MC33596FJER2 Allicdata Electronics
Allicdata Part #:

MC33596FJER2-ND

Manufacturer Part#:

MC33596FJER2

Price: $ 0.00
Product Category:

RF/IF and RFID

Manufacturer: NXP USA Inc
Short Description: IC RX UHF PLL TUNED 32-LQFP
More Detail: - RF Receiver FSK, OOK 304, 315, 426, 434, 868, 91...
DataSheet: MC33596FJER2 datasheetMC33596FJER2 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Current - Receiving: 10.3mA
Supplier Device Package: 32-LQFP (5x5)
Package / Case: 32-LQFP
Operating Temperature: -40°C ~ 85°C
Voltage - Supply: 2.7 V ~ 3.6 V, 4.5 V ~ 5.5 V
Features: --
Antenna Connector: PCB, Surface Mount
Memory Size: --
Data Interface: PCB, Surface Mount
Series: --
Applications: General Data Transfer
Modulation or Protocol: FSK, OOK
Data Rate (Max): 22.4 kBaud
Sensitivity: -104dBm
Frequency: 304, 315, 426, 434, 868, 915MHz
Part Status: Obsolete
Packaging: Tape & Reel (TR) 
Description

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The MC33596FJER2 is an RF receiver module from Freescale Semiconductor, which bridges the gap between digital and analog electronics. As part of a family of Universal Asynchronous Receiver Transmitters (UARTs), this device consists of an RF front end (RE), UART, user interface, and transmitter subsystems. It offers improved data performance while supporting various networking protocols across a wide variety of applications. The MC33596FJER2 is used in data transmission applications where reliable and reliable data reception is required. This module is ideally suited for the development of industrial, medical, and consumer products.

The MC33596FJER2 supports a wide range of modulation schemes and can be used to communicate with a variety of modems, including Bluetooth, Wi-Fi, and Zigbee. The module is compliant with FCC and ETSI requirements and is designed for use in densely populated areas. It features a low-noise figure, providing better reception while ensuring data throughput is maintained.

The MC33596FJER2 is a low-power RF receiver module that operates in a temperature range of -30 to +85 degrees Celsius. The module requires only 3.3V for operation, enabling it to be used even in battery-powered applications. It has an Operating Frequency (Fo) range of 1.0GHz to 3.5GHz, and 1 Input Impedance of 50 ohm. It features an on-chip low-noise amplifier with 12dB gain, which provides improved sensitivity while reducing out-of-band noise. The MC33596FJER2 module supports various modulation schemes, including GFSK, OQPSK, and 4GFSK. Additionally, it supports Programmable Data Rate (PRD) up to 2Mbps.

The MC33596FJER2 module supports high data throughput and provides reliable data reception with its RF front end and UART subsystem. The UART subsystem provides a low-power 9thorder partial response (PRA) automatic frequency control (AFC), and differential demodulation. It also has a Programmable Pre-Disable Frequency Offset (PFIR) feature that helps eliminate frequency drift due to temperature variations. The enhanced data reception increases the reliable range and data rate of the device, thus allowing it to satisfy various wireless range and speed requirements.

The MC33596FJER2 module uses an ASIC design that is easy to integrate and customizable with its I2C/SPI interface. It provides an on-chip voltage regulator that can provide up to 20mA of power to other system components. The module’s low power consumption operation reduces its environmental impact and helps conserve battery life. It also supports data encryption, providing additional security for wireless communication.

The MC33596FJER2 is an RF receiver module from Freescale Semiconductor that is designed for various wireless applications. It supports a wide range of modulation schemes and complies with FCC and ETSI requirements. It features an on-chip low-noise amplifier with 12dB gain, providing improved sensitivity while reducing out-of-band noise. Additionally, its UART subsystem provides a low-power 9th-order partial response (PRA) and differential demodulation, improving data throughput performance. The module provides reliable data reception, flexibility, and low power consumption, making it suitable for numerous applications.

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

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