Microcontroller Technologies for Smart Society

Size: px
Start display at page:

Download "Microcontroller Technologies for Smart Society"

Transcription

1 Microcontroller Technologies for Smart Society Ritesh Tyagi, Sr. Director MCU Marketing Class ID: 1C02B Renesas Electronics America Inc.

2 Mr. Ritesh Tyagi Sr. Director Microcontroller Product Marketing Product Marketing and Segment Marketing Responsibilities for 8, 16 and 32-bit MCU families MSEE and MBA from University of Allahabad, India More than 15 years of experience in MCU/MPU products and applications MCU product definition and marketing launch Solution development for key segments like consumer, Medical industrial and communication Design experience for consumer electronics 2

3 Renesas Technology & Solution Portfolio 3

4 Smart Society Paradigm From sporadic to CONTINUOUS measurement Energy is limited INFORMATION OVERLOAD is an opportunity for PATTERN RECOGNITION Soon the amount of data in the world will QUADRUPLE every day -IBM PRIVACY is the new ATOMIC BOMB More THINGS connected to the internet than PEOPLE REALTIME is the new PRIME TIME Source: The conversation prism by Brian Solis & LESS3 4

5 Data is the Key Between now and 2020, the amount of digital information created and replicated in the world will grow to an almost inconceivable 35 trillion gigabytes, as all major forms of media -voice, TV, radio, print -complete the journey from analog to digital This explosive growth means that by 2020, our Digital Universe will be 44 times as big as it was in IDC data is the NEW OIL 5

6 Trends of CPU Performance MIPS MHz 40MHz 80MHz 200MHz 32-bit Dual-core bit 10MHz 16MHz 16/32-bit MHz 16-bit Year 6

7 Trends of Embedded Memory Capacity MB 10 1 x8 0.1 x x Year 7

8 Agenda Renesas innovative Microcontroller Technologies Process technology Architecture (Performance and Power consumption) Innovative integration Summary & Q/A By the end of this session you will be able to: Understand the Renesas microcontroller technologies and solutions driving the smart society concept 8

9 MONOS MONOS MONOS NOR NOR Tech. Embedded Flash Technology Roadmap Memory Structure NOR (Split-gate) 130nm 50MHz 40MHz 130nm Low power op. Low voltage ES Max. read freq. MP MONOS * RC03F (Former Renesas Tech.) 100MHz 90nm UX6LF (Former NECEL) Unified flash (RV40F) for RH850 & RX MHz 40nm * MONOS: Metal Oxide Nitride Oxide Silicon 100MHz 90nm Large capacity High speed Renesas MCUs are the first with 40 nm embedded flash! 9

10 World First 40nm Flash MCU Transistor / mm 2 40nm 320MHz CPU 120MHz Flash ~ 8MByte Lowest power consumption 55nm Other Option A 65nm Other Option B 90nm Previous generation Technology node Leading Flash Process for Next Generation Automotive & Industrial 10

11 No. 1 MCU Supplier in the World Firmly maintained the world s No.1 MCU market share of 27% in CY2011 Dominant position in automotive MCU unchanged with the M US$ CY2011 Generalpurpose MCU * world s No.1 share 2,147 WW MCU #1 27% share 8-bit MCU #1: 17% share 16-bit MCU #1: 27% share 32-bit MCU #1: 38% share WW Automotive MCU #1 42% share Deepened relationships with carmakers Collaborating in BCP Automotive MCU 2, ,055 1, Renesas Freescale Infineon Infineon Atmel STMicro Microchip TI Samsung Fujitsu NXP *General-purpose MCU: MCUs for applications excluding automobiles Source: IHS isuppli, Annual 2011 Semiconductor Market Share 11

12 8/16-bit 32-bit Microcontroller and Microprocessor Line-up DMIPS, Superscalar Automotive & Industrial, 65nm 600µA/MHz, 1.5µA standby 500 DMIPS, Low Power Automotive & Industrial, 90nm 600µA/MHz, 1.5µA standby 1200 DMIPS, Performance Automotive, 40nm 500µA/MHz, 35µA deep standby 165 DMIPS, FPU, DSC Industrial, 90nm 500µA/MHz, 1.6µA deep standby 165 DMIPS, FPU, DSC Industrial, 40nm 200µA/MHz, 0.3µA deep standby 25 DMIPS, Low Power Industrial & Automotive, 150nm 190µA/MHz, 0.3µA standby 10 DMIPS, Capacitive Touch Wide Industrial Format & LCDs Automotive, 130nm 350µA/MHz, 1µA standby 44 DMIPS, True Low Power Industrial & Automotive, 130nm 144µA/MHz, 0.2µA standby 12

13 8/16-bit 32-bit Microcontroller and Microprocessor Line-up DMIPS, Superscalar Automotive & Industrial, 65nm 600µA/MHz, 1.5µA standby 500 DMIPS, Low Power Automotive & Industrial, 90nm 600µA/MHz, 1.5µA standby 32-Bit High Performance, High Scalability & High Reliability 1200 DMIPS, Performance Automotive, 40nm 500µA/MHz, 35µA deep standby 165 DMIPS, FPU, DSC Industrial, 90nm 500µA/MHz, 1.6µA deep standby 165 DMIPS, FPU, DSC Industrial, 40nm 200µA/MHz, 0.3µA deep standby 25 DMIPS, Low Power Industrial & Automotive, 150nm 190µA/MHz, 0.3µA standby 10 DMIPS, Capacitive Touch Wide Industrial Format & LCDs Automotive, 130nm 350µA/MHz, 1µA standby 44 DMIPS, True Low Power Industrial & Automotive, 130nm 144µA/MHz, 0.2µA standby 13

14 High-end, 32-bit CPU Roadmap Succession of V850 and SH Architecture V850E2M +MPU G3M High Performance and Low power +FPU(IEEE ) +Branch prediction, +SIMD, +Multi-Core V850E1 * 5-stage V850E2 * 7-Stage * dual-issue V850E2R +FPU SH2A Good Performance and Low Power G3K * 5-stage SH2 E2S * 5-stage SH1 14

15 TICK TICK TICK TICK TICK TICK TICK TICK TICK RH850 Architecture (Example CPU Core and Pipeline) Example RH850 CPU 96 MHz CPU Core 2.x DMIPS/MHz 5-STAGE PIPELINE Flash Memory 32x 32bit General Purpose Registers Memory Protect Unit 32bit Floating Point Unit (Optional) 128 bit path Instruction F D E M W F D E F D F M E D F F W M E D D F W M E E D F W M M E D F W Q u e 1 Q u e 2 Inst Capable to Flash 120MHz Achieves : 32x MAC, 64b Result One Clock-Per-Instruction (CPI) HARVARD ARCHITECTURE SRAM 32 x 32 DIV or MULT, 32bit or 64bit Result Interrupt Control On-Chip Debug 39 bit path Operand (Data) Data 5 STAGES OF PIPELINE F = FETCH INSTRUCTION D = DECODE INSTRUCTION E = EXECUTE INSTRUCTION M = READ OR WRITE MEMORY W = WRITE BACK TO REGISTER 15

