Texas Instruments Chipcon Products CC1110DK User Manual

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CC1110/CC2430/CC2510
CC1110DK
CC2430DK
CC2510DK
Development Kit
User Manual
Rev. 1.7
SWRU039B
Page 1 of 28

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Summary of Contents for Texas Instruments Chipcon Products CC1110DK

  • Page 1 CC1110/CC2430/CC2510 CC1110DK CC2430DK CC2510DK Development Kit User Manual Rev. 1.7 SWRU039B Page 1 of 28...
  • Page 2: Table Of Contents

    CC1110/CC2430/CC2510 Table of contents INTRODUCTION ........................3 ABOUT THIS MANUAL ......................3 DEFINITIONS..........................3 KIT CONTENT ..........................4 ...........................4 ARDWARE SMARTRF04EB .........................5 USB MCU ........................5 ILABS 5.1.1 Bootloader..................................... 5 5.1.2 Programming Silabs USB controller............................ 5 USB MCU ......................6 SIGNAL NAMES HARDWARE DESCRIPTION SMARTRF04EB ..............8 RF04EB......................9 OWERING MART...
  • Page 3: Introduction

    ® Thank you for purchasing a SmartRF 04DK Development Kit. ® Please note that Texas Instruments uses the term SmartRF 04DK as a collective term for all ® development kits on the Chipcon SmartRF 04 platform. This development platform supports ®...
  • Page 4: Kit Content

    CC1110/CC2430/CC2510 Kit content Hardware The development kit contains the following: • 2 x SmartRF04EB • 2 x evaluation modules (CC2430EM, CC1110EM or CC2510EM) • 2 x 2.4GHz Antennas • 2 x USB cables • 1 x 10-wire flat cable for using SmartRF04EB emulator external target systems...
  • Page 5: Smartrf04Eb

    CC1110/CC2430/CC2510 SmartRF04EB This chapter includes overall information that applies to SmartRF04EB. In the following SoC means Chipcon System on Chip, i.e. CC1100, CC2510, or CC2430. Figure 1: Main components Figure 1 shows the main components on the SmartRF04EB. A USB cable from a PC is connected directly to the Silabs USB controller.
  • Page 6: Usb Mcu Signal Names

    CC1110/CC2430/CC2510 Figure 2: EC2 serial adapter USB MCU signal names The USB MCU is a C8051F320 from Silicon Labs. Please see the Silicon Labs web site for detailed information about this MCU. The following table shows the usage of I/O pins on the USB MCU. Pin name Signal name 0-ohm...
  • Page 7 CC1110/CC2430/CC2510 As mentioned in the table, the joystick output is coded as an analogue voltage. This has been done in order to save the number of pins required on the MCU to interface with the joystick. The SoC software libraries contain functions to decode the ADC values and indicate in what direction the joystick is moved.
  • Page 8: Hardware Description Smartrf04Eb

    CC1110/CC2430/CC2510 Hardware description SmartRF04EB Supply selection Power connector switch Connectors for evaluation module (EM) DC jack debug/flash connector test connectors connector USB MCU USB MCU reset debug connector USB MCU Potentio meter Head- phone RS-232 output connector Mic. input Button Joystick Volume I/O connector B...
  • Page 9: Powering Smartrf04Eb

    CC1110/CC2430/CC2510 Powering SmartRF04EB If several power sources are connected to SmartRF04EB the board will be powered from the supply that supplies the highest voltage. Figure 4: Power switch setting The Power Switch S3 must be set according to what power source is used. If 3.3V is applied using the power terminal block, the switch should be set to the left position.
  • Page 10: Usb Interface

    Chebychev filter. This filter serves to attenuate frequencies above 6 kHz, and so converts the PWM signal to an analogue audio signal. A headphone amplifier IC (TPA4411 from Texas Instruments) is used to drive the headphones. Note that the headphone amplifier IC uses switch-mode power supply techniques to generate negative voltages, and this may cause electrical noise.
  • Page 11: I/Oconnectors

    CC1110/CC2430/CC2510 Figure 6: SPI jumper, Master mode Figure 7: SPI jumper, Slave Mode I/O connectors The I/O connectors bring out all the signals from the EM connectors. These connectors are compatible with Agilent logic analyser probes. The connectors allow easy access to I/O signals and to connect prototyping boards.
  • Page 12: Em Connectors

