LCSC Electronics logoLCSC Electronics svg logo
Sign In
USD
TI CC2630F128RGZT product image
  • CC2630F128RGZT thumbnail 1
  • CC2630F128RGZT thumbnail 2
  • CC2630F128RGZT thumbnail 3
  • Pinout
  • Footprint
Images for reference only

TI CC2630F128RGZTRoHS

Manufacturer
MPN
CC2630F128RGZT
LCSC Part #
C124157
Packaging
VQFN-48-EP(7x7)
Customer #
Key Attributes
SimpleLink 6LoWPAN, ZigBee Wireless MCU
Datasheetpdf iconTI CC2630F128RGZT
Out of Stock
Notify Me
Add to BOM List
QtyUnit Price(Reference Only)Total Amount
1+$ 5.6872$ 5.69
10+$ 4.8958$ 48.96
30+$ 4.2212$ 126.64
250+$ 3.7464$ 936.60
500+$ 3.5267$ 1763.35
1,000+$ 3.4283$ 3428.30
Standard Packaging250/Full Reel
Better price for more quantity?
$

Products Specifications

Show similar products (0) >
TypeDescription
CategoryRF and Wireless/RF Transceiver ICs
ManufacturerTI
PackagingVQFN-48-EP(7x7)
Sensitivity-100dBm
Data Rate250Kbps
Frequency Range2.4GHz~2.48GHz
Typical Application Frequency2.45GHz
Output Power5dBm
Receive Current5.9mA
Interface TypeADC;I2C;I2S;JTAG;SPI;UART
Operating Temperature-40℃~+85℃
Voltage - Supply1.8V~3.8V
FeaturesSupports RSSI function
Typetransceiver
Current Of Transmitting9.1mA

Additional Information

TypeDetails
Minimum1
Multiple1
Standard Packaging250
Sales UnitPiece

Introduction

AI Translation

The CC2630 device is a wireless MCU primarily designed for ZigBee and 6LoWPAN applications.

This device belongs to the SimpleLink™ CC26xx family of cost-effective, ultra-low-power 2.4GHz RF devices. Its extremely low active RF and MCU current consumption, combined with low-power mode current draw, ensures exceptional battery life, making it suitable for small coin cell battery-powered applications and energy harvesting applications.

The SimpleLink Bluetooth Low Energy CC2630 device incorporates a 32-bit ARM Cortex-M3 core running at 48MHz — the same frequency as the main processor — along with a rich peripheral feature set, including a unique ultra-low-power sensor controller. This sensor controller is ideal for interfacing with external sensors and for autonomously collecting analog and digital data while the rest of the system remains in sleep mode. As a result, the CC2630 device is an ideal choice for battery-powered and energy harvesting end nodes in ZigBee and 6LoWPAN networks.

The power and clock management and wireless system of the CC2630 wireless MCU require specific configuration and software handling for correct operation, which has been implemented in TI-RTOS.

The IEEE 802.15.4 MAC is embedded in ROM and runs separately on an ARM Cortex-M0 processor. This architecture improves overall system performance and power consumption while freeing up flash memory for applications.

Features

AI Translation
  • Microcontroller
    • Powerful ARM Cortex-M3
    • EEMBC CoreMark score: 142
    • Clock speed up to 48MHz
    • 128KB in-system programmable flash
    • TI-RTOS and Bluetooth software in ROM
    • Up to 28KB system SRAM, including 20KB ultra-low leakage SRAM
    • 8KB SRAM for cache or system RAM use
    • 2-pin cJTAG and JTAG debug
    • OTA upgrade support
    • Ultra-low power sensor controller
    • Operates autonomously, independent of the rest of the system
    • 16-bit architecture
    • Code-size-efficient architecture with drivers, IEEE 802.15.4 MAC, and bootloader in ROM
    • RoHS-compliant package
    • 4mm × 4mm RSM VQFN32 package (10 GPIOs)
    • 5mm × 5mm RHB VQFN32 package (15 GPIOs)
    • 7mm × 7mm RGZ VQFN48 package (31 GPIOs)
  • Peripherals
    • All digital peripheral pins mappable to any GPIO
    • Four general-purpose timer modules (8 × 16-bit or 4 × 32-bit, all with PWM)
    • 12-bit ADC, 200MSPS, 8-channel analog multiplexer
    • Duration comparator
    • Ultra-low power analog comparator
    • Programmable current source
    • UART
    • 2× SSI (SPI, MICROWIRE, and TI)
    • I2C
    • I2S
    • RTC
    • AES-128 security module
    • TRNG
    • 10, 15, or 31 GPIOs depending on package option
    • Supports eight capacitive-sensing buttons
    • Integrated temperature sensor
  • External System
    • On-chip internal DC-DC converter
    • Minimal external components
    • Seamless integration with SimpleLink™ CC2590 and CC2592 range extenders
    • Pin-compatible with SimpleLink CC13xx in 4mm × 4mm and 5mm × 5mm VQFN packages
  • Low Power
    • Wide supply voltage range
      • Normal operating voltage: 1.8V to 3.8V
      • External regulator mode: 1.7V to 1.95V
      • Active mode RX: 5.9mA
      • Active mode TX (0dBm): 6.1mA
      • Active mode TX (+5dBm): 9.1mA
      • Active mode MCU: 61μA/MHz
      • Active mode MCU: 48.5 CoreMark/mA
      • Active mode sensor controller: 0.4mA + 8.2μA/MHz
      • Standby current: 1.1μA (RTC running, RAM/CPU retained)
      • Shutdown current: 100nA (wake on external event)
  • RF Section
    • 2.4GHz RF transceiver compliant with IEEE 802.15.4 PHY and MAC
    • Excellent receiver sensitivity (-100dBm), selectivity, and blocking performance
    • 105dB link budget
    • Programmable output power up to +5dBm
    • Single-ended or differential RF interface
    • Suitable for systems complying with worldwide RF regulations
      • ETSI EN 300 328 (Europe)
      • EN 300 440 Class 2 (Europe)
      • FCC CFR47 Part 15 (US)
      • ARIB STD-T66 (Japan)
  • Tools and Development Environment
    • Full-featured, low-cost development kit
    • Multiple reference designs for different RF configurations
    • Packet sniffer PC software
    • Sensor Controller Studio
    • SmartRF™ Studio
    • SmartRF Flash Programmer 2
    • IAR Embedded Workbench (for ARM)
    • Code Composer Studio™
    • CCS Cloud

Applications

AI Translation
  • Home and building automation
  • Lighting control
  • Alarm and security
  • Electronic shelf labels
  • Proximity Tag
  • Wireless sensor networks
  • Energy harvesting, battery-free sensors and actuators
  • Smart grid