also particularly beneficial for military applications, as it can provide secure and reliable communication, with minimal noise added to the transmission.

Working Principle

EDFA112A2PD-JD-F-R TR utilizes an erbium-doped fiber amplification (EDFA), which utilizes emission of photons in the optical wavelength range by semiconductor lasers and erbium doped fibers, called an optical waveguide. This waveguide allows electrons to be excited in the fiber by a light signal. The excited electrons then interact with the erbium ions present in the fiber, producing an amplified signal. The amplified signal is then transmitted over the fiber optic cable.The efficiency of EDFA112A2PD-JD-F-R TR is heavily based on the absorption and emission of light by the erbium ions. The erbium doped fiber will emit and absorb light depending on the frequency of the light source and the type of erbium used. The signal can be amplified in two ways, using spontaneous and stimulated emission. Spontaneous emission occurs when the light source encounters electrons that are already in an excited state, and can result in an amplified signal. Stimulated emission occurs when the light source causes electrons that are not in the excited state to become excited, and can produce an even more amplified signal.EDFA112A2PD-JD-F-R TR also takes advantage of the Fermat Principle, which states that the signal which propagates through the waveguide will always take the shortest path. This means that the signal will always reach its destination in the shortest time, resulting in improved quality of transmission.

Conclusion

EDFA112A2PD-JD-F-R TR is a highly effective optical amplifier which provides reliable transmission of data over large distances. It utilizes erbium-doped fiber amplification and takes advantage of the Fermat Principle, giving it the necessary efficiency to compete with traditional optical amplifiers. EDFA112A2PD-JD-F-R TR is utilized in a variety of different applications, such as telecommunications, broadcasting, and data transmission, and is especially beneficial for military and secure communication networks.

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

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