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Cc2511 Usb Dongle

Connect the CC2511 Dongle to the other SmartRF04EB and program it with the flash image, using IAR workbench or the Chipcon FLASH programmer. 3. Disconnect the programmed CC2511 USB Dongle from the SmartRF04EB and plug it into a free USB port on the PC. 4. When windows ask for a driver, point to the file "". SWRU082 Page 11 of 24

Cc2511 usb dongle download

CC2511:2. 4 GHz Radio Transceiver, 8051 MCU, 16KB or 32KB Flash memory and full-speed USB interface The CC2510Fx/CC2511Fx is a true low-cost 2. 4 GHz system-on-chip (SoC) designed for lowpower wireless applications. The CC2510Fx/CC2511Fx combines the excellent performance of the state-of-the-art RF transceiver CC2500 with an industry-standard enhanced 8051 MCU, up to 32 kB of in-system programmable flash memory and 4 kB of RAM, and many other powerful features. The small 6x6 mm package makes it very suited for applications with size limitations. The CC2510Fx/CC2511Fx is highly suited for systems where very low power consumption is required. This is ensured by several advanced low-power operating modes. The CC2511Fx adds a full-speed USB controller to the feature set of the CC2510Fx. Interfacing to a PC using the USB interface is quick and easy, and the high data rate (12 Mbps) of the USB interface avoids the bottlenecks of RS-232 or low-speed USB interfaces. Features Radio High-performance RF transceiver based on the market-leading CC2500 Excellent receiver selectivity and blocking performance High sensitivity (−103 dBm at 2.

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SmartRF Studio can be downloaded from the or The CC2511 have a 2 wire debug interface that is used for chip programming and debugging. When connecting this interface to the SmartRF04EB USB MCU, the CC2511 can be programmed from the Chipcon Flash Programmer software and debugged from IAR embedded connect the CC2511 Dongle to the SmartRF04EB follow these 6 steps: 1. Turn off the SmartRF04EB power by moving the power switch to the left position. See Figure 3. Remove any CCxxxxEM modules attached to the SmarRF04EB. Connect the SmartRF04EB to a PC with the supplied USB cable. 4. Connect the CC2511 Dongle to the SmartRF04EB with the supplied 10 pin cable. The cable should be mounted between the SoC debug connector on the CC2511 Dongle and the P14 SoC debug / flash connector on the SmartRF04EB. Make sure pin 1 is connected to pin 1. This cable connects the debug interface and GND between the two devices, however the CC2511 Dongle is not powered trough this cable. 5. Power the CC2511 Dongle. To power the CC2511 Dongle there are two options: Powered with a USB cable.

2 Windows USB driver framework). Page 14: Running The Application 8. If windows ask for the file "" or "", point to "" or "". 9. Turn on the CC2510EM / SmartRF04EB. 10. The USB dongle may have to be removed and reinserted once to the PC for the application to work. 6. 3. 3 Running the application 1. Page 15: Usb Development Framework A versatile, efficient and easy to use USB development framework is available for the CC2511. The intension with this framework is to make USB development as quick and easy as possible. The framework includes a firmware framework for the embedded software on the CC2511, and a Windows USB driver framework. Page 16: Windows Usb Driver Framework CUDAL (Chipcon USB Dongle Access Library) provides an easy-to-use C++ interface to the CC2511 USB Dongle, making development of PC software easy. This framework is used to create the USB driver in the WinAmp remote control application example. (The other application examples use standard Windows drivers). Page 17: Windows Usb Driver License The most important is the HAL library which contains functions and macros to enable and use all peripheral units on the CC2510 and CC2511.

