ZHCSFA6B June   2016  – July 2018 CC1350

PRODUCTION DATA.  

  1. 1器件概述
    1. 1.1 特性
    2. 1.2 应用
    3. 1.3 说明
    4. 1.4 功能框图
  2. 2修订历史记录
  3. 3Device Comparison
    1. 3.1 Related Products
  4. 4Terminal Configuration and Functions
    1. 4.1 Pin Diagram – RSM Package
    2. 4.2 Signal Descriptions – RSM Package
    3. 4.3 Pin Diagram – RHB Package
    4. 4.4 Signal Descriptions – RHB Package
    5. 4.5 Pin Diagram – RGZ Package
    6. 4.6 Signal Descriptions – RGZ Package
  5. 5Specifications
    1. 5.1  Absolute Maximum Ratings
    2. 5.2  ESD Ratings
    3. 5.3  Recommended Operating Conditions
    4. 5.4  Power Consumption Summary
    5. 5.5  RF Characteristics
    6. 5.6  Receive (RX) Parameters, 861 MHz to 1054 MHz
    7. 5.7  Receive (RX) Parameters, 431 MHz to 527 MHz
    8. 5.8  Transmit (TX) Parameters, 861 MHz to 1054 MHz
    9. 5.9  Transmit (TX) Parameters, 431 MHz to 527 MHz
    10. 5.10 1-Mbps GFSK (Bluetooth low energy) – RX
    11. 5.11 1-Mbps GFSK (Bluetooth low energy) – TX
    12. 5.12 PLL Parameters
    13. 5.13 ADC Characteristics
    14. 5.14 Temperature Sensor
    15. 5.15 Battery Monitor
    16. 5.16 Continuous Time Comparator
    17. 5.17 Low-Power Clocked Comparator
    18. 5.18 Programmable Current Source
    19. 5.19 DC Characteristics
    20. 5.20 Thermal Characteristics
    21. 5.21 Timing and Switching Characteristics
      1. 5.21.1 Reset Timing
        1. Table 5-1 Reset Timing
      2. 5.21.2 Wakeup Timing
        1. Table 5-2 Wakeup Timing
      3. 5.21.3 Clock Specifications
        1. Table 5-3 24-MHz Crystal Oscillator (XOSC_HF)
        2. Table 5-4 32.768-kHz Crystal Oscillator (XOSC_LF)
        3. Table 5-5 48-MHz RC Oscillator (RCOSC_HF)
        4. Table 5-6 32-kHz RC Oscillator (RCOSC_LF)
      4. 5.21.4 Flash Memory Characteristics
        1. Table 5-7 Flash Memory Characteristics
      5. 5.21.5 Synchronous Serial Interface (SSI) Characteristics
        1. Table 5-8 Synchronous Serial Interface (SSI) Characteristics
    22. 5.22 Typical Characteristics
    23. 5.23 Typical Characteristics – Sub-1 GHz
    24. 5.24 Typical Characteristics – 2.4 GHz
  6. 6Detailed Description
    1. 6.1  Overview
    2. 6.2  Main CPU
    3. 6.3  RF Core
    4. 6.4  Sensor Controller
    5. 6.5  Memory
    6. 6.6  Debug
    7. 6.7  Power Management
    8. 6.8  Clock Systems
    9. 6.9  General Peripherals and Modules
    10. 6.10 Voltage Supply Domains
    11. 6.11 System Architecture
  7. 7Application, Implementation, and Layout
    1. 7.1 Application Information
    2. 7.2 TI Design or Reference Design
  8. 8器件和文档支持
    1. 8.1  器件命名规则
    2. 8.2  工具和软件
    3. 8.3  文档支持
    4. 8.4  米6体育平台手机版_好二三四 (TI) 低功耗射频网站
    5. 8.5  其他信息
    6. 8.6  社区资源
    7. 8.7  商标
    8. 8.8  静电放电警告
    9. 8.9  出口管制提示
    10. 8.10 术语表
  9. 9机械、封装和可订购信息
    1. 9.1 封装信息

