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DA14683

Dialog Semiconductor
Part Number DA14683
Manufacturer Dialog Semiconductor
Description Bluetooth Low Energy-5.0 SoC
Published Aug 15, 2018
Detailed Description DA14683 Bluetooth Low Energy 5.0 SoC with Enhanced Security FINAL General description  Three power supply pins for e...
Datasheet PDF File DA14683 PDF File

DA14683
DA14683


Overview
DA14683 Bluetooth Low Energy 5.
0 SoC with Enhanced Security FINAL General description  Three power supply pins for external devices The DA14683 is a flexible System-on-Chip combining an application processor, memories, cryptography engine, power management unit, digital and analog peripherals and a Bluetooth Low Energy MAC engine and radio transceiver.
The DA14683 is based on an ARM® Cortex®-M0 CPU  Supports Li-Polymer, Li-Ion, coin, NiMH and alkaline batteries  Charger (up to 5.
0 V) with programmable curves  High accuracy state-of-charge fuel gauge  Programmable threshold for brownout detection  Digitally controlled oscillators and PLL  16/32 MHz crystal oscillator delivering up to 84 DMIPS (at maximum 96 MHz sys-  16 MHz RC oscillator tem speed) and provides a flexible memory architec-  32 kHz crystal and RC oscillator ture, enabling code execution from embedded memory  11.
4 kHz RCX oscillator (RAM, ROM) or non-volatile memory (OTP or external  Low power PLL up to 96 MHz Quad-SPI FLASH).
 Three general purpose timer/counters with PWM The advanced power management unit of the DA14683 enables it to run from primary and secondary batteries, as well as provide power to external devices.
The on-chip charger and state-of-charge fuel gauge allows the DA14683 to natively charge rechargeable batteries over USB.
 One 16-bit up/down timer/counter with PWM available in extended/deep sleep mode  Application cryptographic engine with ECC, AES256, SHA-1, SHA-256, SHA-512 and True Random Number Generator  Digital interfaces  37 (AQFN) or 21 (WLCSP) general purpose I/Os The DA14683 comes with enhanced security features with programmable voltage levels such as key manipulation, secure booting (i.
e.
starting  Quad-SPI FLASH interface the system only if the FLASH image is authenticated),  Two UARTs, one with hardware flow control a complete public/private hardware acceleration  Two SPI+™ interfaces engine and a hardware true random number ...



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