LPC2101FBD48

Single-chip 16-bit/32-bit microcontrollers; 8 kB/16 kB/32 kB flash with ISP/IAP, fast ports and 10-bit ADC


Quick ordering

DistributorIn Stock
OR:  

Latest videos

  • Elevator pitch for MCU...

    youtube video

    Elevator pitch for MCU


The LPC2101/02/03 microcontrollers are based on a 16-bit/32-bit ARM7TDMI-S CPU with real-time emulation that combines the microcontroller with 8 kB, 16 kB or 32 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 pct over Thumb mode. For critical code size applications, the alternative 16-bit Thumb mode reduces code by more than 30 pct with minimal performance penalty.

Due to their tiny size and low power consumption, the LPC2101/02/03 are ideal for applications where miniaturization is a key requirement. A blend of serial communications interfaces ranging from multiple UARTs, SPI to SSP and two I²C-buses, combined with on-chip SRAM of 2 kB/4 kB/8 kB, make these devices very well suited for communication gateways and protocol converters. The superior performance also makes these devices suitable for use as math coprocessors. Various 32-bit and 16-bit timers, an improved 10-bit ADC, PWM features through output match on all timers, and 32 fast GPIO lines with up to nine edge or level sensitive external interrupt pins make these microcontrollers particularly suitable for industrial control and medical systems.

Features and benefits

Enhanced features

Enhanced features are available in parts LPC2101/02/03 labelled Revision A and higher:

  • Deep power-down mode with option to retain SRAM memory and/or RTC.
  • Three levels of flash Code Read Protection (CRP) implemented.

Key features

  • 16-bit/32-bit ARM7TDMI-S microcontroller in tiny LQFP48 and HVQFN48 packages.
  • 2 kB/4 kB/8 kB of on-chip static RAM and 8 kB/16 kB/32 kB of on-chip flash program memory. 128-bit wide interface/accelerator enables high-speed 70 MHz operation.
  • ISP/IAP via on-chip bootloader software. Single flash sector or full chip erase in 100 ms and programming of 256 bytes in 1 ms.
  • EmbeddedICE-RT offers real-time debugging with the on-chip RealMonitor software.
  • The 10-bit ADC provides eight analog inputs, with conversion times as low as 2.44 us per channel and dedicated result registers to minimize interrupt overhead.
  • Two 32-bit timers/external event counters with combined seven capture and seven compare channels.
  • Two 16-bit timers/external event counters with combined three capture and seven compare channels.
  • Low power Real-Time Clock (RTC) with independent power and dedicated 32 kHz clock input.
  • Multiple serial interfaces including two UARTs (16C550), two Fast I²C-buses (400 kbit/s), SPI and SSP with buffering and variable data length capabilities.
  • Vectored interrupt controller with configurable priorities and vector addresses.
  • Up to thirty-two, 5 V tolerant fast general purpose I/O pins.
  • Up to 13 edge or level sensitive external interrupt pins available.
  • 70 MHz maximum CPU clock available from programmable on-chip PLL with a possible input frequency of 10 MHz to 25 MHz and a settling time of 100 us.
  • On-chip integrated oscillator operates with an external crystal in the range from 1 MHz to 25 MHz.
  • Power saving modes include Idle mode, Power-down mode with RTC active, and Power-down mode.
  • Individual enable/disable of peripheral functions as well as peripheral clock scaling for additional power optimization.
  • Processor wake-up from Power-down and Deep power-down (Revision A and higher) mode via external interrupt or RTC.
All information on this product information page is subject to the subsequent disclaimers:
Go to the parametric search
Parametric search

Show functional diagram

Block diagram: LPC2101FBD48, LPC2102FBD48, LPC2102FHN48, LPC2103FBD48, LPC2103FHN48
Block diagram: LPC2101FBD48, LPC2102FBD48, LPC2102FHN48, LPC2103FBD48, LPC2103FHN48

