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LPC2387 Folha de dados (PDF) - NXP Semiconductors

LPC2387 Datasheet PDF - NXP Semiconductors
Nome de Peças LPC2387
Download  LPC2387 Download
Tamanho do Arquivo   439.87 Kbytes
página   66 Pages
Fabricante Electrônico  NXP [NXP Semiconductors]
Página de início  http://www.nxp.com
Logo NXP - NXP Semiconductors
Descrição Electrónicos Single-chip 16-bit/32-bit MCU; 512 kB flash with ISP/IAP, Ethernet, USB 2.0 device/host/OTG, CAN, and 10-bit ADC/DAC

LPC2387 Datasheet (PDF)

Go To PDF Page Download Folha de dados
LPC2387 Datasheet PDF - NXP Semiconductors

Nome de Peças LPC2387
Download  LPC2387 Click to download

Tamanho do Arquivo   439.87 Kbytes
página   66 Pages
Fabricante Electrônico  NXP [NXP Semiconductors]
Página de início  http://www.nxp.com
Logo NXP - NXP Semiconductors
Descrição Electrónicos Single-chip 16-bit/32-bit MCU; 512 kB flash with ISP/IAP, Ethernet, USB 2.0 device/host/OTG, CAN, and 10-bit ADC/DAC

LPC2387 Folha de dados (HTML) - NXP Semiconductors


LPC2387 Detalhes do produto

General description
The LPC2387 microcontroller is based on a 16-bit/32-bit ARM7TDMI-S CPU with
real-time emulation that combines the microcontroller with 512 kB of embedded
high-speed flash memory. A 128-bit wide memory interface and a unique accelerator
architecture enable 32-bit code execution at the maximum clock rate. For critical
performance in interrupt service routines and DSP algorithms, this increases performance
up to 30 % over Thumb mode. For critical code size applications, the alternative 16-bit
Thumb mode reduces code by more than 30 % with minimal performance penalty.
The LPC2387 is ideal for multi-purpose serial communication applications. It incorporates
a 10/100 Ethernet Media Access Controller (MAC), USB full speed device with 4 kB of
endpoint RAM, four UARTs, two CAN channels, an SPI interface, two Synchronous Serial
Ports (SSP), three I2C interfaces, and an I2S interface. This blend of serial
communications interfaces combined with an on-chip 4 MHz internal oscillator, 64 kB
SRAM, 16 kB SRAM for Ethernet, 16 kB SRAM for USB and general purpose use,
together with 2 kB battery powered SRAM makes this device very well suited for
communication gateways and protocol converters. Various 32-bit timers, an improved
10-bit ADC, 10-bit DAC, one PWM unit, a CAN control unit, and up to 70 fast GPIO lines
with up to 12 edge or level sensitive external interrupt pins make this microcontroller
particularly suitable for industrial control and medical systems.