16 RH850 Architecture System Interface PIPELINE Buffer 128b 128b instruction INST 64 bits RH850 MCU RH850 BUFFER 32b DATA Bus Master 32 bits Internal Main Bus 1/ System interconnect SRAM, 120MHz Access Flash Memory, 120MHz Access 32 bits Bus Bridge Bus Bridge DMAC (bus master) Peripheral Busses to Spread Bandwidth Loading Communication (CSI, CAN, SCI,LIN, I2C, Flex Ray) Timers (TAUA, TAU J, OST, CMT) Analog GPIO System Control (DMA, E2P, ICU, LVD, RTC, WDG, CLKS) 16

17 RH850: 40nm MCU Series for Vehicle Control High Mid Low Powertrain 320MHz Dual core w/ Lockstep I/O CPU 240MHz Dual core w/ls I/O processor 160MHz Single core w/ls EV/HEV 240MHz Dual core w/ LS 240MHz Single core w/ LS High Reliability Platform Chassis & Safety 240MHz Dual core w/ LS x2 240MHz Single core w/ LS 160MHz Single Core Air Bag 240MHz Single core w/ LS 120/160MHz Single core Low Power 80MHz Single Core Low Power Body 120MHz Multi Core Low Cyclic Power 120MHz Single Core Low Power 80MHz Single Core Low Power Low Power Platform 17

18 RH850/F1x Line-up RH850/F1U Triple-Core 160MHz 8MB 6MB RH850/F1H Dual Core 120MHz 4MB 3MB RH850/F1M Single core 120MHz 2MB 1.5MB RH850/F1L Single core 80MHz 1MB 768KB 512KB 384KB 256KB QFP BGA 18

19 8/16-bit 32-bit Microcontroller and Microprocessor Line-up DMIPS, Superscalar Automotive & Industrial, 65nm 600µA/MHz, 1.5µA standby 500 DMIPS, Low Power 32-Bit High Performance DSP, FPU with High Integration 165 DMIPS, FPU, DSC Automotive & Industrial, 90nm 600µA/MHz, 1.5µA standby Industrial, 90nm 200µA/MHz, 0.3µA standby 1200 DMIPS, Performance Automotive, 40nm 500µA/MHz, 35µA deep standby 32-Bit High Efficiency Ultra Low Power and Low Voltage 165 DMIPS, FPU, DSC Industrial, 40nm 200µA/MHz, 0.3µA standby 25 DMIPS, Low Power Industrial & Automotive, 150nm 190µA/MHz, 0.3µA standby 10 DMIPS, Capacitive Touch Wide Industrial Format & LCDs Automotive, 130nm 350µA/MHz, 1µA standby 44 DMIPS, True Low Power Industrial & Automotive, 130nm 144µA/MHz, 0.2µA standby 19

20 64bits 64bits 64bits 64bits TICK TICK TICK TICK TICK TICK TICK TICK TICK RX Architecture CPU Core and Pipeline RX600 CISC CPU 100MHz CPU Core 1.65 DMIPS/MHz 9 x 32bit Control Registers 16 x 32bit General Purpose Registers Memory Protect Unit 32bit Floating Point Unit 16x16 or 32x32 MAC, 48bit or 80bit Result 32 x 32 DIV or MULT, 32bit or 64bit Result Interrupt Control On-Chip Debug 64bit path Instruction 32bit path Operand (Data) 5-STAGE PIPELINE F D E M W F E D F E D F M E D F F W M E D D F W M E ENHANCED HARVARD ARCHITECTURE 5 STAGES OF PIPELINE F = FETCH INSTRUCTION D = DECODE INSTRUCTION E = EXECUTE INSTRUCTION M = READ OR WRITE MEMORY W = WRITE BACK TO REGISTER E D F W M M E D F W Achieves One Clock-Per-Instruction (CPI) PRE-FETCH QUEUE (PFQ) Holds 4 to 32 Instructions for Slower Memory WRITE BUFFER Buffer Only for Writes For Slow Memory Inst Data Typically Flash Memory 64 RX Flash is 10 nsec, or 100 MHz zero-wait Memory Interface RX SRAM is also 10 nsec 32 Typically SRAM 20

21 Advanced Bus Architecture for High Data Throughput 21

22 RX vs. M4: Performance, Power & Peripherals 22

23 RX vs. M4: Performance, Power & Peripherals 23

24 RX600 Series: High Performance Roadmap 100 MHz, Single Cycle Flash 90 nm Process Up to 120 MHz 40 nm Process 24

25 RX200 Series: Low Power Roadmap ELC RX210 Comparator 50MHz 128BK-512KB ELC RX210 Comparator 50MHz 64KB- 256KB RX220 ELC RX210 Comparator 50MHz 1MB RX211 ELC Comparator ELC Comparator 32MHz 256KB 50MHz USB RX211 AES 24 bit ADC 50MHz 512KB 25

26 RX: Scalable Lineup 26

27 Next Generation RX 27

28 RX CPU Architecture Roadmap High Performance Low Power Small Code Size Higher Performance/MHz 4.0 Coremark/MHz 400MHz~ RX-v2 (240MHz~) Next RX-v1 (200MHz~) RX600, RX200, RX Coremark/MHz 0.68 Automark/MHz RX64x 3.30 Coremark/MHz 0.78 Automark/MHz Smaller gate count Smaller code size

29 RX Family Roadmap: Next Generation RX100 32MHz Lowest Power 32-bit platform in the Industry RX200 50MHz Low power, Up to 1MB Flash, 1.62 to 5.5v, 24-bit ADC, Security RX /120MHz Up to 4MB DSC, FPU, Connectivity RX MHz Up to 8MB Dual Ethernet, DSP, LCD 29

30 Industry Leading Low Power 32-bit Platform 32-bit 32-bit Performance Integration Eco-System Higher power consumption 8/16-bit <1$ price point Lowest Power Fast wake up Analog integration Scalability RX-L (32-bit) 1.56 DMIPS/MHz performance 155uA/DMIPS in active & 0.1uA in standby <$1 price point RX scalability Similar eco-system 30

31 RX-L: Lowest Power 32-bit Family Best in class Performance Best in class Power efficiency RX-L 1.56DMIPS/MHz RX-L 155µA/DMIPS Cortex M4 1.25DMIPS/MHz Company B Cortex M0 200µA/DMIPS Cortex M3 1.25DMIPS/MHz Company A Cortex M3 300µA/DMIPS Cortex M0 0.9DMIPS/MHz 31

32 RX100: Unique Differentiators Lowest Power 32-bit MCU Lowest DC off set, lowest power at 1 MHz, faster wake up (<5us), <155uA/DMIPS active, 0.1uA standby Memory & Package 8KB to 2MB Flash memory, Smaller 3x3mm QFN/WPP package for space critical applications Innovative integration ELC, Asynchronous Timers to reduce power consumption Safety features IEC60730 are critical for medical and Industrial Flexibility of layout PMC to offer maximum number of I/O, Semi- programmability of I/Os and reduction of external noise circuitry Bridge between Digital and Analog world 12-bit, 24-bit A/Ds, 10-bit D/As, Op-Amps, Comparators, Temp sense, Capacitive touch etc. 32

33 RX700: 40nm, 240MHz Industrial Applications High Performance 120MHz/240Mhz operation with 120MHz single cycle Flash Innovative Integration 4MB Flash, 512KB RAM, IEE1588 Dual Ethernet, Trusted ELC, 2MSPS ADC, Data Capture Unit, SDIO, MMC etc. Safety Features IEC60730, AES security, CRC, DOC, CSD etc. Flexibility of layout PMC to offer maximum number of I/O, Semi-programmability of I/Os and reduction of external noise circuitry, Event Link Controller Flexible package size 64 pin to 256 pin package variants Bridge between digital and Analog world 12-bit, 24-bit A/Ds, 10-bit D/As, Op-Amps, Comparators, Temp sense, etc. 33