Parametrics of this product

Type numberPackageProduct statusfmax [max](MHz)FLASH(kB)RAM(kB)I/O pinsUSB deviceUSB hostUSB OTGCANUARTSPIADCTimersPWMPackage nameTemperature rangePLLCPU supply voltage(V)Product description
LPC2101FBD48SOT313-2
(LQFP48)
Production7082320000218414LQFP48FY1.8Single-chip 16-bit/32-bit microcontroller; 8 kBflash with ISP/IAP, fast ports and 10-bit ADC

Similar products

Products / Packages

Type numberOrderable part numberOrdering code (12NC)Product statusPackagePackingMarking
LPC2101FBD48LPC2101FBD48,1519352 809 63151Volume productionSOT313-2
(LQFP48)
Tray Pack, Bakeable, SingleStandard Marking

Quality, reliability & chemical content

Type numberOrderable part numberChemical contentRoHSLeadfree conversion dateRHFIFR (FIT)MTBF (hours)MSLMSL LF
LPC2101FBD48LPC2101FBD48,151LPC2101FBD48Always Pb-free2.842.5839793281653747E811
Quality and reliability disclaimer

Quality and reliability disclaimer

Important Legal Notice on the product/generic quality information, No Warranty

NXP Semiconductors is providing this data for your convenience only. Please note however that NO WARRANTY, REPRESENTATION, GUARANTEE OR LEGALLY BINDING PRODUCT DESCRIPTION is provided by publishing this informational data, nor does NXP Semiconductors acknowledge or accept any liability related thereto. The documentation and data on NXP Semiconductors products can be found in the data sheets as officially published by NXP Semiconductors. For all purchase of products from NXP Semiconductors the NXP Semiconductors' General Terms and Conditions of Commercial Sale will apply.

NXP SEMICONDUCTORS PROVIDES THE DATA HEREUNDER “AS IS” WITHOUT WARRANTY WHATSOEVER. NXP SEMICONDUCTORS DOES NOT WARRANT OR REPRESENT THAT ANY DATA PROVIDED ON THIS WEBSITE IS CORRECT OR FIT FOR A PARTICULAR PURPOSE WHATSOEVER. IT IS PROVIDED WITHOUT ANY WARRANTY WHATSOEVER, WHETHER EXPRESS, IMPLIED OR OTHERWISE, REGARDING ITS ACCURACY, COMPLETENESS NONINFRINGEMENT OF INTELLECTUAL PROPERTY OR OTHERWISE AND MAY BE CHANGED, MODIFIED OR DELETED BY NXP SEMICONDUCTORS AT ANY TIME.

Any use of the data provided hereunder is at your own risk.

IN NO EVENT SHALL NXP SEMICONDUCTORS, BE LIABLE FOR ANY DIRECT, SPECIAL, INDIRECT, CONSEQUENTIAL, PUNITIVE, OR INCIDENTAL DAMAGES (INCLUDING WITHOUT LIMITATION DAMAGES FOR LOSS OF BUSINESS, BUSINESS INTERRUPTION, LOSS OF USE, LOSS OF DATA OR INFORMATION, AND THE LIKE) ARISING OUT OF THE USE OF THE DATA, WHETHER OR NOT BASED ON TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY, BREACH OF CONTRACT, BREACH OF WARRANTY OR ANY OTHER THEORY, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGES. NOTWITHSTANDING ANY DAMAGES THAT YOU MIGHT INCUR FOR ANY REASON WHATSOEVER (INCLUDING, WITHOUT LIMITATION, ALL DAMAGES REFERENCED ABOVE AND ALL GENERAL DAMAGES), THE ENTIRE LIABILITY OF NXP SEMICONDUCTORS, AND YOUR EXCLUSIVE REMEDY FOR ALL OF THE FOREGOING SHALL BE LIMITED TO ACTUAL DAMAGES INCURRED BY YOU BASED ON REASONABLE RELIANCE UP TO ONE DOLLARS (US$1.00). THE FOREGOING LIMITATIONS, EXCLUSIONS AND DISCLAIMERS SHALL APPLY TO THE MAXIMUM EXTENT PERMITTED BY APPLICABLE LAW, EVEN IF ANY REMEDY FAILS OF ITS ESSENTIAL PURPOSE.