Features and benefits
 ARM7TDMI-S processor, running at up to 72 MHz.
 512 kB on-chip flash program memory with In-System Programming (ISP) and
In-Application Programming (IAP) capabilities. Flash program memory is on the ARM
local bus for high performance CPU access.
 64 kB of SRAM on the ARM local bus for high performance CPU access.
 16 kB SRAM for Ethernet interface. Can also be used as general purpose SRAM.
 16 kB SRAM for general purpose DMA use; also accessible by the USB.
 Dual Advanced High-performance Bus (AHB) system that provides for simultaneous
Ethernet DMA, USB DMA, and program execution from on-chip flash with no
contention between those functions. A bus bridge allows the Ethernet DMA to access
the other AHB subsystem.
 Advanced Vectored Interrupt Controller (VIC), supporting up to 32 vectored interrupts.
 General Purpose DMA (GPDMA) on AHB controller that can be used with the SSP
serial interfaces, the I2S port, and the Secure Digital/MultiMediaCard (SD/MMC) card
port, as well as for memory-to-memory transfers.
 Serial interfaces:
 Ethernet MAC with associated DMA controller. These functions reside on an
independent AHB.
 USB 2.0 device/host/OTG with on-chip PHY and associated DMA controller.
 Four UARTs with fractional baud rate generation, one with modem control I/O, one
with IrDA support, all with FIFO.
 CAN controller with two channels.
 SPI controller.
 Two SSP controllers, with FIFO and multi-protocol capabilities. One is an alternate
for the SPI port, sharing its interrupt and pins. These can be used with the GPDMA
controller.
 Three I2C-bus interfaces (one with open-drain and two with standard port pins).
 I2S (Inter-IC Sound) interface for digital audio input or output. It can be used with
the GPDMA.
 Other peripherals:
 SD/MMC memory card interface.
 70 general purpose I/O pins with configurable pull-up/down resistors.
 10-bit ADC with input multiplexing among 6 pins.
 10-bit DAC.
 Four general purpose timers/counters with a total of 8 capture inputs and 10
compare outputs. Each timer block has an external count input.
 One PWM/timer block with support for three-phase motor control. The PWM has
two external count inputs.
 Real-Time Clock (RTC) with separate power pin, clock source can be the RTC
oscillator or the APB clock.
 2 kB SRAM powered from the RTC power pin, allowing data to be stored when the
rest of the chip is powered off.
 WatchDog Timer (WDT). The WDT can be clocked from the internal RC oscillator,
the RTC oscillator, or the APB clock.
 Standard ARM test/debug interface for compatibility with existing tools.
 Emulation trace module supports real-time trace.
 Single 3.3 V power supply (3.0 V to 3.6 V).
 Four reduced power modes: idle, sleep, power-down, and deep power-down.
 Four external interrupt inputs configurable as edge/level sensitive. All pins on port 0
and port 2 can be used as edge sensitive interrupt sources.
 Processor wake-up from Power-down mode via any interrupt able to operate during
Power-down mode (includes external interrupts, RTC interrupt, USB activity, Ethernet
wake-up interrupt).
 Two independent power domains allow fine tuning of power consumption based on
needed features.
 Each peripheral has its own clock divider for further power saving.
 Brownout detect with separate thresholds for interrupt and forced reset.
 On-chip power-on reset.
 On-chip crystal oscillator with an operating range of 1 MHz to 25 MHz.
 4 MHz internal RC oscillator trimmed to 1 % accuracy that can optionally be used as
the system clock. When used as the CPU clock, does not allow CAN and USB to run.




Nº de peça semelhante - LPC2387

Fabricante ElectrônicoNome de PeçasFolha de dadosDescrição Electrónicos
logo
NXP Semiconductors
LPC2387 NXP-LPC2387 Datasheet
1Mb / 47P
Single-chip 16-bit/32-bit microcontrollers; 512 kB flash with ISP/IAP, Ethernet, USB 2.0, CAN, and 10-bit ADC/DAC
Rev.01.00-6 November 2007
LPC2387 NXP-LPC2387 Datasheet
226Kb / 47P
Single-chip 16-bit/32-bit microcontrollers; 512 kB flash with ISP/IAP, Ethernet, USB 2.0, CAN, and 10-bit ADC/DAC
Rev. 02-1 February 2008
LPC2387 NXP-LPC2387 Datasheet
241Kb / 52P
Single-chip 16-bit/32-bit MCU; 512 kB flash with ISP/IAP, Ethernet, USB 2.0 device/host/OTG, CAN, and 10-bit ADC/DAC
Rev. 03-29 October 2008
LPC2387 NXP-LPC2387 Datasheet
464Kb / 64P
Single-chip 16-bit/32-bit MCU; 512 kB flash with ISP/IAP, Ethernet, USB 2.0 device/host/OTG, CAN, and 10-bit ADC/DAC
Rev. 4-10 February 2011
LPC2387 NXP-LPC2387 Datasheet
4Mb / 12P
NXP Microcontrollers Selection Guide
November 2012
More results