34 8/16-bit 32-bit Microcontroller and Microprocessor Line-up DMIPS, Superscalar Automotive & Industrial, 65nm 600µA/MHz, 1.5µA standby 500 DMIPS, Low Power Automotive & Industrial, 90nm 600µA/MHz, 1.5µA standby 8/16-Bit True Low Power High Efficiency & Integration 1200 DMIPS, Performance Automotive, 40nm 500µA/MHz, 35µA deep standby 165 DMIPS, FPU, DSC Industrial, 90nm 200µA/MHz, 0.3µA standby 165 DMIPS, FPU, DSC Industrial, 40nm 200µA/MHz, 0.3µA standby 25 DMIPS, Low Power Industrial & Automotive, 150nm 190µA/MHz, 0.3µA standby 10 DMIPS, Capacitive Touch Wide Industrial Format & LCDs Automotive, 130nm 350µA/MHz, 1µA standby 44 DMIPS, True Low Power Industrial & Automotive, 130nm 144µA/MHz, 0.2µA standby 34

35 Low-end CPU Core Roadmap RL78 Renesas New Low end core performs up to 40.6DMIPS RL78/G14 core hits 44DMIPS with DSP instructions R8C Architecture R8C 10 DMIPS RL78 Architecture RL78/G14 core RL78 16bit, 44DMIPS 16bit, 40.6DMIPS MAC/MUL/DIV instructions 78K Architecture 78K0R 16bit, 31.2DMIPS Renesas New Low end core Compact 78K0 8bit, 2.9DMIPS 78K0S 8bit,1.1DMIPS 35

36 RL78 CPU Core Register Banks 0-3: 16-bit (Register Pair) MUL/MAC /DIV. ALU Bank 3 Bank 2 Bank 1 Bank 0 ES CS System Bus Interface Internal Buses Addr./ Data Bus Address Bus Control Signals 16-Bit Barrel Shifter Bit SP PC Interrupt Controller PSW RL78/G14 only 36

37 RL78 CPU Low Power Technique Automatically Adjusted Decode + Address operation MEM operation + Write 3-stage pipe line Fetch ID MEM Ex) HL ADD A, [HL] - Instruction : 1byte - Address Operation : - Data Operation : ADD Selected Path Fetch Instruction Decoder 1st- Byte 2nd- Byte Address Operator BR$ HL +Byte RAM Data Operator Add Bit Mul Write Current reduction! 25% 50% Decoder Operator Judge 1 or 2 instruction bytes 2nd-byte decoder turned on, only when the instruction is judged as 2 bytes instruction Only the operator which will be used in a instruction will be turned on. 66uA/MHz at basic operation (NOP) 37

38 Flash Operation Modes Flash modes realize an optimal power consumption HS (High-speed) mode: 32MHz (VDD = 2.7 to 5.5V) 16MHz (VDD = 2.4 to 5.5V) 2.1V (Active, Halt) & 1.8V(STOP) regulator MCU current 30% down 1.7mA 1.7mA 1.2mA 40% down 1.3mA 1.2mA 0.8mA LS (Low-speed) mode: 8MHz (VDD = 1.8 to 5.5V) 1.8V regulator HS 8MHz LS 8MHz HS 4MHz Regulator System LS 4MHz LV 4MHz LV (Low-voltage) mode: 4MHz (VDD = 1.6 to 5.5V) 1.8V regulator VDD VSS Reg RL78 CPU, Peripherals I/O Etc. 38

39 Power Consumption [ma] Power Consumption [ma] Active Current Advantage to Competition Typ. Value Max. Value Competition RL Operation Frequency [MHz] 12 RL78/G13 (VDD=2.0V/3.0V/5.0V) RL78/G13 10 (Basic Operation) A MCU-1 (VDD=3.6V) 8 Competition A MCU-1 (VDD=3V) 6 A MCU-1 (VDD=2.2V) A MCU-2 4 (VDD=3.0V) A MCU-3 (VDD=3.0V) 2 RL78 A MCU-3 (VDD=2.2V) Operation Frequency [MHz] RL78/G13 (VDD=2.0V/3.0V/5.0V) A MCU-1 (VDD=3.6V) A MCU-1 (VDD=3V) A MCU-1 (VDD=2.2V) A MCU-2 (VDD=3.0V) A MCU-3 (VDD=3.0V) A MCU-3 (VDD=2.2V) 39

40 Fast Wake-up is Good, but doesn t Always Have an Effect Fast wake-up is critical when active time is <30uS RL78 A MCU-3 1.2mA 25usec 2.0mA 42 mausec 22 mausec 72 mausec 72 mausec 150 mausec 204 mausec Better No good - Assuming current consumption during wake up is the same as during the Active - Active mode: 8MHz, 3V 1usec Wake up time Active Time Condition 10usec 30usec 35usec 100usec Simple Monitoring - Simple Status check (1 ADC, Port check etc.) - Increment Standard Timer for Real Time Real Application functions - Glass Break detector :35usec - Smock detector : 400usec - Health care applications : msec to sec - Remote controller : 100msec - UART bps = 1.04 msec - EEPROM storage ; msec order 40

41 GENERAL Product Category SEG LCD ASSP RL78: Roadmap F12 (Auto Body) I1A (Lighting) D1x (Auto Dashboard) Metering RF4CE L1x (USB, Enhanced Analog) L12 (LCD Standard) pin, 8-32 KB L1x (High Function) G13 (Standard) pin, KB G14 (High Function) pin, KB G1A (Enhanced Analog) pin, KB G12 (Lite) pin, 2-16 KB G1x (Entry) Sub 20 pins G1x (USB) Capacitive Touch Schedule is preliminary and subject to change ~ CY 2012 CY 2013~ 41

42 Scalability: RL78 Line-up (Over 300 products from 2KB to 512KB of flash memory) 42

43 RL78: Next Generation Concept 43

44 SMART15 Concept Smart Power Smart Analog SMART Integration Asynchronous Architecture Intelligent connection between Analogto-Analog & Analog-to-Digital) SMART Data Transfer Controller SMART Snooze (in combination with more peripherals) 16/24-bit ADC & 12-bit DAC SMART integration: RF, Touch, Eink Display, BAN Intelligent-Wakeup (Quick wakeup + lowest current) Fast Comp, Op-Amps Super SAFE: DOC, CAC, MPU 44

45 RL78/SMART15: Roadmap Concept Next Generation Process Application Specific 130um process ASSP Lighting Remote WCP Meter sub Ghz RL78 HMI Core GP with LCD G15 GP-Next ( pin) W/ Touch W/LCD General Purpose G12 G10 G13 G14 GP-L next pin 45

46 Summary What should engineers care about? 46

47 Questions? 47

48 Enabling The Smart Society Challenge: Digital revolution is fuelling the exponential demand to manage the society more smarter and in a eco friendly way. Solution: In order to address the complex requirements of the Smart Society a scalable microcontroller portfolio which is supported by a rich eco system would be the most important selection criteria. 48

49 Please Provide Your Feedback Please utilize the Guidebook application to leave feedback or Ask me for the paper feedback form for you to use 49