封装选项

请参考 PDF 数据表获取器件具体的封装图。

机械数据 (封装 | 引脚)
  • RSM|32
  • RGZ|48
  • RHB|32
散热焊盘机械数据 (封装 | 引脚)
订购信息

1-Mbps GFSK (Bluetooth low energy) – RX

Measured on the TI CC1350_7XD-Dual Band reference design with Tc = 25°C, VDDS = 3.0 V, fRF = 2440 MHz, unless otherwise noted. All tests with Bluetooth low energy PHY (1 Mbps), 37-byte payload unless otherwise noted.
PARAMETER TEST CONDITIONS MIN TYP MAX UNIT
Receiver sensitivity Differential mode. Measured at the CC1350_7XD-Dual Band SMA connector,
37-byte payload BER = 10–3
–87 dBm
Receiver sensitivity Differential mode. Measured at the CC1350_7XD-Dual Band SMA connector,
255-byte payload BER = 10–3
–86 dBm
Receiver saturation Differential mode. Measured at the CC1350_7XD-Dual Band SMA connector, BER = 10–3 0 dBm
Frequency error tolerance Difference between the incoming carrier frequency and the internally generated carrier frequency. Input signal 10 dB above sensitivity limit –350 350 kHz
Data rate error tolerance Difference between incoming data rate and the internally generated data rate. Input signal 10 dB above sensitivity limit –750 750 ppm
Co-channel rejection(2) Wanted signal at –67 dBm, modulated interferer in channel, BER = 10–3 –6 dB
Selectivity, ±1 MHz(2) Wanted signal at –67 dBm, modulated interferer at ±1 MHz, BER = 10–3 7 / 4(1) dB
Selectivity, +2 MHz(2) Wanted signal at –67 dBm, modulated interferer at +2 MHz, BER = 10–3 38 dB
Selectivity, ±3 MHz(2) Wanted signal at –67 dBm, modulated interferer at ±3 MHz, BER = 10–3.
Note that –3 MHz is –1 MHz from the image frequency.
36 / 41(1) dB
Selectivity, ±4 MHz(2) Wanted signal at –67 dBm, modulated interferer at ±4 MHz, BER = 10–3 39 / 38(1) dB
Selectivity, ±5 MHz(2) Wanted signal at –67 dBm, modulated interferer at ±5 MHz, BER = 10–3 35 / 39(1) dB
Selectivity, ±6 MHz(2) Wanted signal at –67 dBm, modulated interferer at ≥ ±6 MHz, BER = 10–3 42 / 37(1) dB
Selectivity, ±15 MHz or more(2) Wanted signal at –67 dBm, modulated interferer at ≥ ±15 MHz or more, BER = 10–3 55 dB
Selectivity, Image frequency (image compensation enabled, the image compensation is calibrated in production)(2) Wanted signal at –67 dBm, modulated interferer at image frequency, BER = 10–3 37 dB
Selectivity, Image frequency
±1 MHz(2)
Wanted signal at –67 dBm, modulated interferer at ±1 MHz from image (–3 MHz and –1 MHz from wanted) frequency, BER = 10–3 4 / 41(1) dB
Out-of-band blocking(3) 30 MHz to 2000 MHz –25 dBm
Out-of-band blocking 2003 MHz to 2399 MHz >–20 dBm
Out-of-band blocking 2484 MHz to 2997 MHz >–20 dBm
Out-of-band blocking 3000 MHz to 12.75 GHz >–30 dBm
Intermodulation Wanted signal at 2402 MHz, –64 dBm. Two interferers at 2405 and 2408 MHz, respectively, at the given power level –30 dBm
Spurious emissions,
30 to 1000 MHz
Conducted measurement in a 50-Ω single-ended load. Suitable for systems targeting compliance with EN 300 328, EN 300 440 class 2, FCC CFR47, Part 15 and ARIB STD-T-66 –72 dBm
Spurious emissions,
1 to 12.75 GHz
Conducted measurement in a 50-Ω single-ended load. Suitable for systems targeting compliance with EN 300 328, EN 300 440 class 2, FCC CFR47, Part 15 and ARIB STD-T-66 –65 dBm
RSSI dynamic range 70 dB
RSSI accuracy ±4 dB
X / Y, where X is +N MHz and Y is –N MHz.
Numbers given as I/C dB.
Excluding one exception at Fwanted / 2, per Bluetooth Specification.