Descrição semelhante - LPC2387

Fabricante ElectrônicoNome de PeçasFolha de dadosDescrição Electrónicos
logo
NXP Semiconductors
LPC2378 PHILIPS-LPC2378 Datasheet
253Kb / 54P
Single-chip 16-bit/32-bit microcontrollers; 512 kB flash with ISP/IAP, Ethernet, USB 2.0, CAN, and 10-bit ADC/DAC
Rev. 01-6 December 2006
LPC2388 PHILIPS-LPC2388 Datasheet
1Mb / 57P
Single-chip 16-bit/32-bit microcontroller; 512 kB flash with ISP/IAP, Ethernet, USB 2.0 device/host/OTG, CAN, and 10-bit ADC/DAC
Rev.00.02-28 January 2008
LPC2361 NXP-LPC2361 Datasheet
236Kb / 50P
Single-chip 16-bit/32-bit MCU; up to 128 kB flash with ISP/IAP, Ethernet, USB 2.0 device/host/OTG, CAN, and 10-bit ADC/DAC
Rev. 03-11 November 2008
LPC2387_0810 NXP-LPC2387_0810 Datasheet
241Kb / 52P
Single-chip 16-bit/32-bit MCU; 512 kB flash with ISP/IAP, Ethernet, USB 2.0 device/host/OTG, CAN, and 10-bit ADC/DAC
Rev. 03-29 October 2008
LPC2388 NXP-LPC2388 Datasheet
275Kb / 61P
Single-chip 16-bit/32-bit micro; 512 kB flash with ISP/IAP, Ethernet, USB 2.0 device/host/OTG, CAN, and 10-bit ADC/DAC
Rev. 01-19 December 2008
LPC2361 NXP-LPC2361_10 Datasheet
881Kb / 57P
Single-chip 16-bit/32-bit MCU; up to 128 kB flash with ISP/IAP, Ethernet, USB 2.0 device/host/OTG, CAN, and 10-bit ADC/DAC
Rev. 04-4 March 2010
LPC2387 NXP-LPC2387_11 Datasheet
464Kb / 64P
Single-chip 16-bit/32-bit MCU; 512 kB flash with ISP/IAP, Ethernet, USB 2.0 device/host/OTG, CAN, and 10-bit ADC/DAC
Rev. 4-10 February 2011
LPC2361 NXP-LPC2361_V01 Datasheet
484Kb / 65P
Single-chip 16-bit/32-bit MCU; up to 128 kB flash with ISP/IAP, Ethernet, USB 2.0 device/host/OTG, CAN, and 10-bit ADC/DAC
Rev. 5.1??5 October 2013
LPC2377 NXP-LPC2377_V01 Datasheet
351Kb / 69P
Single-chip 16-bit/32-bit microcontrollers; 512 kB flash with ISP/IAP, Ethernet, USB 2.0, CAN, and 10-bit ADC/DAC
Rev. 6.1??6 October 2013
LPC2388 NXP-LPC2388_V01 Datasheet
378Kb / 74P
Single-chip 16-bit/32-bit micro; 512 kB flash with ISP/IAP, Ethernet, USB 2.0 device/host/OTG, CAN, and 10-bit ADC/DAC
Rev. 3 ??15 October 2013
More results




Sobre a NXP Semiconductors


Os semicondutores da NXP são uma empresa multinacional de capital aberto que projeta, desenvolve e fabrica uma ampla gama de semicondutores e circuitos integrados para várias aplicações, incluindo mercados automotivos, industriais, de comunicação e consumidores.

A empresa foi fundada em 2006 e está sediada em Eindhoven, Holanda.

A NXP oferece um amplo portfólio de produtos, incluindo microcontroladores, microprocessadores, ICs de autenticação segura, ICS de gerenciamento de energia, componentes de RF e microondas e soluções de sensor, entre outros.

Os produtos da empresa são projetados para serem eficientes em energia, seguros e confiáveis, e são usados ​​em uma variedade de aplicações, incluindo sistemas automotivos, automação e controle industrial, casas e edifícios inteligentes e dispositivos conectados.

A NXP é dedicada à inovação e à satisfação do cliente e está comprometida em fornecer a seus clientes as melhores soluções de semicondutores para atender às suas necessidades.

*Esta informação é apenas para fins informativos gerais, não seremos responsáveis por qualquer perda ou dano causado pelas informações acima.




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