JN3-B3A3-LY Allicdata Electronics

JN3-B3A3-LY RF/IF and RFID

Allicdata Part #:

943-1018-ND

Manufacturer Part#:

JN3-B3A3-LY

Price: $ 0.00
Product Category:

RF/IF and RFID

Manufacturer: Telit
Short Description: JUPITER JN3 GPS MODULE
More Detail: - RF Receiver GPS 1575.42MHz -163dBm 9.6kbps Modu...
DataSheet: JN3-B3A3-LY datasheetJN3-B3A3-LY Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Current - Receiving: 32mA
Supplier Device Package: Module
Package / Case: 24-SMD Module
Operating Temperature: -40°C ~ 85°C
Voltage - Supply: 2.85 V ~ 3.6 V
Features: --
Antenna Connector: --
Memory Size: 16MB Flash
Data Interface: Pads for Pins
Series: --
Applications: GPS Receiver
Modulation or Protocol: GPS
Data Rate (Max): 9.6kbps
Sensitivity: -163dBm
Frequency: 1575.42MHz
Part Status: Obsolete
Packaging: Tray 
Description

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Introduction

The JN3-B3A3-LY RF Receiver is a type of receiver used for both cellular phone and general user radio applications. It is an advanced cellular RF receiver and transceiver designed to provide reliable, cost-effective operation in automated call-handling systems. The JN3-B3A3-LY requires no external components and is specifically designed to meet the needs of a wide range of customers. It features a number of features that make it an ideal choice for a variety of radio and modem applications.

Application Field

The JN3-B3A3-LY RF Receiver is used for both cellular and general user radio applications. It can be used in cellular networks for voice services, data transmission and other applications. It is also used in broadcast, land mobile radio communications, Automatic Number Identification (ANI) and Paging networks. Furthermore, it is suitable for use in a variety of mobile, two-way radio, and wireless data systems.

The JN3-B3A3-LY RF Receiver is widely used for mobile communication. It can be used to receive transmissions from a variety of different devices, such as radios, cellular phones, personal digital assistants, remote control devices, and more. Furthermore, it is suitable for use in wireless networks, providing reliable wireless communication services. It can be used in various types of networks, such as GSM, CDMA, TDMA, and WCDMA.

Working Principle

The JN3-B3A3-LY RF Receiver is a direct-conversion receiver. It uses a single circuit to convert the frequency of the incoming signal to a lower frequency. This direct-conversion process is achieved by using a mixer. The mixer is used to mix the input signal and a local oscillator (LO) signal. The output of the mixer is then amplified and filtered to produce a signal with a lower frequency than the original input signal.

The JN3-B3A3-LY RF Receiver uses an advanced demodulator circuit. This circuit is used to decode the signal from the incoming carrier waveform. The demodulated signal is then used to recover the baseband information. This information can be used to detect the presence of an active communication link and also to decode and process the data received.

The JN3-B3A3-LY RF Receiver also features a low-noise amplifier. This amplifier is used to amplify the signal from the incoming carrier waveform. It is designed to have a low noise figure to ensure that the signal is as strong as possible. This is important to ensure that the data can be accurately detected and processed.

Conclusion

The JN3-B3A3-LY RF Receiver is an advanced cellular RF receiver and transceiver designed to provide reliable, cost-effective operation in automated call-handling systems. It is widely used for mobile communication, land mobile radio communications, Automatic Number Identification (ANI) and Paging networks, and wireless networks. It can be used to receive transmissions from a variety of different devices, such as radios, cellular phones, personal digital assistants, remote control devices, and more. It uses a single circuit to convert the frequency of the incoming signal to a lower frequency, and an advanced demodulator circuit to decode the signal from the incoming carrier waveform. Furthermore, it features a low-noise amplifier to ensure the signal is as strong as possible.

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

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