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Application and network processors and cryptographic engines are integrated onto a single chip, and rich in peripherals, making it suitable for IoT applications.
Mouser Electronics announced on the 17th that it is supplying Texas Instruments (TI)'s CC3235x SimpleLink dual-band wireless SoC. 
Mouser Supplies TI CC3235x Dual-Band Wireless SoC
The CC3235x SoC, which integrates a high-performance application processor, network processor, and cryptographic engine onto a single chip and features a rich array of peripherals, is a device suitable for various applications such as IoT, smart buildings, security, and healthcare.
TI’s CC3235x SimpleLink family SoC, supplied by Mouser Electronics, provides a network processor capable of operating all Wi-Fi and Internet logical layers. Additionally, a ROM-based subsystem completely takes over the duties of the host controller. It includes 802.11a/b/g/n dual-band 2.4 GHz and 5 GHz radios, baseband, and MAC, and is equipped with a powerful hardware encryption engine.
CC3235x series components provide new features that simplify the connection process for IoT applications. These features include 802.11a (5 GHz) support, low-power Bluetooth and 2.4 GHz radio coexistence, antenna selection, enhanced security performance based on FIPS 140-2 Level 1 certification, up to 16 simultaneous secure sockets, and one Certificate Signing Request (CSR) file.
The CC3235x series devices are produced in two versions: the CC3235S and the CC3235SF. The CC3235S combines an Arm Cortex-M4 microcontroller with 256KB of RAM, IoT networking security, and device identification/keying. The CC3235SF is designed based on the CC3235S and provides 1MB of executable user-dedicated flash memory in addition to 256KB of RAM.
Both products provide microcontroller-level security features, such as file system encryption, user IP (microcontroller image) encryption, secure boot, and debugging security.
CC3235x family SoCs are supported by TI’s LAUNCHXL-CC3235x LaunchPad development kit. This development kit includes CC3235S or CC3235SF devices and supports rapid development with built-in emulation and sensors. Designers can combine add-on boards from the BoosterPack ecosystem using the board’s 40-pin LaunchPad pin layout.
Mouser Electronics announced on the 17th that it is supplying Texas Instruments (TI)'s CC3235x SimpleLink dual-band wireless SoC.

Mouser Supplies TI CC3235x Dual-Band Wireless SoC
The CC3235x SoC, which integrates a high-performance application processor, network processor, and cryptographic engine onto a single chip and features a rich array of peripherals, is a device suitable for various applications such as IoT, smart buildings, security, and healthcare.
TI’s CC3235x SimpleLink family SoC, supplied by Mouser Electronics, provides a network processor capable of operating all Wi-Fi and Internet logical layers. Additionally, a ROM-based subsystem completely takes over the duties of the host controller. It includes 802.11a/b/g/n dual-band 2.4 GHz and 5 GHz radios, baseband, and MAC, and is equipped with a powerful hardware encryption engine.
CC3235x series components provide new features that simplify the connection process for IoT applications. These features include 802.11a (5 GHz) support, low-power Bluetooth and 2.4 GHz radio coexistence, antenna selection, enhanced security performance based on FIPS 140-2 Level 1 certification, up to 16 simultaneous secure sockets, and one Certificate Signing Request (CSR) file.
The CC3235x series devices are produced in two versions: the CC3235S and the CC3235SF. The CC3235S combines an Arm Cortex-M4 microcontroller with 256KB of RAM, IoT networking security, and device identification/keying. The CC3235SF is designed based on the CC3235S and provides 1MB of executable user-dedicated flash memory in addition to 256KB of RAM.
Both products provide microcontroller-level security features, such as file system encryption, user IP (microcontroller image) encryption, secure boot, and debugging security.
CC3235x family SoCs are supported by TI’s LAUNCHXL-CC3235x LaunchPad development kit. This development kit includes CC3235S or CC3235SF devices and supports rapid development with built-in emulation and sensors. Designers can combine add-on boards from the BoosterPack ecosystem using the board’s 40-pin LaunchPad pin layout.
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