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LPC1224FBD64/121,1数据手册
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1. General description
The LPC2141/42/44/46/48 microcontrollers are based on a 16-bit/32-bit ARM7TDMI-S
CPU with real-time emulation and embedded trace support, that combine microcontrollers
with embedded high-speed flash memory ranging from 32 kB to 512 kB. A 128-bit wide
memory interface and a unique accelerator architecture enable 32-bit code execution at
the maximum clock rate. For critical code size applications, the alternative 16-bit Thumb
mode reduces code by more than 30 % with minimal performance penalty.
Due to their tiny size and low power consumption, LPC2141/42/44/46/48 are ideal for
applications where miniaturization is a key requirement, such as access control and
point-of-sale. Serial communications interfaces ranging from a USB2.0 Full-speed device,
multiple UARTs, SPI, SSP to I
2
C-bus and on-chip SRAM of 8 kB up to 40 kB, make these
devices very well suited for communication gateways and protocol converters, soft
modems, voice recognition and low end imaging, providing both large buffer size and high
processing power. Various 32-bit timers, single or dual 10-bit ADCs, 10-bit DAC, PWM
channels and 45 fast GPIO lines with up to nine edge or level sensitive external interrupt
pins make these microcontrollers suitable for industrial control and medical systems.
2. Features
2.1 Key features
n 16-bit/32-bit ARM7TDMI-S microcontroller in a tiny LQFP64 package
n 8 kB to 40 kB of on-chip static RAM and 32 kB to 512 kB of on-chip flash memory;
128-bit wide interface/accelerator enables high-speed 60 MHz operation
n In-System Programming/In-Application Programming (ISP/IAP) via on-chip boot
loader software, single flash sector or full chip erase in 400 ms and programming of
256 B in 1 ms
n EmbeddedICE RT and Embedded Trace interfaces offer real-time debugging with the
on-chip RealMonitor software and high-speed tracing of instruction execution
n USB 2.0 Full-speed compliant device controller with 2 kB of endpoint RAM
In addition, the LPC2146/48 provides 8 kB of on-chip RAM accessible to USB by DMA
n One or two (LPC2141/42 vs, LPC2144/46/48) 10-bit ADCs provide a total of 6/14
analog inputs, with conversion times as low as 2.44 µs per channel
n Single 10-bit DAC provides variable analog output (LPC2142/44/46/48 only)
n Two 32-bit timers/external event counters (with four capture and four compare
channels each), PWM unit (six outputs) and watchdog
LPC2141/42/44/46/48
Single-chip 16-bit/32-bit microcontrollers; up to 512 kB flash
with ISP/IAP, USB 2.0 full-speed device, 10-bit ADC and DAC
Rev. 03 — 19 October 2007 Product data sheet
http://www.xinpian.net
提供单片机解密、IC解密、芯片解密业务
010-62245566 13810019655

LPC1224FBD64/121,1 数据手册

NXP(恩智浦)
2 页 / 0.32 MByte
NXP(恩智浦)
447 页 / 3.41 MByte
NXP(恩智浦)
61 页 / 0.46 MByte
NXP(恩智浦)
39 页 / 0.33 MByte

LPC1224 数据手册

NXP(恩智浦)
32位ARM Cortex -M0微控制器;高达128 KB的闪存和8 KB的SRAM 32-bit ARM Cortex-M0 microcontroller; up to 128 kB flash and 8 kB SRAM
NXP(恩智浦)
NXP  LPC1224FBD48/121,1  芯片, MCU, 32位, 48K, 闪存, 4K, 48-LQFP
NXP(恩智浦)
ARM Cortex-M0 微控制器,NXP基于 ARM Cortex-M0 的 NXP 系列低成本 32 位 MCU 设计用于 8/16 位微控制器应用程序。 与 8/16 位架构相比,它们提供了高性能、低功耗、简单指令集和存储寻址且减小了代码长度。借助 16 位封装实现 32 位性能,可获得更高的电源效率和更长的电池寿命 小尺寸使处理器和模拟电路能够在单模上实施 超低功耗和集成睡眠模式,带来更长的电池寿命 Thumb® 指令集,可实现编码密度最大化 ### ARM Cortex 微控制器,NXP
NXP(恩智浦)
NXP  LPC1224FBD64/121,1  芯片, MCU, 32位, 48K, 闪存, 4K, 64-LQFP
NXP(恩智浦)
NXP  LPC1224FBD48/101  微控制器, 32位, ARM 皮质-M0, 30 MHz, 32 KB, 4 KB, 48 引脚, LQFP
NXP(恩智浦)
NXP  LPC1224FBD64/101,1  芯片, MCU, 32位, 32K, 闪存, 4K, 64-LQFP
NXP(恩智浦)
ARM Cortex-M0 微控制器,NXP基于 ARM Cortex-M0 的 NXP 系列低成本 32 位 MCU 设计用于 8/16 位微控制器应用程序。 与 8/16 位架构相比,它们提供了高性能、低功耗、简单指令集和存储寻址且减小了代码长度。借助 16 位封装实现 32 位性能,可获得更高的电源效率和更长的电池寿命 小尺寸使处理器和模拟电路能够在单模上实施 超低功耗和集成睡眠模式,带来更长的电池寿命 Thumb® 指令集,可实现编码密度最大化 ### ARM Cortex 微控制器,NXP
NXP(恩智浦)
NXP  LPC1224FBD64/121  微控制器, 32位, ARM 皮质-M0, 30 MHz, 48 KB, 4 KB, 64 引脚, LQFP
NXP(恩智浦)
NXP  LPC1224FBD64/101  微控制器, 32位, ARM 皮质-M0, 30 MHz, 32 KB, 4 KB, 64 引脚, LQFP
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