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LPC43S50 датащи (PDF) - NXP Semiconductors

LPC43S50 Datasheet PDF - NXP Semiconductors
номер детали LPC43S50
скачать  LPC43S50 скачать
объем файла   7187.93 Kbytes
Page   156 Pages
производитель  NXP [NXP Semiconductors]
домашняя страница  http://www.nxp.com
Logo NXP - NXP Semiconductors
подробное описание детали 32-bit ARM Cortex-M4/M0 flashless MCU with security features; up to 264 kB SRAM, Ethernet; two HS USBs, AES engine, LCD, EMC, SPIFI

LPC43S50 Datasheet (PDF)

Go To PDF Page скачать датащи
LPC43S50 Datasheet PDF - NXP Semiconductors

номер детали LPC43S50
скачать  LPC43S50 Click to download

объем файла   7187.93 Kbytes
Page   156 Pages
производитель  NXP [NXP Semiconductors]
домашняя страница  http://www.nxp.com
Logo NXP - NXP Semiconductors
подробное описание детали 32-bit ARM Cortex-M4/M0 flashless MCU with security features; up to 264 kB SRAM, Ethernet; two HS USBs, AES engine, LCD, EMC, SPIFI

LPC43S50 датащи (HTML) - NXP Semiconductors


LPC43S50 Информация о продукте

General description
The LPC43S50/S30/S20 are ARM Cortex-M4 based microcontrollers for embedded
applications which include an ARM Cortex-M0 coprocessor, up to 264 kB of SRAM,
security features with AES engine, advanced configurable peripherals such as the State
Configurable Timer/PWM (SCTimer/PWM) and the Serial General-Purpose I/O (SGPIO)
interface, two High-speed USB controllers, Ethernet, LCD, an external memory controller,
and multiple digital and analog peripherals. The LPC43S50/S30/S20 operate at CPU
frequencies of up to 204 MHz.
The ARM Cortex-M4 is a 32-bit core that offers system enhancements such as low power
consumption, enhanced debug features, and a high level of support block integration. The
ARM Cortex-M4 CPU incorporates a 3-stage pipeline, uses a Harvard architecture with
separate local instruction and data buses as well as a third bus for peripherals, and
includes an internal prefetch unit that supports speculative branching. The ARM
Cortex-M4 supports single-cycle digital signal processing and SIMD instructions. A
hardware floating-point unit is integrated in the core.
The ARM Cortex-M0 coprocessor is an energy-efficient and easy-to-use 32-bit core which
is code- and tool-compatible with the Cortex-M4 core. The Cortex-M0 coprocessor offers
up to 204 MHz performance with a simple instruction set and reduced code size. In
LPC43Sx0, the Cortex-M0 coprocessor hardware multiply is implemented as a 32-cycle
iterative multiplier.

