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CC1352P主要特性以及pcb电路图

电子工程师 来源:陈翠 2019-04-05 16:15 次阅读

TI公司的CC1352P是集成了功率放大器(+20-dBm)的多频段(《1GHz和2.4GHz)多协议无线ARM MCUCPU工作频率48MHz,集成了灵活的非常低功耗的RF收发器,支持多个物理层和RF标准,专用的无线电控制器(Arm® Cortex®-M0)低级别RF协议指令,目标用在无线M总线,IEEE802.15.4g, IPv6使能智能对象(6LoWPAN),线程,Zigbee®, KNX RF, Wi-SUN®, Bluetooth® 5低功耗和专用系统。本文介绍了CC1352P主要特性,框图以及评估板LAUNCHXL-CC1352P1主要特性,电路图,材料清单和PCB设计图。

The CC1352P device is a multiprotocol Sub-1 and 2.4-GHz wireless MCU targeting Wireless M-Bus, IEEE802.15.4g, IPv6-enabled smart objects (6LoWPAN), Thread, Zigbee®, KNX RF, Wi-SUN®, Bluetooth® 5low energy, and proprietary systems. The device contains a +20-dBm integrated high-power amplifier withbest-in-class efficiency for long-range applications.

The CC1352P device is a member of the CC26xx and CC13xx family of cost-effective, ultra-low power,2.4-GHz and Sub-1 GHz RF devices. Very low active RF and microcontroller (MCU) current, in addition tosub-μA sleep current with up to 80KB of RAM retention, provide excellent battery lifetime and allowoperation on small coin-cell batteries and in energy-harvesting applications.

The CC1352P device combines a flexible, very low-power RF transceiver with a powerful 48-MHz Arm®Cortex®-M4F CPU in a platform supporting multiple physical layers and RF standards. A dedicated RadioController (Arm® Cortex®-M0) handles low-level RF protocol commands that are stored in ROM or RAM,thus ensuring ultra-low power and great flexibility. The low power consumption of the CC1352P devicedoes not come at the expense of RF performance; the CC1352P device has excellent sensitivity androbustness (selectivity and blocking) performance.

The CC1352P device is a highly integrated, true single-chip solution incorporating a complete RF systemand an on-chip DC/DC converter.

Sensors can be handled in a very low-power manner by a programmable, autonomous ultra-low powerSensor Controller CPU with 4KB of SRAM for program and data. The Sensor Controller, with its fastwake-up and ultra-low-power 2-MHz mode is designed for sampling, buffering, and processing bothanalog and digital sensor data; thus the MCU system can maximize sleep time and reduce active power.

The CC1352P device is part of the SimpleLink™ microcontroller (MCU) platform, which consists of Wi-Fi®,Bluetooth® low energy, Thread, Zigbee, Sub-1 GHz MCUs, and host MCUs, which all share a common,easy-to-use development environment with a single core software development kit (SDK) and rich tool set.

A one-time integration of the SimpleLink platform enables you to add any combination of the portfolio’sdevices into your design, allowing 100 percent code reuse when your design requirements change.

CC1352P主要特性:

• Microcontroller

– Powerful Arm® Cortex®-M4F Processor

– EEMBC CoreMark® Score: 148

– Clock Speed Up to 48 MHz

– 352KB of In-System Programmable Flash

– 256KB of ROM for Protocols and Firmware

– 8KB of Cache SRAM (Available as General-Purpose RAM)

– 80KB of Ultra-Low Leakage SRAM

– 2-Pin cJTAG and JTAG Debugging

– Supports Over-the-Air Upgrade (OTA)

• Ultra-Low Power Sensor Controller With 4KB ofSRAM

– Sample, Store, and Process Sensor Data

– Operation Independent From System CPU

– Fast Wake-Up for Low-Power Operation

• TI-RTOS, Drivers, Bootloader, Bluetooth® 5 lowenergy Controller, and IEEE 802.15.4 MAC inROM for Optimized Application Size

• RoHS-Compliant Package

– 7-mm × 7-mm 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)

I2C

– I2S

– Real-Time Clock (RTC)

– AES 128- and 256-bit Crypto 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 8 Channels

– Integrated Temperature and Battery Monitor

• External System

– On-Chip Buck DC/DC Converter

• Low Power

– Wide Supply Voltage Range: 1.8 V to 3.8 V

– Active-Mode RX: 5.8 mA (868 MHz)