Cc2511 usb dongle port

CC2511 Dongle User Manual Rev. 1. 0 SWRU082 Page 1 of 24 Also See for Texas Instruments CC2511 Related Manuals for Texas Instruments CC2511 Summary of Contents for Texas Instruments CC2511 Page 1 CC2511 Dongle CC2511 Dongle User Manual Rev. 0 SWRU082 Page 1 of 24... Page 2: Table Of Contents Table of contents INTRODUCTION... 3 ABOUT THIS MANUAL... 3 DEFINITIONS... 3 CONNECTING CC2511 DONGLE TO SMARTRF04EB.. 4 USING SMARTRF04EB AS AN IN-CIRCUIT EMULATOR (ICE)... 6 EBUGGING FIRMWARE... 8 NOWN PROBLEMS CC2511 APPLICATION EXAMPLES... 9 IRELESS MOUSE PRACTICAL JOKE 6. 1 Software components... 10 6. 2... Page 3: Introduction Sign up on the Chipcon web site. About this manual This manual covers the CC2511 Dongle, found in the CC2510–CC2511DK. It covers both the CC2511 Dongle hardware and software components of the development kit. Page 4: Connecting Cc2511 Dongle To Smartrf04Eb See Figure 1. • Powered from the SmartRF04EB. Connect pin 9 on the "Test pin" connector on CC2511 Dongle to pin 5 on the "I/O A" connector on SmartRF04EB to power the Dongle from the SmartRF04EB.

Cc2511 usb dongle reference design

Using the supplied USB extension cable to connect the CC2511 Dongle to the PC. See Figure 1. Powered from the SmartRF04EB. Connect pin 9 on the Test pin connector on CC2511 Dongle to pin 5 on the I/O A connector on SmartRF04EB to power the Dongle from the SmartRF04EB. See Figure 2. The CC2511 Dongle should only be powered by one of the two sources at a time. Do not connect the USB cable to the CC2511 Dongle while it is powered from the SmartRF04EB. The SmartRF04EB have a level converter on the debug connector, so the SmartRF04EB and the CC2511 Dongle may have a different power supply voltage. SWRU082 Page 4 of 24 CC2511 Dongle Figure 1 CC2511 Dongle powered from USB cable Figure 2 CC2511 Dongle powered from SmartRF04EB 6. Turn on the power on the SmartRF04EB. Figure 3: SmartRF04EB Power switch, power on. The CC2511 can now be programmed with the Chipcon Flash Programmer software. The firmware on the CC2511 can also be debugged using the IAR embedded workbench debugger. Please see the IAR user manual and the Chipcon Flash Programmer user manual for more details.

CC2511 Dongle 8 CC2511 Dongle hardware description Debug connector Line marking cutaway section of the dongle PCB antenna CC2511 USB Button LED GPIO testpins Figure 11: CC2511 Dongle top view Alternative debug Figure 12: CC2511 Dongle back view 8. 1 User Interface The CC2511 Dongle has one button and one LED that can be used to interact with the user. The LED is connected to pin P1_1. Setting P1_1 high (to logic 1) will turn the led on. The button is connected to pin P1_2 and GND. The pin P1_2 should be configured as an input with pull-up. The button is pushed when P1_2 is pulled low (to logic 0). 8. 2 USB interface The CC2511 Dongle has a standard USB connector. The dongle is powered through this connector. On the D+ line there is a pull-up used to identify the dongle as a full-speed USB unit on the USB bus. The pull-up can be controlled from the firmware, using P1_0. This enables the firmware to be connected to the USB bus for a period of time before it signals its presence to the USB hub.

4 kBaud) Programmable data rate up to 500 kBaud Programmable output power up to 1 dBm for all supported frequencies Frequency range: 2400 - 2483. 5 MHz Digital RSSI / LQI support High-performance RF transceiver based on the market-leading CC2500 Excellent receiver selectivity and blocking performance High sensitivity (−103 dBm at 2. 5 MHz Digital RSSI / LQI support Current Consumption Low current consumption (RX: 17. 1 mA @ 2. 4 kBaud, TX: 16 mA @ −6 dBm output power) 0. 3 µA in PM3 (the operating mode with the lowest power consumption) Low current consumption (RX: 17. 3 µA in PM3 (the operating mode with the lowest power consumption) MCU, Memory, and Peripherals High performance and low power 8051 microcontroller core. 8/16/32 kB in-system programmable flash, and 1/2/4 kB RAM Full-Speed USB Controller with 1 kB USB FIFO (CC2511Fx) I 2 S interface 7 – 12 bit ADC with up to eight inputs 128-bit AES security coprocessor Powerful DMA functionality Two USARTs 16-bit timer with DSM mode Three 8-bit timers Hardware debug support 21 (CC2510Fx) or 19 (CC2511Fx) GPIO pins High performance and low power 8051 microcontroller core.

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January 23, 2021, 1:11 pm