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Follow on Google News | ![]() Cortex-M3 LPC1788 Header Board From CoiNelThe LPC1788 Header Board is based on Cortex M3 Core running at up to 120MHz,with512KB internal Flash memory and 96KB SRAM,4 KB EEPROM,LCD controller up to true color XGA,10/100 ethernet,USB 2.0 Host/Device/OTG,2 CAN,12-bit ADC,10-bit DAC,SD/MMC, I2S.
By: Prakash Rajolli Overview The LPC1788 Header Board is based on Cortex M3 Core, running at up to 120MHz, with 512KB internal Flash memory and 96KB SRAM, 4 KB EEPROM, external memory controller, LCD controller up to true color XGA, 10/100 ethernet, USB 2.0 Host/Device/ The Board features an LPC1788 controller, JTAG, an USB Device, onboard power supply and all the input output pins taken out via a 2.54mm standard Berg Connectivity. The Board can be used as a general controller board for various designs and different connectivity options can be tried out as required using breakout boards. The sample source code, schematic, software and tools are provided along with the board using which you can start with your application development from day 1. The LPC1788 Header Board has a 20 pin Wiggler-compatible JTAG interface which can be used for debugging/programming. The board can be debugged/programmed using parallel JTAG and CoiNel USB JTAG. You can also program the board via UART0 by the use of a simple TTL to RS232 converter. Parallel JTAG and TTL to RS232 converters are not the part of the package. LPC1788 Header Board Features MCU: LPC1788 Processor: Cortex M3 Core Standard JTAG connector (2x10 pin) for programming/ The board has access to allmost all pins for external connection. This makes it easy for any external device interface. The pins are named according to the interfaces where ever possible. All pins are available via standard 2.54mm Berg Strip. On Board USB Device with USB Link LED. This is a perfect solution for developing USB Peripherals. On Board 3.3V and 5V Power Supply with Power Supply LED and filtering capacitor. On Board Reset and ISP Circuit. 12 MHz crystal oscillator. 32.768 kHz crystal for Real Time Clock. PCB: FR-4, 1.6 mm, Green or Red soldermask, white silkscreen component print. Board Dimensions: 106 x 65 mm For more information on this product kindly go through following link: http://coineltech.com/ KIT DELIVARABLES LPC1788 Header Board USB Cable CD Containing source code, schematic, tools and documentation. Demo on this board as follows 1. LPC1788 Header Board Description http://www.youtube.com/ LPC1788 The LPC1788 is a Cortex-M3 microcontroller for embedded applications featuring a high level of integration and low power consumption at frequencies of 120 MHz. Features include 512 kB of flash memory, 96 kB of data memory, Ethernet, USB 2.0 Host/OTG/Device , 8-channel DMA controller, 5 UARTs, 2 CAN channels, 3 SSP/SPI, 3 I2C, I2S, 8-channel 12-bit ADC, 10-bit DAC, QEI, LCD controller, SD/MMC interface, motor control PWM, 4 general purpose timers, 6-output general purpose PWM, ultra-low power Real-Time Clock with separate battery supply, and up to 165 general purpose I/O pins. The following are the specifications of the controller Functional replacement for LPC23xx and 24xx family devices ARM Cortex-M3 processor, running at frequencies of up to 120 MHz ARM Cortex-M3 built-in Nested Vectored Interrupt Controller (NVIC) Multilayer AHB matrix interconnect provides a separate bus for each AHB master Split APB bus allows for higher throughput Cortex-M3 system tick timer, including an external clock input option Standard JTAG test/debug interface, Serial Wire Debug and Serial WireTrace Port Emulation trace module supports real-time trace Boundary scan for simplified board testing Non-maskable Interrupt (NMI) input 512 kB on-chip flash program memory 96 kB on-chip SRAM 4 kB on-chip EEPROM In-System Programming (ISP) and In-Application Programming (IAP) capabilities LCD controller, supporting both STN and TFT displays External Memory Controller (EMC) Eight channel General Purpose DMA controller (GPDMA) Ethernet MAC with MII/RMII interface and associated DMA controller USB 2.0 full-speed dual port device/host/ Five UARTs with fractional baud rate generation Three SSP controllers with FIFO and multi-protocol capabilities Three enhanced I2C-bus interfaces I2S (Inter-IC Sound) interface for digital audio input or output CAN controller with two channels SD/MMC memory card interface Up to 165 General Purpose I/O (GPIO) pins Two external interrupt inputs configurable as edge/level sensitive Four general purpose timers/counters Quadrature encoder interface that can monitor one external quadrature encoder Two standard PWM/timer blocks with external count input option Real-Time Clock (RTC) with a separate power domain Windowed Watchdog Timer (WWDT) 12-bit Analog-to-Digital Converter (ADC) with conversion rates up to 400 kHz 10-bit Digital-to-Analog Converter (DAC) Four reduced power modes: Sleep, Deep-sleep, Power-down, and Deep power-down Wake-up Interrupt Controller (WIC) Processor wake-up from Power-down mode via any interrupt Brownout detect with separate threshold for interrupt and forced reset On-chip Power-On Reset (POR) On-chip crystal oscillator with an operating range of 1 MHz to 25 MHz 12 MHz Internal RC oscillator (IRC) trimmed to 1% accuracy Unique device serial number for identification purposes Single 3.3 V power supply (2.4 V to 3.6 V) # # # CoiNel Technology Solutions LLP is an innovation company specializing in embedded system technology integration. Since its incubation in 2008, CoiNel has evolved as a company with perfect combination of experience and skilled technical professionals in Hardware and software design for embedded systems. Combining its creativity, experience and technical skills, CoiNel has a comprehensive system capabilities and a proven reputation of designing, developing and delivering state of the art embedded design and development solutions for its customers ranging from education, testing and measurement instruments, medical and automotives. The design kits developed by us are used in many different settings by students and embedded design engineers to learn new skills and update their existing electronic systems. End
Page Updated Last on: Aug 30, 2012
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