– Active-Mode TX at +20 dBm: 65 mA (868 MHz)

– Active-Mode MCU 48 MHz (CoreMark):2.82 mA (59 μA/MHz)

– Sensor Controller 16-Hz Flow Metering:1.7 μA

– Sensor Controller 100-Hz Comp A Reading:1.5 μA

– Sensor Controller, 1-Hz ADC Sampling:1 μA

– Standby: 0.83 μA (RTC on, 80KB RAM andCPU Retention)

– Shutdown: 125 nA (Wakeup on External Events)

• Radio Section

– Dual-Band Sub-1 GHz and 2.4-GHz RFTransceiver Compatible With Bluetooth 5 low

energy and IEEE 802.15.4 PHY and MAC

– Excellent Receiver Sensitivity:

–122 dBm for SimpleLink Long Range,

–110 dBm at 50 kbps, –103 dBm for Bluetooth 5low energy Coded

– Excellent Selectivity: 48 dB at 50 kbps

– Programmable Output Power Up to +20 dBm

– Suitable for Systems Targeting Compliance WithWorldwide Radio Frequency Regulations

– ETSI EN 300 220, EN 300 328, EN 303 131,EN 303 204 (Europe)

– EN 300 440 Class 2 (Europe)

– FCC CFR47 Part 15 (US)

– ARIB STD-T108 and STD-T66 (Japan)

– Wide Standard Support

• Development Tools and Software

– LAUNCHXL-CC1352P1, P1-2, and P1-4Development Kits

– SimpleLink CC13X2 Software Development Kit

– SmartRF™ Software Studio for Simple RadioConfiguration

– Sensor Controller Studio for Building Low-PowerSensing Applications

CC1352P应用:

• 433-, 470- to 510-, 868-, 902- to 928-, and2400- to 2480-MHz ISM and SRD Systems (1)With Down to 4 kHz of Receive Bandwidth

• Smart Grid and Automatic Meter Reading

– Water, Gas, and Electricity Meters

– Heat Cost Allocators

– Gateways

• Wireless Sensor Networks

– Long-Range Sensor Applications

• Industrial

– Asset Tracking and Management

– Factory Automation

– Remote Display

• Wireless Healthcare Applications

• Energy Harvesting Applications

• Electronic Shelf Label (ESL)

• Home and Building Automation

– Wireless Alarms and Security Systems

– Locks

– Lightning Control

– Motion Detectors

– Connected Appliances

– HVAC

– Garage Door Openers

图1.CC1352P框图

评估板LAUNCHXL-CC1352P1

图2.评估板LAUNCHXL-CC1352P1外形图(1)

图3.评估板LAUNCHXL-CC1352P1外形图(2)

图4.评估板LAUNCHXL-CC1352P1电路图(1)

图5.评估板LAUNCHXL-CC1352P1电路图(2)

图6.评估板LAUNCHXL-CC1352P1电路图(3)

图7.评估板LAUNCHXL-CC1352P1电路图(4)

图8.评估板LAUNCHXL-CC1352P1电路图(5)

图9.评估板LAUNCHXL-CC1352P1电路图(6)

图10.评估板LAUNCHXL-CC1352P1电路图(7)

评估板LAUNCHXL-CC1352P1材料清单:

图11.评估板LAUNCHXL-CC1352P1 PCB设计图(1)

图12.评估板LAUNCHXL-CC1352P1 PCB设计图(2)

图13.评估板LAUNCHXL-CC1352P1 PCB设计图(3)

图14.评估板LAUNCHXL-CC1352P1 PCB设计图(4)

图15.评估板LAUNCHXL-CC1352P1 PCB设计图(5)

图16.评估板LAUNCHXL-CC1352P1 PCB设计图(6)

图17.评估板LAUNCHXL-CC1352P1 PCB设计图(7)

图18.评估板LAUNCHXL-CC1352P1 PCB设计图(8)

图19.评估板LAUNCHXL-CC1352P1 PCB设计图(9)

图20.评估板LAUNCHXL-CC1352P1 PCB设计图(10)

声明:本文内容及配图由入驻作者撰写或者入驻合作网站授权转载。文章观点仅代表作者本人,不代表电子发烧友网立场。文章及其配图仅供工程师学习之用,如有内容侵权或者其他违规问题,请联系本站处理。 举报投诉
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