Texas Instruments CC2533 A True System-on-Chip Solution for 2.4-GHz IEEE 802.15.4 and ZigBee Applications CC2533F96RHAR

Description
A True System-on-Chip Solution for 2.4-GHz IEEE 802.15.4 and ZigBee Applications 40-VQFN -40 to 125
Request a Quote
Description
A True System-on-Chip Solution for 2.4-GHz IEEE 802.15.4 and ZigBee Applications 40-VQFN -40 to 125
Request a Quote
Datasheet
Datasheet Summary
Powered by GS/AI

The CC2533F96RHAR is a system-on-chip (SoC) solution designed for 2.4-GHz IEEE 802.15.4 and ZigBee applications. It features a low-power 8051 compliant CPU, with 96 KB of in-system programmable flash memory and 6 KB of RAM, making it suitable for remote control systems and other low-duty-cycle applications. The device supports multiple power modes, achieving low current consumption, with active mode RX at 25 mA and TX at 28.5 mA at 0 dBm. The CC2533 includes a robust RF transceiver with excellent receiver sensitivity and programmable output power up to 4.5 dBm, along with a boost mode for transmission at 7 dBm. It is equipped with various peripherals, including two USARTs, an I¬=C interface, and 23 general-purpose I/O pins, facilitating integration into diverse applications. The device is packaged in a compact 40-pin VQFN format and operates over a wide supply voltage range of 2 V to 3.6 V, with an operating temperature range of -40¬8C to 125¬8C. This SoC is particularly advantageous for applications requiring low bill-of-material costs and minimal external components, making it a suitable choice for engineers looking to implement ZigBee RF4CE remote control solutions.

Datasheet Summary
Powered by GS/AI

The CC2533F96RHAR is a system-on-chip (SoC) solution designed for 2.4-GHz IEEE 802.15.4 and ZigBee applications. It features a low-power 8051 compliant CPU, with 96 KB of in-system programmable flash memory and 6 KB of RAM, making it suitable for remote control systems and other low-duty-cycle applications. The device supports multiple power modes, achieving low current consumption, with active mode RX at 25 mA and TX at 28.5 mA at 0 dBm. The CC2533 includes a robust RF transceiver with excellent receiver sensitivity and programmable output power up to 4.5 dBm, along with a boost mode for transmission at 7 dBm. It is equipped with various peripherals, including two USARTs, an I¬=C interface, and 23 general-purpose I/O pins, facilitating integration into diverse applications. The device is packaged in a compact 40-pin VQFN format and operates over a wide supply voltage range of 2 V to 3.6 V, with an operating temperature range of -40¬8C to 125¬8C. This SoC is particularly advantageous for applications requiring low bill-of-material costs and minimal external components, making it a suitable choice for engineers looking to implement ZigBee RF4CE remote control solutions.

Suppliers

Company
Product
Description
Supplier Links
CC2533 A True System-on-Chip Solution for 2.4-GHz IEEE 802.15.4 and ZigBee Applications - CC2533F96RHAR - Texas Instruments
Dallas, TX, United States
CC2533 A True System-on-Chip Solution for 2.4-GHz IEEE 802.15.4 and ZigBee Applications
CC2533F96RHAR
CC2533 A True System-on-Chip Solution for 2.4-GHz IEEE 802.15.4 and ZigBee Applications CC2533F96RHAR
A True System-on-Chip Solution for 2.4-GHz IEEE 802.15.4 and ZigBee Applications 40-VQFN -40 to 125

A True System-on-Chip Solution for 2.4-GHz IEEE 802.15.4 and ZigBee Applications 40-VQFN -40 to 125

Buy Now Datasheet

Technical Specifications

  Texas Instruments
Product Category System on a Chip (SoC)
Product Number CC2533F96RHAR
Product Name CC2533 A True System-on-Chip Solution for 2.4-GHz IEEE 802.15.4 and ZigBee Applications
Unlock Full Specs
to access all available technical data

Similar Products

Specs
Processor Core ARM
Clock Frequency 500 MHz
RAM Size 2.5 MB
View Details
Specs
Processor Core ARM
Clock Frequency 1176 to 1000 MHz
RAM Size 2.5 MB
View Details
Specs
Processor Core ARM
Clock Frequency 1200 MHz
Operating Temperature -40 to 212 F (-40 to 100 C)
View Details
Specs
Processor Core ARM
Clock Frequency 750 MHz
RAM Size 2.5 MB
View Details