M20048-1 Allicdata Electronics

M20048-1 RF/IF and RFID

Allicdata Part #:

627-1099-2-ND

Manufacturer Part#:

M20048-1

Price: $ 6.57
Product Category:

RF/IF and RFID

Manufacturer: Antenova
Short Description: GPS RADIONOVA RF MODULE MTK CHIP
More Detail: RADIONOVA® RF Receiver GPS 1.575GHz -165dBm On-Bo...
DataSheet: M20048-1 datasheetM20048-1 Datasheet/PDF
Quantity: 1000
1000 +: $ 5.96551
Stock 1000Can Ship Immediately
$ 6.57
Specifications
Current - Receiving: 31mA
Supplier Device Package: Module
Package / Case: Module
Operating Temperature: -40°C ~ 85°C
Voltage - Supply: 3.3V
Features: --
Antenna Connector: On-Board, Trace
Memory Size: --
Data Interface: UART
Series: RADIONOVA®
Applications: General Purpose
Modulation or Protocol: GPS
Data Rate (Max): --
Sensitivity: -165dBm
Frequency: 1.575GHz
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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RF Receivers are one of the earliest electronic devices employed by the scientific industry. As technology advances, the type of RF receivers available to the scientific community increases. One such technology is the M20048-1 receiver. This type of receiver is well suited for use in radio frequency identification (RFID) applications and in other radio frequency (RF) field tracking. The article will provide an overview of the application field of the M20048-1 receiver and a discussion of its working principle.

The M20048-1 receiver was designed primarily for use in RFID applications. It has a range of up to 250 meters for detecting and tracking radio frequency signals emitted from RFID tags. The receiver offers a high sampling rate and a wide frequency range, allowing it to be readily used in many RFID and other RF tracking applications. Additionally, its low power consumption makes it ideally suited for applications in wireless tracking points such as palletizing systems and robot navigation in warehouses.

The operation of the M20048-1 is very similar to that of a typical RFID or other RF tracking receiver. The receiver is typically affixed to a board and then connected to a data-communications network. The receiver is programmed to detect and read the frequency signals emitted from RFID tags or other RF sources. Once detected, the data is transmitted to a remote computer or data-gathering center for storage and analysis.

In addition to its use in RFID applications, the M20048-1 is often used in radio astronomy, satellite communication, and radio navigation. For example, the receiver is well-suited for use in radio astronomy studies that require accurate measurements of very faint signals. Additionally, the receiver is often used to detect very weak signals from satellites and other space vehicles in order to track their movement through space and determine their location. Finally, radio navigation systems often rely on the M20048-1 to detect the type of radio signals emitted by navigational satellites and spacecraft.

The M20048-1 receiver is primarily powered by two sources: direct current and battery energy. Direct current is supplied to the device when it is connected to a power source, enabling it to sustain its operation as long as it remains connected. The battery energy is usually sufficient to supply the necessary power to the receiver while it is working and in transit.

When the receiver is in operation, the frequencies from the RF tag or RF sources are picked up by the receiver\'s antennae and then transmitted to the relevant processing circuitry. This circuitry is responsible for processing the signal and forwarding it to a remote or local computer. Depending on the application, the signal may be transmitted in a certain frequency to a data-logging system, or processed and then directed to another computer for further analysis.

In short, the M20048-1 receiver is a popular choice for RFID applications as well as other radio frequency tracking and navigation tasks. By taking advantage of its low power consumption, wide frequency range, and high sampling rate, the M20048-1 receiver is an excellent choice for most RF tracking and tracking-related tasks.

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

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