50 Renesas Electronics America Inc.

MCU R&D Strategies for the Smart Society

MCU R&D Strategies for the Smart Society MCU R&D Strategies for the Smart Society Renesas Electronics America Inc. Renesas Technology & Solution Portfolio 2 Smart Society Paradigm From sporadic to CONTINUOUS measurement Energy is limited INFORMATION

More information

RL78 Ultra Low Power MCU Lab

RL78 Ultra Low Power MCU Lab RL78 Ultra Low Power MCU Lab Renesas Electronics America Inc. Renesas Technology & Solution Portfolio 2 Renesas Technology & Solution Portfolio 3 Microcontroller and Microprocessor Line-up 2010 2012 32-bit

More information

RL78 Ultra Low Power MCU Lab

RL78 Ultra Low Power MCU Lab RL78 Ultra Low Power MCU Lab Michael Clodfelter Sr. Staff Application Engineer Class ID: CL07I Renesas Electronics America Inc. Mike Clodfelter Sr. Staff Application Engineer for Renesas Electronics 16bit

More information

Optimizing RX Performance

Optimizing RX Performance Optimizing RX Performance Renesas Electronics America Inc. Renesas Technology & Solution Portfolio 2 Microcontroller and Microprocessor Line-up 2010 2012 32-bit 1200 DMIPS, Superscalar Automotive & Industrial,

More information

Low Power Design Michael Thomas, Applications Engineer

Low Power Design Michael Thomas, Applications Engineer Low Power Design Michael Thomas, Applications Engineer Class ID: CL01B Renesas Electronics America Inc. Michael Thomas (Applications Engineer) 5 years at Renesas Electronics RX200 Technical Support RTOS,

More information

Low Power Design. Renesas Electronics America Inc Renesas Electronics America Inc. All rights reserved.

Low Power Design. Renesas Electronics America Inc Renesas Electronics America Inc. All rights reserved. Low Power Design Renesas Electronics America Inc. Renesas Technology & Solution Portfolio 2 Microcontroller and Microprocessor Line-up 2010 2012 32-bit 8/16-bit 1200 DMIPS, Superscalar Automotive & Industrial,

More information

STM8L and STM32 L1 series. Ultra-low-power platform

STM8L and STM32 L1 series. Ultra-low-power platform STM8L and STM32 L1 series Ultra-low-power platform 8-bit and 32-bit MCU families 2 Flash (bytes) 2 M 1 M 128 K 16 K 8-bit Core STM8S Mainstream STM8A F and STM8AL Automotive STM8L Ultra-low-power 32-bit

More information

FOR IOT PRODUCT DEVELOPMENT

FOR IOT PRODUCT DEVELOPMENT FOR IOT PRODUCT DEVELOPMENT TRONSHOW IEEE2050-2018 STANDARD 2018/12/12 ATSUSHI HASEGAWA INDUSTRIAL SOLUTION BUSINESS UNIT RENESAS ELECTRONICS CORPORATION SOLUTION OFFERINGS FOR FOCUS DOMAINS To develop

More information

Course Introduction. Purpose: Objectives: Content: Learning Time:

Course Introduction. Purpose: Objectives: Content: Learning Time: Course Introduction Purpose: This course provides an overview of the Renesas SuperH series of 32-bit RISC processors, especially the microcontrollers in the SH-2 and SH-2A series Objectives: Learn the

More information

A11L: 78K0R Low Power MCU

A11L: 78K0R Low Power MCU A11L: 78K0R Low Power MCU Hands-On Lab Renesas Electronics America Inc. Bob Proctor Staff Engineer 12 & 13 October 2010 Version 1.0 1 Bob Proctor Staff Applications Engineer in Durham, NC 3-years at Renesas

More information

RL78 Project Configuration Tips

RL78 Project Configuration Tips RL78 Project Configuration Tips Renesas Electronics America Inc. Renesas Technology & Solution Portfolio 2 Microcontroller and Microprocessor Line-up 2010 2012 32-bit 8/16-bit 1200 DMIPS, Superscalar Automotive

More information

Welcome to this Renesas Interactive course which covers migration from the the V850 Jx3 series of 32bit MCUs to the Jx4 Series.

Welcome to this Renesas Interactive course which covers migration from the the V850 Jx3 series of 32bit MCUs to the Jx4 Series. Welcome to this Renesas Interactive course which covers migration from the the V850 Jx3 series of 32bit MCUs to the Jx4 Series. The J Series provides a combination of high-performance processing power

More information

Incorporating a Capacitive Touch Interface into Your Design

Incorporating a Capacitive Touch Interface into Your Design Incorporating a Capacitive Touch Interface into Your Design Renesas Electronics America Inc. Renesas Technology & Solution Portfolio 2 Microcontroller and Microprocessor Line-up 2010 2012 32-bit 8/16-bit

More information

Capacitive Touch Based User Interfaces and Hardware-based Solutions

Capacitive Touch Based User Interfaces and Hardware-based Solutions Capacitive Touch Based User Interfaces and Hardware-based Solutions Renesas Electronics America Inc. Renesas Technology & Solution Portfolio 2 Microcontroller and Microprocessor Line-up 2010 2013 32-bit

More information

Implementing Bootloaders on Renesas MCUs

Implementing Bootloaders on Renesas MCUs Implementing Bootloaders on Renesas MCUs Brandon Hussey, Applications Engineer Class ID: CL09I Renesas Electronics America Inc. Brandon Hussey Applications Engineer RX support Flash API Virtual EEPROM

More information

Introducing STM32 L0x Series. April

Introducing STM32 L0x Series. April Introducing STM32 L0x Series April 2014 www.emcu.it 20- to 80pins 20- to 100pins 48- to 144pins Memory size (Bytes) ST s Ultra-low-power Continuum (1/2) 2 512K 256K 192K STM32L0 Cortex TM -M0+ STM32L1

More information

ARM Cortex core microcontrollers 3. Cortex-M0, M4, M7

ARM Cortex core microcontrollers 3. Cortex-M0, M4, M7 ARM Cortex core microcontrollers 3. Cortex-M0, M4, M7 Scherer Balázs Budapest University of Technology and Economics Department of Measurement and Information Systems BME-MIT 2018 Trends of 32-bit microcontrollers

More information

New STM32 F7 Series. World s 1 st to market, ARM Cortex -M7 based 32-bit MCU

New STM32 F7 Series. World s 1 st to market, ARM Cortex -M7 based 32-bit MCU New STM32 F7 Series World s 1 st to market, ARM Cortex -M7 based 32-bit MCU 7 Keys of STM32 F7 series 2 1 2 3 4 5 6 7 First. ST is first to sample a fully functional Cortex-M7 based 32-bit MCU : STM32

More information

An Introduction to e 2 studio

An Introduction to e 2 studio An Introduction to e 2 studio Axel Wolf, Tools Marketing Manager Class ID: 3C15B Renesas Electronics America Inc. Axel Wolf Product Marketing for Development Tools REA Marketing Unit, MCU Products Based

More information

AVR XMEGA Product Line Introduction AVR XMEGA TM. Product Introduction.

