ARM cortex-r5 芯片应用

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  • 日期: 2016-07-21
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标签: ARMcortex-r5

最新 ARM cortex-r5 应用介绍,ARM 各种类型的特点


Cypress Microcontroller PRODUCT SELECTOR GUIDE Consumer and Industrial MCU Core Roadmap 300MIPS 200MIPS 100MIPS 32bit MCU FR80S ARM CortexM3 FR60 FR60Lite F2MC16LX 16bit MCU 8bit MCU 20MIPS 10MIPS F2MC8FX 8FX ARM CortexR5 ARM Next Core ARM CortexM4 ARM CortexM0 2010 2011 2012 2013 2014 2015 2016 Year 2 Consumer and Industrial MCU Family FM4 FAMILY Cypress ARM CortexM4F microcontroller family is a high range line providing maximum CPU frequency of 200MHz a high speed flash memory with DSP and ......

Cypress Microcontroller PRODUCT SELECTOR GUIDE Consumer and Industrial MCU Core Roadmap 300MIPS 200MIPS 100MIPS 32bit MCU FR80S ARM Cortex-M3 FR60 FR60Lite F2MC-16LX 16bit MCU 8bit MCU 20MIPS 10MIPS F2MC-8FX 8FX ARM Cortex-R5 ARM Next Core ARM Cortex-M4 ARM Cortex-M0+ 2010 2011 2012 2013 2014 2015 2016 Year 2 Consumer and Industrial MCU Family FM4 FAMILY Cypress ARM® Cortex®-M4F microcontroller family is a high range line providing maximum CPU frequency of 200MHz, a high speed flash memory with DSP and FPU hardware instructions. Customers can select the best fitting device from a range of products, coming in packages from 48 pin to 216 pin and flash memory densities between 256KB and 2MB. The wide operation supply voltage range up to 5.5V which improves the signal to noise ratio, results in a robust design and is unique among Cortex-M4F microcontroller families. The MCUs are designed for applica- tions that require advanced, high-speed computing performance such as general-purpose inverters, servomotors, PLCs and other industrial equip- ment, as well as inverter-based home appliances such as washing machines and air conditioners. FM3 FAMILY Cypress ARM Cortex-M3 microcontroller family is a scalable platform for many industrial applications. Customers can select the best fitting device from a range of products, coming in packages from 32 pin to 176 pin and flash memory densities between 32KB and 1MB. With a maximum CPU frequency of 144MHz and high speed flash memory, FM3 supports the fastest ARM Cortex-M3 devices on the market. The wide opera- tion supply voltage range up to 5.5V, which improves the signal to noise ratio, results in a robust design and is quite unique among Cortex-M3 microcontroller families. The FM3 MCU family is split into four groups: high performance, basic, low power and ultra low leakage groups. The main differences between the groups are CPU operation frequency and supply voltage. All products are based on the same architecture (software compatible), use the same peripherals and are pin compatible in most cases. The ultra low leakage line products are based on an optimized low leakage process technology. Development tools and evaluation boards are offered from different vendors and Cypress. FM0+ FAMILY The Cypress FM0+ family, which is based on the ARM Cortex-M0+ core, is designed for low power and cost-sensitive applications such as white goods, sensors, meters, HMI systems, power tools and Internet of Things (IoT) battery powered or energy harvesting wearable devices. These microcontrollers can be easily embedded into systems adopting 8-, 16- or 32-bit MCUs, accelerating product development and reducing devel- opment costs. The FM0+ family includes two groups for ultra-low-power and cost-effective applications. The devices in the ultra-low-power group have an operating voltage range of 1.65V to 3.6V, and a maximum CPU clock frequency of 40MHz, a RUN mode current of 70 μA/MHz, an RTC mode current of 0.7 μA and wake-up time of approximately 40 μs. 8FX FAMILY Cypress 8FX MCU family is a high-performance 8-bit microcontroller utilizing a different embedded flash memory size. This series uses the F2MC- 8FX CISC CPU, which offers industry leading class performance of an 8-bit microcontroller unit enabling more instructions to be executed per cycle. On top of delivering industry class performance MCUs, the 8FX family also delivers low power efficient MCU products for the customer’s usage. This series also features a variety of on-chip timers, A/D converters, analog and digital peripheral and communication interfaces such as LIN-UART (Local Interconnect Network Universal Asynchronous Receiver-Transmitter), CAN (controller area network) and I2C (Inter-Integrated Circuit) interface for various application usages. For easy development, the 8FX family also employs a 1-line on-chip debug that uses only one pin on the microcontroller, thereby minimizing the number of pins used for debugging in product development. Cypress also provides easy to use and cost competitive development starter kits and development environments for this MCU series. 