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Home » NXP Semiconductors » LPC11Cxx

LPC11Cxx Lineup  List & Compare        
  Part number Family Manufacturer Core Variant Freq. Flash/ROM Package
 LPC11C14FB  LPC11Cxx  NXP Semiconductors ARM Cortex-M0
 50MHz  16384KROM  LQFP 48
 LPC11C12FB  LPC11Cxx  NXP Semiconductors ARM Cortex-M0
 50MHz  16384KROM  LQFP 48
Group lineup : LPC11C12/LPC11C14

Key Features:

  • Same Architecture and Peripherals as our LPC11xx Series Plus:
    • On-Chip CAN 2.0 B C_CAN Controller and CANopen Drivers
  • Higher Code Density than Traditional 8-/16-Bit MCUs
  • High-Performance 50-MHz ARM Cortex-M0 Operation Delivers >45 DMIPs
  • 10-Bit, 8-Channel ADC with up to 400K Samples per Second at ±1LSB DNL
  • Up to 32KB Flash Memory with 8KB SRAM
  • Three Reduced Power Modes: Sleep, Deep-Sleep, and Deep Power-Down

Total CAN Solution

CAN has long been considered one of the best choices forrobust real-time communications, but it has been price-prohibitive for low-costembedded applications. With the introduction of the LPC11Cxx series, NXP nowprovides a new, low-cost entry point for a total CAN solution. The LPC11Cxxseries reduces product development risk, lowers total system cost, and speedstime-to-market for high-performance embedded designs.

On-Chip CAN and CANopen Drivers

On-chip CAN and CANopen drivers provide design engineers witheasy-to-use API commands to the CANopen protocol. This enables rapid integrationof the LPC11Cxx series into CAN-based networks which greatly simplifies theplug-and-play integration process. Furthermore, these drivers are incorporatedin low-power ROM, freeing up to 8KB of user code space. This offers the dualadvantage of reduced operating power and secure and safe bootloading via CAN orother on-chip serial channels. With the security and peace of mind of ROM-baseddrivers, flash updating can be done via In System Programming (ISP) over theCAN-bus. This gives you the entire range of functionality, from programmingblank parts in production through to changing system parameters to full,in-field re-programmability.

Enabling Higher Code Density

The LPC11Cxx enables 40 to 50 percent smaller code sizescompared to traditional 8-/16-bit microcontrollers for most commonmicrocontroller tasks. This is achieved through the powerful Cortex-M0 v6-Minstruction set, which is built on a fundamental base of 16-bit Thumbinstructions and unique to 32-bit microcontrollers today.

Superior Performance

With over 45 DMIPS of performance, the LPC11Cxx seriesprovides powerful message and data handing for CAN device nodes. This is whileoffering power optimization unavailable in today´s 8-/16-bit microcontrollers.