AVR XMEGA Product Line Introduction AVR XMEGA TM. Product Introduction. AVR XMEGA TM Product Introduction 32-bit AVR UC3 AVR Flash Microcontrollers The highest performance AVR in the world 8/16-bit AVR XMEGA Peripheral Performance 8-bit megaavr The world s most successful

More information

STM32 Cortex-M3 STM32F STM32L STM32W

STM32 Cortex-M3 STM32F STM32L STM32W STM32 Cortex-M3 STM32F STM32L STM32W 01 01 STM32 Cortex-M3 introduction to family 1/2 STM32F combine high performance with first-class peripherals and lowpower, low-voltage operation. They offer the maximum

More information

STM32 F4 Series Cortex M4 http://www.emcu.it/stm32f4xx/stm32f4xx.html www.emcu.it STM32 F4 Main common features Cortex -M4 (DSP + FPU) STM32F429/439 180 MHz 1 to 2-MB Flash 256-KB SRAM STM32F427/437 180

More information

RZ Embedded Microprocessors

RZ Embedded Microprocessors Next Generation HMI Solutions RZ Embedded Microprocessors www.renesas.eu 2013.11 The RZ Family Embedded Microprocessors The RZ is a new family of embedded microprocessors that retains the ease-of-use of

More information

AT-501 Cortex-A5 System On Module Product Brief

AT-501 Cortex-A5 System On Module Product Brief AT-501 Cortex-A5 System On Module Product Brief 1. Scope The following document provides a brief description of the AT-501 System on Module (SOM) its features and ordering options. For more details please

More information

Renesas Synergy MCUs Build a Foundation for Groundbreaking Integrated Embedded Platform Development

Renesas Synergy MCUs Build a Foundation for Groundbreaking Integrated Embedded Platform Development Renesas Synergy MCUs Build a Foundation for Groundbreaking Integrated Embedded Platform Development New Family of Microcontrollers Combine Scalability and Power Efficiency with Extensive Peripheral Capabilities

More information

Rapid RX600 System Development Using the RPDL and PDG

Rapid RX600 System Development Using the RPDL and PDG ID 320L: Rapid RX600 System Development Using the RPDL and PDG Renesas Electronics America Inc. Brandon Hussey Applications Engineer 12 & 13 October 2010 Version: 1.0 Welcome to the Rapid Development for

More information

Embedding Audio into your RX Application

Embedding Audio into your RX Application Embedding Audio into your RX Application Renesas Electronics America Inc. Renesas Technology & Solution Portfolio 2 Microcontroller and Microprocessor Line-up 2010 2013 32-bit 8/16-bit 1200 DMIPS, Superscalar

More information

Hello and welcome to this Renesas Interactive module that provides an architectural overview of the RX Core.

Hello and welcome to this Renesas Interactive module that provides an architectural overview of the RX Core. Hello and welcome to this Renesas Interactive module that provides an architectural overview of the RX Core. 1 The purpose of this Renesas Interactive module is to introduce the RX architecture and key

More information

ID 220L: Hands-on Embedded Ethernet Design with an Open Source TCP/IP Stack

ID 220L: Hands-on Embedded Ethernet Design with an Open Source TCP/IP Stack ID 220L: Hands-on Embedded Ethernet Design with an Open Source TCP/IP Stack Renesas Electronics America Inc. Fatih Peksenar Senior Manager, Applications Engineering 12 October 2010 Version: 1.2 Embedded

More information

Using Software Building Blocks for Faster Time to Market

Using Software Building Blocks for Faster Time to Market Using Software Building Blocks for Faster Time to Market Brandon Hussey, Applications Engineer Class ID: 3L09B Renesas Electronics America Inc. Brandon Hussey Applications Engineer RX support Flash API

More information

Getting Started With the Stellaris EK-LM4F120XL LaunchPad Workshop. Version 1.05

Getting Started With the Stellaris EK-LM4F120XL LaunchPad Workshop. Version 1.05 Getting Started With the Stellaris EK-LM4F120XL LaunchPad Workshop Version 1.05 Agenda Introduction to ARM Cortex Cortex -M4F M4F and Peripherals Code Composer Studio Introduction to StellarisWare, I iti

More information

STM32F3. Cuauhtémoc Carbajal ITESM CEM 12/08/2013

STM32F3. Cuauhtémoc Carbajal ITESM CEM 12/08/2013 STM32F3 Cuauhtémoc Carbajal ITESM CEM 12/08/2013 1 STM32 Portfolio 2 32 bit/dsc Applications A typical embedded system with both control and signal processing requirements Digital Signal Controllers efficient

More information

Creating Energy Efficient Computers Marius Grannæs

Creating Energy Efficient Computers Marius Grannæs www.silabs.com Creating Energy Efficient Computers Marius Grannæs Microcontrollers & Radios EFM32 Gecko Microcontrollers... the world s most energy friendly microcontrollers EFR Draco Radios... the world

More information

Hercules ARM Cortex -R4 System Architecture. Processor Overview

Hercules ARM Cortex -R4 System Architecture. Processor Overview Hercules ARM Cortex -R4 System Architecture Processor Overview What is Hercules? TI s 32-bit ARM Cortex -R4/R5 MCU family for Industrial, Automotive, and Transportation Safety Hardware Safety Features

More information

T he key to building a presence in a new market

T he key to building a presence in a new market Renesas Synergy MCUs Build Foundation for Groundbreaking Integrated Hardware/ Software Platform New family of microcontrollers combines scalability, power efficiency with extensive peripheral capabilities

More information

New STM32WB Series MCU with Built-in BLE 5 and IEEE

New STM32WB Series MCU with Built-in BLE 5 and IEEE New STM32WB Series MCU with Built-in BLE 5 and IEEE 802.15.4 Make the Choice of STM32WB Series The 7 keys points to make the difference 2 Open 2.4 GHz radio Multi-protocol Dual-core / Full control Ultra-low-power

More information

STM32 F0 Value Line. Entry-level MCUs

STM32 F0 Value Line. Entry-level MCUs STM32 F0 Value Line Entry-level MCUs Key Messages 2 STM32 F0: Is the Cortex -M0 core generated with ST s STM32 DNA, for cost sensitive designs. The STM32 F0 is benefiting of STM32 DNA, providing the essential

More information

Remote Keyless Entry In a Body Controller Unit Application

Remote Keyless Entry In a Body Controller Unit Application 38 Petr Cholasta Remote Keyless Entry In a Body Controller Unit Application Many of us know this situation. When we leave the car, with a single click of a remote control we lock and secure it until we

More information

ID 730L: Getting Started with Multimedia Programming on Linux on SH7724

ID 730L: Getting Started with Multimedia Programming on Linux on SH7724 ID 730L: Getting Started with Multimedia Programming on Linux on SH7724 Global Edge Ian Carvalho Architect 14 October 2010 Version 1.0 Mr. Ian Carvalho System Architect, Global Edge Software Ltd. Responsible

More information

RH850 & RL78 - Next Generation of Automotive Microcontrollers

RH850 & RL78 - Next Generation of Automotive Microcontrollers RH850 & RL78 - Next Generation of Automotive Microcontrollers Paul Kanan, Senior Manager, Product Marketing Class ID: 1C06B Renesas Electronics America Inc. Paul Kanan: Senior Manager, Product Marketing

More information

STM32G0 MCU Series Efficiency at its Best

STM32G0 MCU Series Efficiency at its Best STM32G0 MCU Series Efficiency at its Best Key Messages of STM32G0 Series 2 2 3 Efficient Arm Cortex -M0+ at 64 MHz Compact cost: maximum I/Os count Best RAM/Flash Ratio Smallest possible package down to

More information

NXP Unveils Its First ARM Cortex -M4 Based Controller Family

NXP Unveils Its First ARM Cortex -M4 Based Controller Family NXP s LPC4300 MCU with Coprocessor: NXP Unveils Its First ARM Cortex -M4 Based Controller Family By Frank Riemenschneider, Editor, Electronik Magazine At the Electronica trade show last fall in Munich,