3 Automotive MCU Core Roadmap e c n a m r o f r e P Traveo™ Traveo™ Cortex-R5 [32bit ARM] Cortex-R5 [32bit ARM] FCR4 FCR4 Cortex-R4 [32bit ARM] Cortex-R4 [32bit ARM] FR81S FR81S [32bit Proprietary core] [32bit Proprietary core] FR60/FR60Lite FR60/FR60Lite [32bit Proprietary core] [32bit Proprietary core] F2MC-16FX F2MC-16FX [16bit Proprietary core] [16bit Proprietary core] F2MC-16LX F2MC-16LX [16bit Proprietary core] [16bit Proprietary core] 2009 2011 2013 2015 CYPRESS SEMICONDUCTOR | MICROCONTROLLER PRODUCT SELECTOR GUIDE 4 FCR4 FAMILY The FCR4 family has been specifically designed to offer an innovative, scalable solution for hybrid instrument clusters, which combine traditional meters and graphical displays. The devices offer a powerful architecture based on the ARM Cortex-R4 core and Cy- press’s 2D graphics engine. High-level FCR4 Features • ARM Cortex-R4 core • Embedded 2D graphics engine • 2MB flash, 64KB E2Flash • Up to 208KB RAM • Features including real-time clock/auto calibration, sound generator and I2S F2MC-16FX FAMILY Cypress 16-bit flexible microcontroller series offers a scalable family concept approach to a variety of automotive and industrial applications. The scalable flash/ROM/RAM sizes with different mixtures of peripherals saves development time and costs. CAN and LIN support, on-chip LCD controller, SMC (stepper motor controller), I2C bus interface, analog input channels, external bus interface, selectable port levels for CMOS, TTL and Automo- tive Levels are some of the enhanced features. A security feature is incorporated, prevent- ing unauthorized reading of the contents of the flash memory. Automotive MCU Family TRAVEO FAMILY The Cypress Traveo™ family expands the company’s automotive application coverage, scalability and high performance into one line-up and at the same time adds new features to fulfill the latest requirements of the automotive industry. Based on the powerful ARM® Cortex®-R5 and R5F core in single and dual core operations, it offers state-of-the-art real- time performance, safety and security features. The family supports the latest in-car networks and offers high performance graphics engines optimized for a minimum memory footprint and embeds dedicated features to increase data security in the car. High-level Traveo Features • ARM Cortex-R5 core • Dual core • Embedded twin-motor control with internal R/D converter • Embedded 2D and 3D graphics engines • High performance embedded flash memory • Cypress HyperBus™: High speed serial interfaces to connect external memory • Qualified for automotive use (AEC-Q100) • Software support for Autosar, graphics drivers and more FR FAMILY Cypress 32bit MCU families have been designed in close co-operation with major au- tomotive customers worldwide and inherit the high-performance core of Cypress’s propri- etary FR MCU architecture. They support communication interfaces such as CAN, FlexRay and LIN as well as up to 2MB on-chip memory capacity. The latest members (MB915xx) also include a single precision Floating Point Unit (FPU) providing additional computing power required by complex control algorithms. This high computing performance combined with powerful peripheral functions such as on- chip graphics controller and motor control macros, offers a higher grade of flexibility and lower cost for automotive as well as industrial applications. Many devices offer an external bus interface which can be connected to Cypress’s stand alone FlexRay controller or to the latest generation of graphics controllers in order to build full-featured dashboards, driver information systems or advanced body systems. 5


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