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Atmel's Latest ARM9-based Microcontroller Significantly Increases Internal Data Bandwidth

      Rousset, France, December 11th, 2006  

Atmel 最新的 ARM9 微控制單元顯著增加內部數據帶寬 (簡體中文版)

ARM926EJ-S-based MCU Provides 41.6 Gbps Internal Data Bandwidth, Combines Networking with Human Interface Capabilities

    Atmel® Corporation (Nasdaq: ATML), announced today the newest member of Atmel's SAM9 family, the AT91SAM9263 embedding a 200 MIPS ARM926EJ-STM-based microcontroller that overcomes the bottlenecks that occur with conventional ARM9TM-based MCUs in graphically-interfaced, data-intensive applications such as networked medical monitoring equipment and GPS navigation systems. The AT91SAM9263 employs 27 DMA channels including Atmel's 18-channel peripheral DMA controller (PDC), a 9-layer bus matrix, and two additional busses for data- and instruction-tightly-coupled-memories (TCMs) to boost CPU performance and provide on-chip data transfer rates of up to 41.6 Gbps. Two external bus interfaces (EBIs) support gigabyte-plus external memories.

     Human Interface. On-chip human interface peripherals include a camera interface, TFT/STN LCD controller, a 6-channel audio front-end interface (AC97), I2S and a 2D graphics co-processor that off-loads line draw, block transfer, polygon fill, and clipping functions from the CPU.

     Networking and Communications. Networking peripherals include a 12 Mbps USB host and device, a 10/100 Ethernet MAC and a 1 Mbps control area network (CAN). There are also four USARTs, two 50 Mbps serial parallel interfaces (SPI), CompactFlash®, SDIO (MCI) and a two-wire interface (TWI) which can be connected to external wired and wireless communication modules like GPRS modem and Wi-Fi®.

     Peripheral DMA Controller Relieves CPU of Peripheral-to-Memory Transfers - Conventional ARM9-based processors use load/store instructions that require at least 80 CPU cycles to transfer a single byte of data between memory and a peripheral. Running at 200 MHz with a bus frequency of 100 MHz, these processors typically reach the limit of their capability at about 20 Mbps even with the memory management unit and instruction- and data-cache controllers enabled.

     Atmel's AT91SAM9263 integrates 18 simple, silicon-efficient, single-cycle, peripheral DMA controllers (PDC), five DMA controllers with burst mode support to the USB host, Ethernet MAC, camera interface, LCD controller and 2D graphics controller, plus a memory-to-memory DMA controller with burst mode, scatter-gather and linked lists support. The DMA controllers completely off-load the execution of data transfers between external serial interfaces and memories. At a 20 Mbps data rate, Atmel's SAM9263 still has 88% of its MIPS available for application execution.

     Eleven-layer Bus plus 96 kBytes on-chip SRAM Eliminates Bandwidth Bottlenecks. Atmel has implemented 11 busses and 96 Kbytes of on-chip scratchpad SRAM on the AT92SAM9263. The SRAM can be partly configured as tightly-coupled data and instruction memory (TCM). The busses provide multiple parallel on-chip data transfer channels and a total on-chip bandwidth of 41.6 Gbps.

     Dual EBI Allows Simultaneous, Parallel Operation of the ARM9 CPU and Graphics Processors. The AT91SAM9263 has two external bus interfaces (EBI): one for the system memory and one for the human interface. The second EBI eliminates the need for the LCD controller and CPU to share memory and can increase available CPU MIPS by 20% to 40%.
Pricing & Availability. The AT91SAM9263 is available now in a 324-ball BGA package and is priced at sub $10 for 100K parts.


Hot News

 

Atmel Launches Industry's Lowest-Power 1.8V CPLD Family with 5 uA Standby Power Consumption

      San Jose, CA, December 4, 2006  

ATMEL 推出業界最低功耗的1.8V CPLD 系列產品, 備用功耗僅為5uA (簡體中文版)

The only CPLD with on-chip EEPROM. Macrocell architecture doubles logic density

    Atmel® Corporation (Nasdaq: ATML), announced today its ATF15xxBE family of ROHS-compliant, 1.8V CPLDs with standby power consumption of just 5 uA - over 60% less power drain than the nearest competing CPLD. Operating power consumption is 1 mA at 20 MHz or less. Available in densities ranging from 32 to 128 macrocells, ATF15xxBE CPLDs can be used to implement system watchdog, MCU I/O port expansion, memory interface, LCD display module drivers, and voltage translators.

    Their ultra-low standby power consumption makes the ATF15xxBE PLDs ideal for applications that spend the majority of their time in standby mode. These include smart phones, keypad scanners, and handheld appliances as well as toys using infrared transmitters with low security needs.

    ATF15xxBE CPLDs are the only CPLDs on the market that offer up to 32 Kbits of on-chip EEPROM for the storage of constants, OEM proprietary data, end-product ID, or other data.

    Unique macrocell architecture doubles logic utilization. ATF15xxBE CPLDs have a unique macrocell architecture with independent feedback paths for both the register and combinatorial logic that fully exploits macrocell resources. Conventional CPLDs incorporate macrocells that have only one feedback path. If the register is being used to latch data, the combinatorial logic in that cell cannot be utilized at all. Atmel's dual-path architecture allows both register and combinatorial macrocell resources to be fully utilized virtually all the time, in effect doubling the amount of available logic, ATF15xxBE CPLDs frequently allow designers to implement their system in a smaller, less expensive device.

    Logic doubling is automatic. Atmel's ProChip Designer® fitter automatically checks CPLD resource utilization and implements logic doubling without any user action.

    Compatible with 5V ATF15xxAS and Altera's EPM3000 and EPM7000 CPLDS. The ATF15xxBE industry standard pin out is compatible with Atmel's 3.3V ATF15xxASV and 5V ATF15xxAS families, and offers a lower-power alternative to Altera's EPM3000 and EPM7000 CPLDs, Xilinx's XC2CxxA and Lattice's LC40xxZ CPLDs.

     Downloadable Mentor Graphics®-based tools. Atmel's ProChip Designer 4.0 integrates Mentor Graphic's industry-standard design entry, synthesis and simulation software from within Atmel's proprietary ProChip Designer fitting software. Designers can use Atmel's OEM version of Precision® RTL Synthesis and/or ModelSim(r) Simulation environment to design the ATF15xxBE CPLD family. Third-party programming vendors such as BP Microsystems, Data I/O(r), Hilo, and EE tools also support stand-alone programming of the ATF1502BE.

    Pricing and Availability. Samples of the ATF1502BE and ATF1504BE CPLDs are available now in -5 ns and -7 ns speed grades in fully green, ROHS-compliant TQFP packages. Pricing for ATF1502BE starts at USD $.95 for 10k units. The ATF1504BE starts at USD $1.95 for 10k units. The 128 macrocell ATF1508BE CPLD will be available in the second quarter of 2007.

 

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