More information

ID 321L: KPIT GNU compiler plug-ins for HEW / KPIT Eclipse IDE

ID 321L: KPIT GNU compiler plug-ins for HEW / KPIT Eclipse IDE ID 321L: KPIT GNU compiler plug-ins for HEW / KPIT Eclipse IDE Matt Newsome, Principal Engineer, Software Tools, Renesas Electronics Europe, UK Kaushik Phatak, Tech Lead, KPIT Cummins Infosystems, Pune,

More information

Designing with External Flash Memory on Renesas Platforms

Designing with External Flash Memory on Renesas Platforms Designing with External Flash Memory on Renesas Platforms Douglas Crane, Segment Manager Micron Technology Class ID: CL23A Renesas Electronics America Inc. Douglas Crane Doug is a 27 year veteran in the

More information

SAM A5 ARM Cortex - A5 MPUs

SAM A5 ARM Cortex - A5 MPUs SAM A5 ARM Cortex - A5 MPUs Industry s lowest-power MPUs Ideal for secure industry, IoT, wearable applications Operating at 600MHz/945DMIPS with low power consumption, the SAMA5 ARM Cortex-A5 based MPU

More information

Software Development with an Open Source RTOS

Software Development with an Open Source RTOS Software Development with an Open Source RTOS Fatih Peksenar - Sr. Manager, Application Engineering Class ID: 9L02I Renesas Electronics America Inc. Mr. Fatih Peksenar Manager, Applications Engineering

More information

ECE 471 Embedded Systems Lecture 2

ECE 471 Embedded Systems Lecture 2 ECE 471 Embedded Systems Lecture 2 Vince Weaver http://www.eece.maine.edu/~vweaver vincent.weaver@maine.edu 3 September 2015 Announcements HW#1 will be posted today, due next Thursday. I will send out

More information

ID 025C: An Introduction to the OSEK Operating System

ID 025C: An Introduction to the OSEK Operating System ID 025C: An Introduction to the OSEK Operating System Version 1.0 1 James Dickie Product Manager for Embedded Software Real-time operating systems AUTOSAR software components Software logic analyzer Experience:

More information

ELC4438: Embedded System Design Embedded Processor

ELC4438: Embedded System Design Embedded Processor ELC4438: Embedded System Design Embedded Processor Liang Dong Electrical and Computer Engineering Baylor University 1. Processor Architecture General PC Von Neumann Architecture a.k.a. Princeton Architecture

More information

AVR XMEGA TM. A New Reference for 8/16-bit Microcontrollers. Ingar Fredriksen AVR Product Marketing Director

AVR XMEGA TM. A New Reference for 8/16-bit Microcontrollers. Ingar Fredriksen AVR Product Marketing Director AVR XMEGA TM A New Reference for 8/16-bit Microcontrollers Ingar Fredriksen AVR Product Marketing Director Kristian Saether AVR Product Marketing Manager Atmel AVR Success Through Innovation First Flash

More information

STM32 F-2 series High-performance Cortex-M3 MCUs

STM32 F-2 series High-performance Cortex-M3 MCUs STM32 F-2 series High-performance Cortex-M3 MCUs STMicroelectronics 32 bit microcontrollers, 120 MHz/150 DMIPS with ART Accelerator TM and advanced peripherals www.st.com/stm32 STM32 F-2 series The STM32

More information

ID 434L: Incorporating a Capacitive Touch Interface into Your Design

ID 434L: Incorporating a Capacitive Touch Interface into Your Design ID 434L: Incorporating a Capacitive Touch Interface into Your Design Renesas Electronics America Inc. Jim Page Senior Applications Engineer 12 & 13 October 2010 Version: 1.1 1 Jim Page Senior Applications

More information

TEVATRON TECHNOLOGIES PVT. LTD Embedded! Robotics! IoT! VLSI Design! Projects! Technical Consultancy! Education! STEM! Software!

TEVATRON TECHNOLOGIES PVT. LTD Embedded! Robotics! IoT! VLSI Design! Projects! Technical Consultancy! Education! STEM! Software! Summer Training 2016 Advance Embedded Systems Fast track of AVR and detailed working on STM32 ARM Processor with RTOS- Real Time Operating Systems Covering 1. Hands on Topics and Sessions Covered in Summer

More information

EFM32....the world s most energy friendly microcontrollers

EFM32....the world s most energy friendly microcontrollers EFM32...the world s most energy friendly microcontrollers Energy Micro s Mission EFM32 Gecko Microcontrollers... the world s most energy friendly microcontrollers EFR Draco Radios... the world s most energy

More information

ID 020C: Hardware-in-Loop: System Testing Without the System

ID 020C: Hardware-in-Loop: System Testing Without the System ID 020C: Hardware-in-Loop: System Testing Without the System Applied Dynamics International Marcella Haghgooie Sr. Field Applications Engineer 13 October 2010 Version: 1.2 Marcella Haghgooie Sr. Field

More information

STM32F429 Overview. Steve Miller STMicroelectronics, MMS Applications Team October 26 th 2015

STM32F429 Overview. Steve Miller STMicroelectronics, MMS Applications Team October 26 th 2015 STM32F429 Overview Steve Miller STMicroelectronics, MMS Applications Team October 26 th 2015 Today - STM32 portfolio positioning 2 More than 30 product lines High-performance 398 CoreMark 120 MHz 150 DMIPS

More information

CAN In A Day 2L01I. Renesas Electronics America Inc Renesas Electronics America Inc. All rights reserved.

CAN In A Day 2L01I. Renesas Electronics America Inc Renesas Electronics America Inc. All rights reserved. CAN In A Day 2L01I Renesas Electronics America Inc. Renesas Technology & Solution Portfolio 2 Microcontroller and Microprocessor Line-up 2010 2012 32-bit 8/16-bit 1200 DMIPS, Superscalar Automotive & Industrial,

More information

Intelop. *As new IP blocks become available, please contact the factory for the latest updated info.

Intelop. *As new IP blocks become available, please contact the factory for the latest updated info. A FPGA based development platform as part of an EDK is available to target intelop provided IPs or other standard IPs. The platform with Virtex-4 FX12 Evaluation Kit provides a complete hardware environment

More information

STM32L4+ MCU series Excellence in ultra-low-power with more performance

STM32L4+ MCU series Excellence in ultra-low-power with more performance STM32L4+ MCU series Excellence in ultra-low-power with more performance Key messages of STM32 L4+ series 2 + More performance and still ULP leader ST has stretched the STM32L4 architecture to reach 150

More information

MICROPROCESSOR BASED SYSTEM DESIGN

MICROPROCESSOR BASED SYSTEM DESIGN MICROPROCESSOR BASED SYSTEM DESIGN Lecture 5 Xmega 128 B1: Architecture MUHAMMAD AMIR YOUSAF VON NEUMAN ARCHITECTURE CPU Memory Execution unit ALU Registers Both data and instructions at the same system

More information

New STM32WB Series MCU with built-in Bluetooth 5 and IEEE

New STM32WB Series MCU with built-in Bluetooth 5 and IEEE New STM32WB Series MCU with built-in Bluetooth 5 and IEEE 802.15.4 Make the Choice of STM32WB Series The 7 keys points to make the difference 2 Open 2.4 GHz radio Multi-protocol Dual-core / Full control

