SWRS195C
October 2019 – April 2024
CC2652P
PRODUCTION DATA
1
1
Features
2
Applications
3
Description
4
Functional Block Diagram
5
Device Comparison
6
Pin Configuration and Functions
6.1
Pin Diagram—RGZ Package (Top View)
6.2
Signal Descriptions—RGZ Package
6.3
Connections for Unused Pins and Modules
7
Specifications
7.1
Absolute Maximum Ratings
7.2
ESD Ratings
7.3
Recommended Operating Conditions
7.4
Power Supply and Modules
7.5
Power Consumption—Power Modes
7.6
Power Consumption—Radio Modes
7.7
Nonvolatile (Flash) Memory Characteristics
7.8
Thermal Resistance Characteristics
7.9
RF Frequency Bands
7.10
Bluetooth Low Energy—Receive (RX)
7.11
Bluetooth Low Energy—Transmit (TX)
7.12
Zigbee and Thread—IEEE 802.15.4-2006 2.4GHz (OQPSK DSSS1:8, 250kbps): RX
7.13
Zigbee and Thread—IEEE 802.15.4-2006 2.4GHz (OQPSK DSSS1:8, 250kbps): TX
7.14
Timing and Switching Characteristics
7.14.1
Reset Timing
7.14.2
Wakeup Timing
7.14.3
Clock Specifications
7.14.3.1
48MHz Crystal Oscillator (XOSC_HF)
7.14.3.2
48MHz RC Oscillator (RCOSC_HF)
7.14.3.3
2MHz RC Oscillator (RCOSC_MF)
7.14.3.4
32.768kHz Crystal Oscillator (XOSC_LF)
7.14.3.5
32kHz RC Oscillator (RCOSC_LF)
7.14.4
Synchronous Serial Interface (SSI) Characteristics
7.14.4.1
Synchronous Serial Interface (SSI) Characteristics
36
7.14.5
UART
7.14.5.1
UART Characteristics
7.15
Peripheral Characteristics
7.15.1
ADC
7.15.1.1
Analog-to-Digital Converter (ADC) Characteristics
7.15.2
DAC
7.15.2.1
Digital-to-Analog Converter (DAC) Characteristics
7.15.3
Temperature and Battery Monitor
7.15.3.1
Temperature Sensor
7.15.3.2
Battery Monitor
7.15.4
Comparators
7.15.4.1
Low-Power Clocked Comparator
7.15.4.2
Continuous Time Comparator
7.15.5
Current Source
7.15.5.1
Programmable Current Source
7.15.6
GPIO
7.15.6.1
GPIO DC Characteristics
7.16
Typical Characteristics
7.16.1
MCU Current
7.16.2
RX Current
7.16.3
TX Current
7.16.4
RX Performance
7.16.5
TX Performance
7.16.6
ADC Performance
8
Detailed Description
8.1
Overview
8.2
System CPU
8.3
Radio (RF Core)
8.3.1
Bluetooth 5.2 Low Energy
8.3.2
802.15.4 (Thread, Zigbee, 6LoWPAN)
8.4
Memory
8.5
Sensor Controller
8.6
Cryptography
8.7
Timers
8.8
Serial Peripherals and I/O
8.9
Battery and Temperature Monitor
8.10
µDMA
8.11
Debug
8.12
Power Management
8.13
Clock Systems
8.14
Network Processor
9
Application, Implementation, and Layout
9.1
Reference Designs
10
Device and Documentation Support
10.1
Tools and Software
10.1.1
SimpleLink™ Microcontroller Platform
10.2
Documentation Support
10.3
Support Resources
10.4
Trademarks
10.5
Electrostatic Discharge Caution
10.6
Glossary
11
Revision History
12
Mechanical, Packaging, and Orderable Information
12.1
Packaging Information
1
Features
Microcontroller
Powerful 48MHz
Arm®
Cortex®
-M4F processor
EEMBC
CoreMark®
score: 148
352kB of in-system programmable flash
256kB of ROM for protocols and library functions
8kB of cache SRAM (alternatively available as general-purpose RAM)
80kB of ultra-low leakage SRAM. The SRAM is protected by parity to ensure high reliability of operation.
2-pin cJTAG and JTAG debugging
Supports over-the-air (OTA) update
Ultra-low power sensor controller with 4kB of SRAM
Sample, store, and process sensor data
Operation independent from system CPU
Fast wake-up for low-power operation
TI-RTOS, drivers, bootloader,
Bluetooth®
5.2 low energy controller, and IEEE 802.15.4 MAC in ROM for optimized application size
RoHS-compliant package
7mm × 7mm RGZ VQFN48 (
26
GPIOs)
Peripherals
Digital peripherals can be routed to any GPIO
4× 32-bit or 8× 16-bit general-purpose timers
12-bit ADC, 200 kSamples/s, 8 channels
2× comparators with internal reference DAC
(1× continuous time, 1× ultra-low power)
Programmable current source
2× UART
2× SSI (SPI, MICROWIRE, TI)
I
2
C and I
2
S
Real-time clock (RTC)
AES 128- and 256-bit cryptographic accelerator
ECC and RSA public key hardware accelerator
SHA2 accelerator (full suite up to SHA-512)
True random number generator (TRNG)
Capacitive sensing, up to eight channels
Integrated temperature and battery monitor
External system
On-chip buck DC/DC converter
Low power
Active mode RX: 6.9mA
Active mode TX 0dBm: 7.3mA
Active mode TX 5dBm: 9.6mA
Active mode TX at +10dBm: 22mA
Active mode TX at +20dBm: 85mA
Active mode MCU 48MHz (CoreMark):
3.4mA (71μA/MHz)
Sensor controller, low power-mode, 2MHz, running infinite loop:
30.1μA
Sensor controller, active mode, 24MHz, running infinite loop: 808μA
Standby: 0.94µA (RTC on, 80kB RAM and CPU retention)
Shutdown: 150nA (wakeup on external events)
Radio section
2.4GHz RF transceiver compatible with Bluetooth 5.2 low energy and earlier LE specifications
and IEEE 802.15.4 PHY and MAC
3-wire, 2-wire, 1-wire PTA coexistence mechanisms
Excellent receiver sensitivity:
–100dBm for 802.15.4 (2.4GHz),
–105dBm for Bluetooth 125kbps (LE Coded PHY)
Output power up to +20dBm with temperature compensation
Suitable for systems targeting compliance with worldwide radio frequency regulations
EN 300 328,
(Europe)
EN 300 440 Category 2
FCC CFR47 Part 15
ARIB
STD-T66 (Japan)
Wireless protocols
Thread
,
Zigbee®
,
Bluetooth®
5.2 Low Energy
, IEEE 802.15.4, IPv6-enabled smart objects (6LoWPAN), proprietary systems,
SimpleLink™
TI 15.4 stack (2.4GHz), and dynamic multiprotocol manager (DMM) driver.
Development
Tools and Software
SimpleLink™ LOWPOWER F2 Software Development Kit (SDK)
SmartRF™
Studio
for simple radio configuration
Sensor Controller Studio
for building low-power sensing applications