Your use of this data, and all consequences of such use, is solely your responsibility. You must perform sufficient engineering and additional qualification testing in order to properly evaluate your application and determine whether a candidate NXP Semiconductors device is suitable for use in that application.

NXP Semiconductors' products are specifically designed and manufactured to be used within the electrical, thermal, mechanical and other parameters set forth in NXP Semiconductors' data sheets. Quality and reliability data provided by NXP Semiconductors, such as MTBF, MSL and FIT, is intended to be a non-binding estimate of product performance based upon diffusion process, history only. It does not imply that any performance levels reflected in such data can be met if the product is operated outside the conditions expressly stated in the latest published data sheet for a device or in your application.

The RoHS data provided hereunder is preliminary and non binding for NXP Semiconductors. NXP Semiconductors does not accept any liability related to this data.

NXP Semiconductors products are not designed, authorized or warranted to be suitable for use in medical, military, aircraft, space or life support equipment, nor in applications where failure or malfunction of an NXP Semiconductors product can reasonably be expected to result in personal injury, death or severe property or environmental damage nor for any other use that is not explicitly agreed between the parties. NXP Semiconductors accepts no liability for inclusion and/or use of NXP Semiconductors products in such equipment or applications and therefore such inclusion and/or use is at the customer's own risk.

Any use of NXP Semiconductors' products beyond the scope defined in the current NXP Semiconductors' data sheet voids all warranty responsibility of NXP Semiconductors with respect to such devices, and also voids all responsibility of NXP Semiconductors with respect to any applications assistance, product design, software performance or services of any kind that were or may have been performed in connection with the sale of any such devices.

Further, resale of NXP Semiconductors' products or services with statements different from or beyond the parameters stated by NXP Semiconductors for that product in official NXP Semiconductors data sheets, or without the warnings or instructions provided by NXP Semiconductors, voids all express and any implied warranties for the associated NXP Semiconductors product or service, and is an unfair and deceptive business practice.

Documentation for this product

TypeFormatTitleDate
Data sheetpdfSingle-chip 16-bit/32-bit microcontrollers; 8 kB/16 kB/32 kB flash with ISP/IAP, fast ports and 10-bit ADC (v.4.0)2009-06-02
Application notepdfUsing IAP for LPC2000 ARM devices (v.2.0)2004-10-25
Application notepdfNicheLite for LPC implementation notes (v.2.0)2009-07-16
Application notepdfMigrating to the LPC1700 series (v.1.0)2009-10-06
Application notepdfLPC2000 secondary bootloader for code update using IAP (v.1.0)2009-05-26
Application notepdfUsing the Philips LPC2000 Flash utility with the Keil MCB2100 and IAR LPC210x Kickstart evaluation boards (v.4.0)2010-02-16
Application notepdfNesting of interrupts in the LPC2000 (v.1.0)2005-06-06
Application notepdfConnecting ethernet interface with LPC2000 (v.1.0)2007-02-09
Application notepdfInitialization code/hints for the LPC2000 family (v.1.0)2005-11-01
Application notepdfuC/OS-II Time Management in LPC2000 (v.2.0)2007-07-18
Application notepdfHandling of spurious interrupts in the LPC2000 (v.1.0)2006-01-04
Application notepdfMigrating to the LPC2300/2400 family (v.1.0)2007-02-05
Application notepdfInterfacing NXP bridge IC with NXP ARM microcontroller (v.1.0)2007-02-26
Application notepdfFull-duplex software UART for LPC2000 (v.1.0)2008-01-18
Application notepdfPhilips LPC210x microcontroller family (v.2.0)2004-10-25
Application notepdfUART/SPI/I2C code examples (v.1.0)2005-04-12
Application notepdfBrushed DC motor control using the LPC2101 (v.1.0)2007-01-15
BrochurepdfLooking for more 32-bit MCU options? Start here. (v.1.0)2009-04-01
BrochurepdfCreate smarter, more efficient white goods; An industry-leading portfolio of cost-effective, power-saving solutions for major home appliances (v.1.0)2008-06-01
Errata sheetpdfErrata sheet LPC2101 (v.2.0)2011-03-11
Line cardpdfDevelopment Tools for ARM-based MCUs; Select from the Best in Support (v.1.0)2009-06-01
Other typezipAN10835 - LPC2000 series secondary bootloader source code (v.1.0)2009-05-27
Other typepdfLPC2xxx UART transmitter code example (v.1.0)2005-09-19
Other typepdfLPC2xxx SPI master code example (v.1.0)2006-01-20
Other typepdfLPC2000 EINT dual edge interrupts (v.1.0)2006-02-22
Other typepdfLPC2000 ADC code example (v.1.0)2006-03-27
Other typepdfLPC2000 I2C slave code example (v.1.0)2006-04-21
Other typezipLPC2000 SPI slave code example (v.1.0)2006-06-16
Other typepdfTN07002 UUencode (v.1.0)2007-05-09
SoftwarezipAN11008 - Flash based non-volatile storage (v.1.0)2011-02-22
SoftwarezipAN10717 - DMX512 communication using the LPC2000 (v.1.0)2012-05-23
Technical notezipLPC21xx/22xx, 2104/5/6 revision defect (with software) (v.1.0)2008-10-13
User manualpdfLPC2101/02/03 User manual (v.4.0)2009-05-13