More information

Cypress PSoC 6 Microcontrollers

Cypress PSoC 6 Microcontrollers Cypress PSoC 6 Microcontrollers Purpose-Built for the Internet of Things WWW.CYPRESS.COM/PSOC6 Unmatched Solutions for the Internet of Things EMBEDDED IN TOMORROW The IoT is exploding, with more than 30

More information

Introducing: New Low-Cost & Low Pin Count PIC Microcontrollers for the 8-, 16- & 32-bit Markets

Introducing: New Low-Cost & Low Pin Count PIC Microcontrollers for the 8-, 16- & 32-bit Markets Introducing: New Low-Cost & Low Pin Count PIC Microcontrollers for the 8-, 16- & 32-bit Markets PIC MCU and dspic DSC Family Portfolio 2 New Low Cost, Low Pin-Count 8-, 16-, 32-bit Offerings 3 What Are

More information

NXP Cortex-M0 LPC1100L Design with a Cortex-M0 in a DIP package ASEE Tech Session. Sergio Scaglia (NXP Semiconductors) August 2012

NXP Cortex-M0 LPC1100L Design with a Cortex-M0 in a DIP package ASEE Tech Session. Sergio Scaglia (NXP Semiconductors) August 2012 NXP Cortex-M0 LPC1100L Design with a Cortex-M0 in a DIP package ASEE Tech Session Sergio Scaglia (NXP Semiconductors) August 2012 Agenda NXP Microcontroller Portfolio Cortex M0 LPC1100L Family Support/Resources

More information

Xynergy It really makes the difference!

Xynergy It really makes the difference! Xynergy It really makes the difference! STM32F217 meets XILINX Spartan-6 Why Xynergy? Very easy: There is a clear Synergy achieved by combining the last generation of the most popular ARM Cortex-M3 implementation

More information

CC05B RX Project Configuration Tips

CC05B RX Project Configuration Tips CC05B RX Project Configuration Tips John Breitenbach, Senior Engineering Manager Class ID: CC05B Renesas Electronics America Inc. John Breitenbach Senior Engineering Manager Manage apps engineering team

More information

2-Oct-13. the world s most energy friendly microcontrollers and radios

2-Oct-13.  the world s most energy friendly microcontrollers and radios 1 2 3 EFM32 4 5 LESENSE Low Energy Sensor Interface Autonomous sensing in Deep Sleep LESENSE with central control logic ACMP for sensor input DAC for reference generation Measure up to 16 sensors Inductive

More information

STM32L4 System operating modes

STM32L4 System operating modes STM32L4 System operating modes Typical application profile 2 Tperiod Tperiod I DD Process IRQ ACTIVE IRQ ACTIVE OFF STARTUP INITIALIZATION TASKS Tasks TASKS INACTIVE INACTIVE INACTIVE Application phases:

More information

SH-Mobile3: Application Processor for 3G Cellular Phones on a Low-Power SoC Design Platform

SH-Mobile3: Application Processor for 3G Cellular Phones on a Low-Power SoC Design Platform SH-Mobile3: Application Processor for 3G Cellular Phones on a Low-Power SoC Design Platform H. Mizuno, N. Irie, K. Uchiyama, Y. Yanagisawa 1, S. Yoshioka 1, I. Kawasaki 1, and T. Hattori 2 Hitachi Ltd.,

More information

WHICH MICRO? What does MCU needs to do in my system? What are the tasks? Dr. Adriana Becker-Gomez

WHICH MICRO? What does MCU needs to do in my system? What are the tasks? Dr. Adriana Becker-Gomez 1 WHICH MICRO? What does MCU needs to do in my system? What are the tasks? Dr. Adriana Becker-Gomez Email: axbeec@rit.edu Office: 9-3477 2 Specs System design: High level definition (functional specs)

More information

High-Performance 32-bit

High-Performance 32-bit High-Performance 32-bit Microcontroller with Built-in 11-Channel Serial Interface and Two High-Speed A/D Converter Units A 32-bit microcontroller optimal for digital home appliances that integrates various

More information

Ultra Low Power Microcontroller - Design Criteria - June 2017

Ultra Low Power Microcontroller - Design Criteria - June 2017 Ultra Low Power Microcontroller - Design Criteria - June 2017 Agenda 1. Low power technology features 2. Intelligent Clock Generator 3. Short wake-up times 4. Intelligent memory access 5. Use case scenario

More information

STM32F7 series ARM Cortex -M7 powered Releasing your creativity

STM32F7 series ARM Cortex -M7 powered Releasing your creativity STM32F7 series ARM Cortex -M7 powered Releasing your creativity STM32 high performance Very high performance 32-bit MCU with DSP and FPU The STM32F7 with its ARM Cortex -M7 core is the smartest MCU and

More information

STM8 platform 8-bit microcontrollers

STM8 platform 8-bit microcontrollers STM8 platform 8-bit microcontrollers We shoot for better performance & price MCD market vision 2 Flash size (bytes) 1 MB High performance and ultra-low-power STM32F (2.0 to 3.6 V) STM32L Ultra-low-power

More information

1. Microprocessor Architectures. 1.1 Intel 1.2 Motorola

1. Microprocessor Architectures. 1.1 Intel 1.2 Motorola 1. Microprocessor Architectures 1.1 Intel 1.2 Motorola 1.1 Intel The Early Intel Microprocessors The first microprocessor to appear in the market was the Intel 4004, a 4-bit data bus device. This device

More information

THE LPC84X MCU FAMILY A MULTI-TESTER TOOL OFFERING FEATURES FOR YOUR NEXT IOT DESIGN

THE LPC84X MCU FAMILY A MULTI-TESTER TOOL OFFERING FEATURES FOR YOUR NEXT IOT DESIGN THE LPC84X MCU FAMILY A MULTI-TESTER TOOL OFFERING FEATURES FOR YOUR NEXT IOT DESIGN KEVIN TOWNSEND (MICROBUILDER) BRENDON SLADE (NXP) Agenda Part I Overview of the LPC84x Multi-Tester Swiss army knife

More information

Interconnects, Memory, GPIO

Interconnects, Memory, GPIO Interconnects, Memory, GPIO Dr. Francesco Conti f.conti@unibo.it Slide contributions adapted from STMicroelectronics and from Dr. Michele Magno, others Processor vs. MCU Pipeline Harvard architecture Separate

More information

Hello, and welcome to this presentation of the STM32L4 power controller. The STM32L4 s power management functions and all power modes will also be

Hello, and welcome to this presentation of the STM32L4 power controller. The STM32L4 s power management functions and all power modes will also be Hello, and welcome to this presentation of the STM32L4 power controller. The STM32L4 s power management functions and all power modes will also be covered in this presentation. 1 Please note that this

More information

NXP Microcontrollers Selection Guide

NXP Microcontrollers Selection Guide November 2012 NXP Microcontrollers Selection Guide NXP LPC family of microcontrollers is changing the landscape for embedded applications. Featuring award-winning innovations in connectivity, flexibility,

More information

Kinetis EA Ultra-Reliable Microcontrollers. Automotive and Industrial Applications

Kinetis EA Ultra-Reliable Microcontrollers. Automotive and Industrial Applications Kinetis EA Ultra-Reliable Microcontrollers Automotive and Industrial Applications Agenda Introducing Kinetis EA Proposition Value Features Overview Application Examples Enablement Useful Links 1 Kinetis

