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  • 參數(shù)資料
    型號: A3PN020-2QNG68
    廠商: Microsemi SoC
    文件頁數(shù): 82/114頁
    文件大小: 0K
    描述: IC FPGA NANO 20K GATES 68-QFN
    標準包裝: 260
    系列: ProASIC3 nano
    輸入/輸出數(shù): 49
    門數(shù): 20000
    電源電壓: 1.425 V ~ 1.575 V
    安裝類型: 表面貼裝
    工作溫度: 0°C ~ 70°C
    封裝/外殼: 68-VFQFN 裸露焊盤
    供應(yīng)商設(shè)備封裝: 68-QFN(8x8)
    Revision 11
    1-1
    1 – ProASIC3 nano Device Overview
    General Description
    ProASIC3, the third-generation family of Microsemi flash FPGAs, offers performance, density, and
    features beyond those of the ProASICPLUS family. Nonvolatile flash technology gives ProASIC3 nano
    devices the advantage of being a secure, low power, single-chip solution that is Instant On. ProASIC3
    nano devices are reprogrammable and offer time-to-market benefits at an ASIC-level unit cost. These
    features enable designers to create high-density systems using existing ASIC or FPGA design flows and
    tools.
    ProASIC3 nano devices offer 1 kbit of on-chip, reprogrammable, nonvolatile FlashROM storage as well
    as clock conditioning circuitry based on an integrated phase-locked loop (PLL). A3PN030 and smaller
    devices do not have PLL or RAM support. ProASIC3 nano devices have up to 250,000 system gates,
    supported with up to 36 kbits of true dual-port SRAM and up to 71 user I/Os.
    ProASIC3 nano devices increase the breadth of the ProASIC3 product line by adding new features and
    packages for greater customer value in high volume consumer, portable, and battery-backed markets.
    Added features include smaller footprint packages designed with two-layer PCBs in mind, low power,
    hot-swap capability, and Schmitt trigger for greater flexibility in low-cost and power-sensitive applications.
    Flash Advantages
    Reduced Cost of Ownership
    Advantages to the designer extend beyond low unit cost, performance, and ease of use. Unlike SRAM-
    based FPGAs, flash-based ProASIC3 nano devices allow all functionality to be Instant On; no external
    boot PROM is required. On-board security mechanisms prevent access to all the programming
    information and enable secure remote updates of the FPGA logic. Designers can perform secure remote
    in-system reprogramming to support future design iterations and field upgrades with confidence that
    valuable intellectual property (IP) cannot be compromised or copied. Secure ISP can be performed using
    the industry-standard AES algorithm. The ProASIC3 nano device architecture mitigates the need for
    ASIC migration at higher user volumes. This makes the ProASIC3 nano device a cost-effective ASIC
    replacement solution, especially for applications in the consumer, networking/communications,
    computing, and avionics markets.
    With a variety of devices under $1, ProASIC3 nano FPGAs enable cost-effective implementation of
    programmable logic and quick time to market.
    Security
    Nonvolatile, flash-based ProASIC3 nano devices do not require a boot PROM, so there is no vulnerable
    external bitstream that can be easily copied. ProASIC3 nano devices incorporate FlashLock, which
    provides a unique combination of reprogrammability and design security without external overhead,
    advantages that only an FPGA with nonvolatile flash programming can offer.
    ProASIC3 nano devices utilize a 128-bit flash-based lock and a separate AES key to provide the highest
    level of protection in the FPGA industry for programmed intellectual property and configuration data. In
    addition, all FlashROM data in ProASIC3 nano devices can be encrypted prior to loading, using the
    industry-leading AES-128 (FIPS192) bit block cipher encryption standard. The AES standard was
    adopted by the National Institute of Standards and Technology (NIST) in 2000 and replaces the 1977
    DES standard. ProASIC3 nano devices have a built-in AES decryption engine and a flash-based AES
    key that make them the most comprehensive programmable logic device security solution available
    today. ProASIC3 nano devices with AES-based security provide a high level of protection for remote field
    updates over public networks such as the Internet, and are designed to ensure that valuable IP remains
    out of the hands of system overbuilders, system cloners, and IP thieves.
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