Features and benefits
 Cortex-M4 Processor core
 ARM Cortex-M4 processor, running at frequencies of up to 204 MHz.
 Built-in Memory Protection Unit (MPU) supporting eight regions.
 Built-in Nested Vectored Interrupt Controller (NVIC).
 Hardware floating-point unit.
 Non-maskable Interrupt (NMI) input.
 JTAG and Serial Wire Debug (SWD), serial trace, eight breakpoints, and four watch points.
 Enhanced Trace Module (ETM) and Enhanced Trace Buffer (ETB) support.
 System tick timer.
 Cortex-M0 Processor core
 ARM Cortex-M0 coprocessor capable of off-loading the main ARM Cortex-M4
application processor.
 Running at frequencies of up to 204 MHz.
 JTAG
 Built-in NVIC.
 On-chip memory
 Up to 264 kB SRAM for code and data use.
 Multiple SRAM blocks with separate bus access. Two SRAM blocks can be
powered down individually.
 64 kB ROM containing boot code and on-chip software drivers.
 64 bit general-purpose OTP memory.
 Two banks (256 bit total) One-Time Programmable (OTP) memory for AES key
storage One bank can store an encrypted key for decoding the boot image.
 AES engine for encryption and decryption of the boot image and data with DMA
support and programmable via a ROM-based API.
 Clock generation unit
 Crystal oscillator with an operating range of 1 MHz to 25 MHz.
 12 MHz Internal RC (IRC) oscillator trimmed to 1.5 % accuracy over temperature
and voltage.
 Ultra-low power Real-Time Clock (RTC) crystal oscillator.
 Three PLLs allow CPU operation up to the maximum CPU rate without the need for
a high-frequency crystal. The second PLL is dedicated to the High-speed USB, the
third PLL can be used as audio PLL.
 Clock output.
 Configurable digital peripherals
 Serial GPIO (SGPIO) interface.
 State Configurable Timer (SCTimer/PWM) subsystem on AHB.
 Global Input Multiplexer Array (GIMA) allows to cross-connect multiple inputs and
outputs to event driven peripherals like the timers, SCTimer/PWM, and ADC0/1.
 Serial interfaces
 Quad SPI Flash Interface (SPIFI) with 1-, 2-, or 4-bit data at rates of up to
52 MB per second.
 10/100T Ethernet MAC with RMII and MII interfaces and DMA support for high
throughput at low CPU load. Support for IEEE 1588 time stamping/advanced time
stamping (IEEE 1588-2008 v2).
 One High-speed USB 2.0 Host/Device/OTG interface with DMA support and
on-chip high-speed PHY (USB0).
 One High-speed USB 2.0 Host/Device interface with DMA support, on-chip
full-speed PHY and ULPI interface to external high-speed PHY (USB1).
 USB interface electrical test software included in ROM USB stack.
 Four 550 UARTs with DMA support: one UART with full modem interface; one
UART with IrDA interface; three USARTs support UART synchronous mode and a
smart card interface conforming to ISO7816 specification.
 Up to two C_CAN 2.0B controllers with one channel each. Use of C_CAN controller
excludes operation of all other peripherals connected to the same bus bridge See
 Two SSP controllers with FIFO and multi-protocol support. Both SSPs with DMA
support.
 One SPI controller.
 One Fast-mode Plus I2C-bus interface with monitor mode and with open-drain I/O
pins conforming to the full I2C-bus specification. Supports data rates of up to
1 Mbit/s.
 One standard I2C-bus interface with monitor mode and with standard I/O pins.
 Two I2S interfaces, each with DMA support and with one input and one output.
 Digital peripherals
 External Memory Controller (EMC) supporting external SRAM, ROM, NOR flash,
and SDRAM devices.
 LCD controller with DMA support and a programmable display resolution of up to
1024 H  768 V. Supports monochrome and color STN panels and TFT color
panels; supports 1/2/4/8 bpp Color Look-Up Table (CLUT) and 16/24-bit direct pixel
mapping.
 Secure Digital Input Output (SD/MMC) card interface.
 Eight-channel General-Purpose DMA controller can access all memories on the
AHB and all DMA-capable AHB slaves.
 Up to 164 General-Purpose Input/Output (GPIO) pins with configurable
pull-up/pull-down resistors.
 GPIO registers are located on the AHB for fast access. GPIO ports have DMA
support.
 Up to eight GPIO pins can be selected from all GPIO pins as edge and level
sensitive interrupt sources.
 Two GPIO group interrupt modules enable an interrupt based on a programmable
pattern of input states of a group of GPIO pins.
 Four general-purpose timer/counters with capture and match capabilities.
 One motor control Pulse Width Modulator (PWM) for three-phase motor control.
 One Quadrature Encoder Interface (QEI).
 Repetitive Interrupt timer (RI timer).
 Windowed watchdog timer (WWDT).
 Ultra-low power Real-Time Clock (RTC) on separate power domain with 256 bytes
of battery powered backup registers.
 Alarm timer; can be battery powered.
 Analog peripherals
 One 10-bit DAC with DMA support and a data conversion rate of 400 kSamples/s.
 Two 10-bit ADCs with DMA support and a data conversion rate of 400 kSamples/s.
Up to eight input channels per ADC.
 Unique ID for each device.
 Power
 Single 3.3 V (2.2 V to 3.6 V) power supply with on-chip internal voltage regulator for
the core supply and the RTC power domain.
 RTC power domain can be powered separately by a 3 V battery supply.
 Four reduced power modes: Sleep, Deep-sleep, Power-down, and Deep power-down.
 Processor wake-up from Sleep mode via wake-up interrupts from various peripherals.
 Wake-up from Deep-sleep, Power-down, and Deep power-down modes via
external interrupts and interrupts generated by battery powered blocks in the RTC
power domain.
 Brownout detect with four separate thresholds for interrupt and forced reset.
 Power-On Reset (POR).
 Available as LBGA256, TFBGA180, and TFBGA100 packages and as LQFP144 package.

