SLUUDH6 April   2026 CC3501E , CC3551E

 

  1.   1
  2.   Abstract
  3.   Trademarks
  4. 1Introduction
    1. 1.1 Overview
  5. 2Schematic Considerations - CC35xxE IC
    1. 2.1 Schematic Reference Design
    2. 2.2 Power Supply
      1. 2.2.1 Power Input/Output Requirements
        1. 2.2.1.1 LDO Recommendations
      2. 2.2.2 Boot Sequence
        1. 2.2.2.1 Hosted Mode (Power up by reset pin)
        2. 2.2.2.2 Standalone Mode (Power up when supply above threshold)
        3. 2.2.2.3 SOP Modes
    3. 2.3 Clock Source
      1. 2.3.1 Fast Clock
      2. 2.3.2 Slow Clock
        1. 2.3.2.1 Slow Clock Generated Internally
        2. 2.3.2.2 Slow Clock Using an External Oscillator
        3. 2.3.2.3 Slow Clock Using an External Crystal (XTAL)
    4. 2.4 Radio Frequency (RF)
    5. 2.5 Digital Interfaces
      1. 2.5.1 xSPI
        1. 2.5.1.1 External Serial Flash
      2. 2.5.2 Serial Wire Debug (SWD)
      3. 2.5.3 Logger
      4. 2.5.4 Coexistence
    6. 2.6 Stacked PSRAM Variant
  6. 3Layout Considerations - CC35xxE IC
    1. 3.1 Layout Reference Design
      1. 3.1.1 Reference Design - CC355xE Dual Band Layout
    2. 3.2 IC Thermal Pad
    3. 3.3 Radio Frequency (RF)
    4. 3.4 XTAL
    5. 3.5 Power Supplies
    6. 3.6 External Flash Layout

Hosted Mode (Power up by reset pin)

CC35xxE device is controlled by an external host. In this configuration the following boot-up sequence should be followed:

Power Up by Reset Pin

The device is released from reset by de-asserting the reset pin. For proper operation of the device, perform the recommended power-up sequencing as follows:

  1. All supplies (VDD_MAIN_IN, VDD_ANA_IN, VIO1, VIO2, VDDSF, VPA) must be available before nReset is released.
  2. For an external slow clock, ensure that the clock is stable before nReset is deasserted (high).
  3. The nReset pin should be held low for at least 10 us after stabilization of the external power supplies.