More information

CM5000 DATASHEET v0.1

CM5000 DATASHEET v0.1 CM5000 DATASHEET - 2 - http://www.advanticsys.com/cm5000.html v0.1 Table of Contents 1. INTRODUCTION... 5 2. HARDWARE CHARACTERISTICS... 6 2.1 CM5000 DIAGRAMS... 6 2.2 MICROCONTROLLER DESCRIPTION - TI

More information

Introduction to Sitara AM437x Processors

Introduction to Sitara AM437x Processors Introduction to Sitara AM437x Processors AM437x: Highly integrated, scalable platform with enhanced industrial communications and security AM4376 AM4378 Software Key Features AM4372 AM4377 High-performance

More information

The Software of Things T Y S O N T U T T L E C E O S I L I C O N L A B S A S P E N C O R E C E O S U M M I T S H E N Z H E N 8 N O V E M B E R 2018

The Software of Things T Y S O N T U T T L E C E O S I L I C O N L A B S A S P E N C O R E C E O S U M M I T S H E N Z H E N 8 N O V E M B E R 2018 The Software of Things T Y S O N T U T T L E C E O S I L I C O N L A B S A S P E N C O R E C E O S U M M I T S H E N Z H E N 8 N O V E M B E R 2018 Most technology we ve built so far was for the Internet

More information

Growth outside Cell Phone Applications

Growth outside Cell Phone Applications ARM Introduction Growth outside Cell Phone Applications ~1B units shipped into non-mobile applications Embedded segment now accounts for 13% of ARM shipments Automotive, microcontroller and smartcards

More information

XMEGA Series Of AVR Processor. Presented by: Manisha Biyani ( ) Shashank Bolia (

XMEGA Series Of AVR Processor. Presented by: Manisha Biyani ( ) Shashank Bolia ( XMEGA Series Of AVR Processor Presented by: Manisha Biyani (200601217) Shashank Bolia (200601200 Existing Microcontrollers Problems with 8/16 bit microcontrollers: Old and inefficient architecture. Most

More information

Let s first take a look at power consumption and its relationship to voltage and frequency. The equation for power consumption of the MCU as it

Let s first take a look at power consumption and its relationship to voltage and frequency. The equation for power consumption of the MCU as it 1 The C8051F91x/0x product family is designed to dramatically increase battery lifetime which is the number one requirement for most battery powered applications. The C8051F91x has the industry s lowest

More information

突破 8-/16-/32- 位和 DSP 界限的 ARM MCU 解决方案

突破 8-/16-/32- 位和 DSP 界限的 ARM MCU 解决方案 突破 8-/16-/32- 位和 DSP 界限的 ARM MCU 解决方案 BL Microcontrollers BU HPMS Jul 28 th, 2010 NXP Semiconductors NXP Semiconductors provides High Performance Mixed Signal and Standard Product solutions that leverage

More information

Introduction. Purpose. Objectives. Content. Learning Time

Introduction. Purpose. Objectives. Content. Learning Time Introduction Purpose This course provides an introduction to the R8C Family of microcontrollers (MCUs) designed and offered by Renesas Technology Corp. for cost-sensitive 8-bit embedded applications Objectives

More information

Universität Dortmund. ARM Architecture

Universität Dortmund. ARM Architecture ARM Architecture The RISC Philosophy Original RISC design (e.g. MIPS) aims for high performance through o reduced number of instruction classes o large general-purpose register set o load-store architecture

More information

ELC4438: Embedded System Design ARM Embedded Processor

ELC4438: Embedded System Design ARM Embedded Processor ELC4438: Embedded System Design ARM Embedded Processor Liang Dong Electrical and Computer Engineering Baylor University Intro to ARM Embedded Processor (UK 1990) Advanced RISC Machines (ARM) Holding Produce

More information

ATmega128. Introduction

ATmega128. Introduction ATmega128 Introduction AVR Microcontroller 8-bit microcontroller released in 1997 by Atmel which was founded in 1984. The AVR architecture was conceived by two students (Alf-Egil Bogen, Vergard-Wollen)

More information

Copyright 2016 Xilinx

Copyright 2016 Xilinx Zynq Architecture Zynq Vivado 2015.4 Version This material exempt per Department of Commerce license exception TSU Objectives After completing this module, you will be able to: Identify the basic building

More information

Microcontrollers. Claude Dardanne Executive Vice President, General Manager, Microcontrollers, Memory & Secure MCU Group.

Microcontrollers. Claude Dardanne Executive Vice President, General Manager, Microcontrollers, Memory & Secure MCU Group. Microcontrollers Claude Dardanne Executive Vice President, General Manager, Microcontrollers, Memory & Secure MCU Group Francois Guibert Executive Vice President, President, Greater China and South Asia

More information

Designing with STM32F2x & STM32F4

Designing with STM32F2x & STM32F4 Designing with STM32F2x & STM32F4 Course Description Designing with STM32F2x & STM32F4 is a 3 days ST official course. The course provides all necessary theoretical and practical know-how for start developing

More information

Hello, and welcome to this presentation of the STM32L4 System Configuration Controller.

Hello, and welcome to this presentation of the STM32L4 System Configuration Controller. Hello, and welcome to this presentation of the STM32L4 System Configuration Controller. 1 Please note that this presentation has been written for STM32L47x/48x devices. The key differences with other devices

More information

The ARM Cortex-M0 Processor Architecture Part-1

The ARM Cortex-M0 Processor Architecture Part-1 The ARM Cortex-M0 Processor Architecture Part-1 1 Module Syllabus ARM Architectures and Processors What is ARM Architecture ARM Processors Families ARM Cortex-M Series Family Cortex-M0 Processor ARM Processor

More information

Freescale i.mx Applications Processors based on ARM Technology Connected Multimedia

Freescale i.mx Applications Processors based on ARM Technology Connected Multimedia Freescale i.mx Applications Processors based on ARM Technology Connected Multimedia 2010 ARM Technology Symposiums Vivek Tyagi- Country Sales Manager, Freescale India Freescale, the Freescale logo, CodeWarrior,

More information

Microchip - Adding USB, Ethernet, or Wireless Connectivity to an Embedded Design 8:00am -12:00pm. Cypress - PSOC3/5 workshop

Microchip - Adding USB, Ethernet, or Wireless Connectivity to an Embedded Design 8:00am -12:00pm. Cypress - PSOC3/5 workshop Wednesday JUNE 15th 9:00am - 4:00pm Freescale Semiconductor - Android and Linux on the NEW i.mx53 processor (full day session) Freescale Semiconductor - New Kinetis K40-based Tower Development Tool Renesas

More information

Learning Module 9. Managing the Sensor: Embedded Computing. Paul Flikkema. Department of Electrical Engineering Northern Arizona University

Learning Module 9. Managing the Sensor: Embedded Computing. Paul Flikkema. Department of Electrical Engineering Northern Arizona University Learning Module 9 Managing the Sensor: Embedded Computing Paul Flikkema Department of Electrical Engineering Northern Arizona University Outline Networked Embedded Systems Hardware Software Languages Operating

More information

Z8 Encore! XP F1680 Series 8-Bit Flash Solution with Extended Peripherals

Z8 Encore! XP F1680 Series 8-Bit Flash Solution with Extended Peripherals Embedded Flash Solutions Z8 Encore! XP F1680 Series High-performance 8-bit Flash MCU F1680 advantage low power - 1.8 V highly integrated peripherals flexible memory options optimized cost/performance target

More information