P0397NLT Allicdata Electronics
Allicdata Part #:

P0397NLT-ND

Manufacturer Part#:

P0397NLT

Price: $ 0.94
Product Category:

Inductors, Coils, Chokes

Manufacturer: Pulse Electronics Power
Short Description: INDUCT ARRAY 2 COIL 5.9UH SMD
More Detail: Unshielded 2 Coil Inductor Array 23.7µH Inductance...
DataSheet: P0397NLT datasheetP0397NLT Datasheet/PDF
Quantity: 1000
1500 +: $ 0.84956
Stock 1000Can Ship Immediately
$ 0.94
Specifications
DC Resistance (DCR) - Parallel: 10.47 mOhm
Height: 0.310" (7.87mm)
Size / Dimension: 0.715" L x 0.590" W (18.16mm x 14.99mm)
Package / Case: Nonstandard
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 130°C
Ratings: --
Shielding: Unshielded
DC Resistance (DCR) - Series: 41.9 mOhm
Series: Tomcat
Current Rating - Series: 4.1A
Current Rating - Parallel: 8.2A
Tolerance: ±20%
Inductance - Connected In Series: 23.7µH
Inductance - Connected In Parallel: 5.9µH
Number of Coils: 2
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Arrays and signal transformers are fundamental elements for many communication systems. They can be used to convert, manipulate, amplify, or retransmit signals for a variety of applications. The P0397NLT Application Field and Working Principle is a type of communications system device that uses a specific type of acoustic format to align signals. The technology was developed to improve the signal transmission range between two points.

The P0397NLT application field and working principle revolves around the transfer of signals in an acoustic format, a specific type that is between an analog and digital signal. This type of acoustic format utilizes a near-field transduction technology that allows the transmission of signals with the use of an external acoustic field. A P0397NLT is similar to a transformer, as it uses inductors and capacitors to transfer and/or convert signals from one form to another with increased efficiency.

P0397NLT technology was initially used for longer-distance communication, but has become increasingly used for shorter-distance communication as well. When used for short and medium distances, the P0397NLT will offer improved bandwidth, lower latency, and improved signal strength in comparison to traditional communication systems. It is especially useful when short-distance communication must be maintained at a certain level. For example, it is often utilized in wireless networks, including cellular and WiFi networks.

The working principle of a P0397NLT is fairly straightforward. Signals are converted from an analog to digital format via near-field transduction technology and then passed through a "mixer," which equalizes the input-output impedance, allowing for the signal to be transmitted across a larger distance. The signals are then amplified and retransmitted through the system.

The P0397NLT technology has been used in a variety of applications, including cellular, WiFi, satellite, RFID, and Bluetooth communication systems. It can also be used for enhanced radio frequency, digital video broadcasting, international broadcasting satellite (IBS), GPS, and surveillance systems. Since P0397NLT technology supports a wide range of transmission range, signal strength, and latency, it is well-suited for a range of applications.

In terms of advantages, P0397NLT technology is an attractive option for those looking to maximize the performance of their communication systems. It allows for a far greater transmission range, signal strength, and latency than traditional systems. It is also more energy-efficient and cost-effective, making it a great choice for those who need to conserve resources or costs.

Overall, the P0397NLT Application Field and Working Principle is a powerful and reliable option for those looking for a reliable and efficient source of communications. It is especially useful for short and medium distances, as its near-field transduction technology allows for enhanced signal strength and bandwidth. The technology is energy-efficient and cost-effective, making it a great choice for those who need communications solutions without sacrificing performance and reliability.

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

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