Ordering & availability

Type numberOrdering code(12NC)Orderable part numberRegionDistributorIn stockOrder quantityInventory dateBuy onlineSamples
LPC2101FBD489352 809 63151LPC2101FBD48,151NADIGI-KEY CORPORATION6,6565/24/2012Buy online 
   EUAVNET EXPRESS EUROPE1,5005/24/2012Buy online 
   ASIAWPI1,00025005/14/2012Buy online 
   NAARROW ELECTRONICS4005/24/2012Buy online 
   NAFUTURE ELECTRONICS2145/23/2012Buy online 
   EUFUTURE ELECTRONICS UK2145/23/2012Buy online 
   ASIAFUTURE ELECTRONICS- ASIA2145/23/2012Buy online 
   EUFARNELL1715/24/2012Buy online 
   ASIAELEMENT14 APAC1575/24/2012Buy online 
   NANEWARK/ELEMENT141415/24/2012Buy online 
   NAAVNET EXPRESS675/24/2012Buy online 
   JAPANCHIP ONE STOPyes05/14/2012Buy online 

Sample

Sample orders normally take 2-4 days for delivery.
If you do not have a direct account with NXP our network of global and regional distributors is available and equipped to support you with NXP samples. As a NXP customer you also have the option to order samples via our sales organisation.

Technical support

Do you want to ask technical questions to an NXP expert?
Please select one of the following options:

How to search?

Restricted Document

You are accessing a password protected document.
Please choose an option below

Fill in your name, company and e-mail address and you will receive an e-mail with a username and password for this restricted document.

First name*

Last name*

Company*

E-mail*

Comments

* required.

Print password request form:

Before we can grant you access to our confidential documents you are required to fill in, print and sign the password request form by which you comply with the NXP Non-disclosure agreement (NDA). Please email or fax the signed form to the email-address or fax-number specified on the form. After approval you will receive username and password via email. In case you already signed an NDA with NXP and already have username and password, you can skip this step.

Open document:

If you have received the username and password, you can open the document by clicking on the "open document" link. You will be prompted for username and password. After you fill in the username and password the download will start.

Forgot your password:

In case you forgot your password you can click on the "forgot your password" link to retrieve your password. Please complete the small form with your personal details and your request will be sent to NXP. You will receive an answer with your password shortly.

Request secure documentation

Fill in your name, company and e-mail address and you will receive an e-mail with a username and password for this secure document.

First name*

Last name*

Company*

E-mail*

Comments

* required.

Datasheet confidential

Fill in your details and you will be contacted

First name*

Last name*

Company*

Country*

Telephone number*

E-mail*

* required.

Your e-mail address will only be used to send the datasheet and will not be used for any other purposes.

No datasheet available

Fill in your details to receive notification when the datasheet becomes available

First name*

Last name*

Company*

E-mail*

* required.

Your email address will only be used to send the datasheet and will not be used for any other purposes.