    CC1110/CC2430/CC2510 EM connectors The EM connectors are used for connecting the EM to the SmartRF04EB. The connectors P1 and P2 are used as the main interface. The EM should be used as an RF reference design with the Chipcon SoC, decoupling, and all required RF circuitry.
  • Page 13 CC1110/CC2430/CC2510 Figure 9: EM LCD connection SWRU039B Page 13 of 28...
  • Page 14: Smartrf04Dk Application Examples

    CC2430. All examples provide valuable information about setup and usage of different modules. The examples will be available both as source code and ready-to-upload .hex files from the Texas Instruments website. The application examples use a menu system controlled by the joystick. Scrolling through the examples is performed by moving the joystick up or down, while selecting an example to be run is done by moving the joystick to the right.
  • Page 15: Rf_Test

    CC1110/CC2430/CC2510 Clock Modes Demonstrates switching of the main clock source to either the internal RC-oscillator or the external crystal oscillator. A led is blinked according to the frequency of the oscillator currently used. Random Sequence The random generator is seeded with random sequence. Then, each time a new random value is needed, the random generator is clocked.
  • Page 16: Uart Setup

    CC1110/CC2430/CC2510 Same as single mode, but the transfer is started automatically and not each time the joystick is moved to the right. Ping-Pong mode Transfers a packet to the remote node. The remote node transfers the packet back. The LCD displays a “ball”...
  • Page 17: Output Power Testing

    CC1110/CC2430/CC2510 7.3.1 Output power testing EB+EM RF carrier Spectrum analyser Figure 11: Output power measurement set up Plug an EM into the SmartRF04DK, and connect the Development Kit to a PC using USB. ® Start SmartRF Studio. Connect the antenna port of the EM board to a spectrum analyser ®...
  • Page 18: Using Smartrf04Eb For Prototyping

    CC1110/CC2430/CC2510 Using SmartRF04EB for prototyping SmartRF04EB includes a debug and programming interface. The debug interface is controlled by 2 communication pins. On the SmartRF04EB the interface is controlled by the USB MCU. This allows both programming and an emulator interface using the USB port. Table 1 on page 6 shows which pins on the MCU that are used for various peripheral functions.
  • Page 19 CC1110/CC2430/CC2510 The pin out used on the SmartRF04EB is explained in Table 4 and Figure 14. All signals in bold in the table are required. Figure 14 shows the required signals for a minimum connector layout. Function Note Used to set correct voltage for the voltage level converter Debug Clock (DC) Debug Data (DD)
  • Page 20: Programming The Soc With A Hex File

    CC1110/CC2430/CC2510 Programming the SoC with a HEX file The SoC can be programmed from the USB interface using the Chipcon programming software. Figure 15 shows the user interface of the Chipcon Flash Programmer. For additional information regarding the Chipcon Flash Programmer please refer to the Chipcon Flash Programmer User Manual.
  • Page 21: Smartrf04Dk Schematics

    CC1110/CC2430/CC2510 10 SmartRF04DK Schematics Figure 16: SmartRF04EB schematic, page 1 SWRU039B Page 21 of 28...
  • Page 22 CC1110/CC2430/CC2510 Figure 17: SmartRF04EB schematic, page 2 SWRU039B Page 22 of 28...
  • Page 23 CC1110/CC2430/CC2510 Figure 18: SmartRF04EB schematic, page 3 SWRU039B Page 23 of 28...
  • Page 24 CC1110/CC2430/CC2510 Figure 19: SmartRF04EB schematic, page 4 SWRU039B Page 24 of 28...
  • Page 25 CC1110/CC2430/CC2510 Figure 20: SmartRF04EB schematic, page 5 SWRU039B Page 25 of 28...
  • Page 26 CC1110/CC2430/CC2510 Figure 21: SmartRF04EB schematic, page 6 SWRU039B Page 26 of 28...
  • Page 27 CC1110/CC2430/CC2510 Figure 22: SmartRF04EB schematic, page 7 Revision Description/Changes 1.9 (PCB 1.9) Initial public release Table 5: SmartRF04EB change list SWRU039B Page 27 of 28...
  • Page 28: Evaluation Modules

    CC1110/CC2430/CC2510 11 Evaluation Modules Gerber files and full documentation for the released evaluation modules can be downloaded from the Texas Instruments web site. Figure 23: Evaluation Module 12 Document history Revision Date Description/Changes Major updates in many part of the document including...
  • Page 29 Mouser Electronics Authorized Distributor Click to View Pricing, Inventory, Delivery & Lifecycle Information: Texas Instruments CC1110DK-433 CC1110DK-868...

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Chipcon products cc2430dkChipcon products cc2510dk

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