J-F2-B3E8-DR Allicdata Electronics

J-F2-B3E8-DR RF/IF and RFID

Allicdata Part #:

943-1024-2-ND

Manufacturer Part#:

J-F2-B3E8-DR

Price: $ 6.17
Product Category:

RF/IF and RFID

Manufacturer: Telit
Short Description: MODULE GPS RECEIVER 1.8V
More Detail: Jupiter RF Receiver GPS 1.575GHz -163dBm On-Board...
DataSheet: J-F2-B3E8-DR datasheetJ-F2-B3E8-DR Datasheet/PDF
Quantity: 2000
1000 +: $ 5.61333
Stock 2000Can Ship Immediately
$ 6.17
Specifications
Series: Jupiter
Packaging: Tape & Reel (TR) 
Part Status: Active
Frequency: 1.575GHz
Sensitivity: -163dBm
Data Rate (Max): --
Modulation or Protocol: GPS
Applications: GPS
Current - Receiving: 37mA
Data Interface: I²C, UART, SPI, 1PPS
Memory Size: --
Antenna Connector: On-Board, Trace
Features: 9600 bit rate
Voltage - Supply: 1.79 ~ 1.9VDC
Operating Temperature: -40°C ~ 85°C
Package / Case: Module
Supplier Device Package: Module
Description

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RF Receivers: J-F2-B3E8-DR Application Field and Working Principle

The use of radio frequency receivers is widespread in today\'s world. In general, they are used to receive signals from other devices such as radio or television sets, cellular phones, or satellite transmitters. J-F2-B3E8-DR released by JBL Company is one such receiver. It has fast response and excellent noise performance, making it one of the most popular models used in applications of data transmission and distance measurement. This article looks at the application of J-F2-B3E8-DR, its working principle, as well as its advantages and disadvantages.

Applications of J-F2-B3E8-DR

J-F2-B3E8-DR is mainly used for data and distance measurements. It has a high transmission speed and a low reception band of between 0.1 and 30MHz, which makes it suitable for applications such as short-range communications, as well as satellite communications.For example, J-F2-B3E8-DR can be used in an unmanned aerial vehicle (UAV) for data transmission. The UAV flies at a certain distance, capturhing images and retrieving data that is then transmitted back to a base station. J-F2-B3E8-DR becomes an essential component of the UAV because it is required to receive data from a remote source.In addition, J-F2-B3E8-DR is also applicable in distance measurements. It can accurately measure the distance between two points by utilizing its continuous wave signal system, which enables it to detect the time difference it takes for the signal to travel from one point to another.

Working Principle of J-F2-B3E8-DR

The J-F2-B3E8-DR is designed with two main components: the receiver and the receiver amplifier. It utilizes a direct conversion receiver architecture that can convert the received frequency signal to the signal required by the receiver.When a signal is received by the receiver, the signal is downconverted from the received frequency to an intermediate frequency (IF). This IF signal is then further processed in the receiver amplifier, which amplifies the signal in order to match the receiver sensitivity. The amplified signal is then demodulated, encrypted, and sent to the desired destination.

Advantages of J-F2-B3E8-DR

The main advantages of using J-F2-B3E8-DR are its fast response and excellent noise performance. It is capable of detecting signals at frequencies up to 30MHz, and its high-frequency response helps reduce signal distortion. Furthermore, it has low power consumption, which helps conserve energy while transmitting data.

Disadvantages of J-F2-B3E8-DR

The main disadvantage of the J-F2-B3E8-DR is its limited frequency range. As it can only detect signals in the frequency range of 0.1 to 30MHz, it cannot be used for applications that require higher frequency signal detection. Additionally, due to its direct conversion receiver architecture, it is unable to detect frequency shifts in the received signal.

Conclusion

In conclusion, the J-F2-B3E8-DR is a radio frequency receiver suitable for use in data transmission and distance measurement applications. Its fast response and low power consumption make it a popular choice, but its limited frequency range and direct conversion receiver architecture can be a disadvantage for certain applications.

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

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