Applications
 Communication hubs
 Automotive aftermarket
 Power management
 Consumer health devices
 Embedded audio applications
 Industrial control
 Industrial automation
 white goods




Аналогичный номер детали - LPC43S50

производительномер деталидатащиподробное описание детали
logo
NXP Semiconductors
LPC43S57 NXP-LPC43S57 Datasheet
2Mb / 157P
32-bit ARM Cortex-M4/M0 MCU; up to 1 MB flash and 136 kB SRAM; Ethernet, 2 x USB, LCD, EMC, AES engine
Rev. 1.3 - 13 January 2020
LPC43S57JBD208 NXP-LPC43S57JBD208 Datasheet
7Mb / 157P
32-bit ARM Cortex-M4/M0 MCU; up to 1 MB flash and 136 kB SRAM; Ethernet, 2 x USB, LCD, EMC, AES engine
Rev. 1.3-13 January2020
LPC43S57JET256 NXP-LPC43S57JET256 Datasheet
7Mb / 157P
32-bit ARM Cortex-M4/M0 MCU; up to 1 MB flash and 136 kB SRAM; Ethernet, 2 x USB, LCD, EMC, AES engine
Rev. 1.3-13 January2020
LPC43S5X NXP-LPC43S5X Datasheet
7Mb / 157P
32-bit ARM Cortex-M4/M0 MCU; up to 1 MB flash and 136 kB SRAM; Ethernet, 2 x USB, LCD, EMC, AES engine
Rev. 1.3-13 January2020
More results


Аналогичное описание - LPC43S50

производительномер деталидатащиподробное описание детали
logo
NXP Semiconductors
LPC4350 NXP-LPC4350 Datasheet
1Mb / 145P
32-bit ARM Cortex-M4/M0 MCU; up to 264 kB SRAM; Ethernet two High-speed USBs; advanced configurable peripherals
Rev. 2.1-23 September2011
LPC4350 PHILIPS-LPC4350_12 Datasheet
2Mb / 149P
32-bit ARM Cortex-M4/M0 MCU; up to 264 kB SRAM; Ethernet; two High-speed USBs; advanced configurable peripherals
Rev. 3.1-5 January 2012
LPC408X NXP-LPC408X Datasheet
2Mb / 123P
32-bit ARM Cortex-M4 MCU; up to 512 kB flash, 96 kB SRAM; USB Device/Host/OTG; Ethernet; LCD; EMC; SPIFI
Rev. 1-17 September 2012
LPC4350 NXP-LPC4350_13 Datasheet
2Mb / 153P
32-bit ARM Cortex-M4/M0 MCU; up to 264 kB SRAM; Ethernet; two High-speed USBs; advanced configurable peripherals
Rev. 4-26 March 2013
LPC4367JET100E NXP-LPC4367JET100E Datasheet
2Mb / 156P
32-bit ARM Cortex-M4/M0 MCU; up to 1 MB flash and 154 kB SRAM; Ethernet, two High-speed USB, LCD, EMC
Rev. 1.2-14 March 2016
LPC18S50 NXP-LPC18S50 Datasheet
2Mb / 151P
32-bit ARM Cortex-M3 flashless MCU with security features
Rev. 1-23 February 2015
LPC435X NXP-LPC435X Datasheet
7Mb / 162P
32-bit ARM Cortex-M4/M0 MCU; up to 1 MB flash and 136 kB SRAM; Ethernet, two High-speed USB, LCD, EMC
LPC436X NXP-LPC436X Datasheet
6Mb / 156P
32-bit ARM Cortex-M4/M0 MCU; up to 1 MB flash and 154 kB SRAM; Ethernet, two High-speed USB, LCD, EMC
Rev. 1.3-10 January 2020
LPC43S6X NXP-LPC43S6X Datasheet
6Mb / 156P
32-bit ARM Cortex-M4/M0 MCU; up to 1 MB flash and 154 kB SRAM; Ethernet, two High-speed USB, LCD, EMC, AES engine
Rev. 1.3-13 January 2020
LPC43S5X NXP-LPC43S5X Datasheet
7Mb / 157P
32-bit ARM Cortex-M4/M0 MCU; up to 1 MB flash and 136 kB SRAM; Ethernet, 2 x USB, LCD, EMC, AES engine
Rev. 1.3-13 January2020
More results




О NXP Semiconductors


NXP Semiconductors - это публичная многонациональная компания, которая разрабатывает, разрабатывает и производит широкий спектр полупроводников и интегрированных цепей для различных применений, включая автомобильные, промышленные, коммуникационные и потребительские рынки.

Компания была основана в 2006 году и со штаб -квартирой в Эйндховен, Нидерланды.

NXP предлагает широкий портфель продуктов, в том числе микроконтроллеры, микропроцессоры, безопасную Аутентификацию ICS, ICS управления питанием, РЧ и микроволновые компоненты и датчики, среди прочих.

Продукты компании предназначены для энергоэффективных, безопасных и надежных, и используются в различных приложениях, включая автомобильные системы, промышленную автоматизацию и управление, интеллектуальные дома и здания, а также подключенные устройства.

NXP посвящен инновациям и удовлетворенности клиентов и стремится предоставить своим клиентам лучшие полупроводниковые решения для удовлетворения их потребностей.

*Эта информация предназначена только для общих информационных целей, мы не несем ответственности за любые убытки или ущерб, вызванные вышеуказанной информацией.




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