









MVME147SA-2
MVME7100
NXP®MPC864xD VME SBC
智能嵌入式计算MVME7100,采用片上系统MPC864xD
处理器,为上一代应用程序的VMEbus客户提供了增长路径
生成VME,特别是MPC74xx处理器。系统芯片实现
提供了电源/热、可靠性和生命周期方面的优势,这在替代产品中是不常见的
架构。
SMART EC MVME7100单板计算机(SBC)帮助工业、医疗、工业和工业领域的原始设备制造商,
国防/航空航天设备增加了性能和功能以获得竞争优势
同时仍然保护对VMEbus和相关技术的基本投资。
客户可以保留其VMEbus基础架构(机箱、背板和其他VMEbus和
PMC板),同时提高性能和延长生命周期。此外
智能电子计算产品的生命周期有助于减少开发和支持中的波动
频繁的产品变更导致的工作。
更快的处理器和2eSST VMEbus接口相结合,提供了显著的性能
改善新的经济高效的外围设备可以使用USB接口轻松集成。
扩展温度(-40°C至+71°C)变型支持广泛的操作和温度范围
储存温度,以及增加的冲击公差。这使电路板能够:
在恶劣环境中操作,同时保持结构和操作完整性。
数据表
MVME7100
数据表
高达2GB
DDR2存储器
使用者
128 KB
我
2C总线I
2C总线
我
2 GbE 3 GbE 4 COM2–COM5 PMC 1 Jn4 IO C总线
LBC
PCI Express
MPC864xD
处理器设备
公共汽车
实时时钟
DS1375
虚拟专用数据库
8KB
临时雇员
MAX6649
可编程逻辑器件
解码
定时器/调节器
夸脱
16C554
闪光
128MB
闪光
2、4或8GB
MRAM
512KB
VME
TSi148
XCVR
22501
VME总线
P2和P1
PMC 1 PMC 2
PCI
表示
转换
E2P
TSi384
E2P
TSi384
E2P
TSi384
E2P
PEX8112
通用串行总线*
µPD720101
XCVR
RS-232
物理层
5482
物理层
5482
XCVR
RS-232
串行端口0
串行端口1-4
GbE 1
GbE 2
GbE 3
GbE 4
PMC1前输入/输出PMC2前输入/输入
前面板
ABT/RST
GbE
RJ-45
USB*GbE
RJ-45 COM
DUART DDR2 MC
TSEC1
TSEC2
TSEC3
TSEC4
XMCspan
PCI Express
*仅限商业温度
概述
VMEBUS 2EST性能
2eSST协议提供了高达100%的可用VME总线带宽
达到320MB/s,比VME64高出8倍,同时保持
与VME64和VME32的向后兼容性。组合
新的德州仪器VMEbus收发器和
Tundra Tsi148 VMEbus桥的传统协议支持允许:
客户需要将MVME7100系列集成到其现有产品中
提供向后兼容性的基础架构,从而
保留其对现有VMEbus板、背板的投资,
机箱和软件。
平衡性能
MVME7100系列提供的不仅仅是更快的VMEbus
转移率;它提供来自处理器的平衡性能,
存储器子系统、本地总线和I/O子系统。这
MVME7100系列具有丰富的I/O接口
非常适合用作特定于应用程序的计算刀片,或
智能I/O刀片/载体。NXP MPC864xD系统onchip
(SoC)处理器,运行速度敢达1.3GHz,是一个很好的套件
MVME147SA-2

MVME147SA-2
MVME7100 NXP® MPC864xD VME SBC The SMART Embedded Computing MVME7100, featuring the system-on-chip MPC864xD processor, offers a growth path for VMEbus customers with applications on the previous generation of VME, specifically the MPC74xx processors. The system-on-chip implementation offers power/thermal, reliability, and lifecycle advantages not typically found in alternative architectures. The SMART EC MVME7100 single-board computer (SBC) helps OEMs of industrial, medical, and defense/aerospace equipment add performance and features for competitive advantage while still protecting the fundamental investment in VMEbus and related technologies. Customers can keep their VMEbus infrastructure (chassis, backplanes, and other VMEbus and PMC boards) while improving performance and extending the lifecycle. Also, the extended lifecycle of SMART EC computing products helps reduce churns in development and support efforts resulting from frequent product changes. The faster processor and 2eSST VMEbus interface combine to offer significant performance improvement. New cost-effective peripherals can be integrated easily using USB interfaces. Extended temperature (-40 °C to +71 °C) variants support a wide range of operating and storage temperatures in addition to increased tolerances for shock. This enables the boards to operate in harsh environments while maintaining structural and operational integrity. DATA SHEET MVME7100 Data Sheet Up to 2GB DDR2 Memory User 128 KB I 2C Bus I 2C Bus I 2 GbE 3 GbE 4 COM2 – COM5 PMC 1 Jn4 IO C Bus LBC PCI Express MPC864xD Processor Device Bus RTC DS1375 VPD 8 KB Temp MAX6649 CPLD Decode Timers/Regs QUART 16C554 Flash 128MB Flash 2, 4 or 8GB MRAM 512KB VME TSi148 XCVR 22501 VME Bus P2 P1 PMC 1 PMC 2 PCI Express Switch E2P TSi384 E2P TSi384 E2P TSi384 E2P PEX8112 USB* µPD720101 XCVR RS-232 PHY 5482 PHY 5482 XCVR RS-232 Serial Port 0 Serial Ports 1-4 GbE 1 GbE 2 GbE 3 GbE 4 PMC1 Front I/O PMC2 Front I/O Front Panel ABT/RST GbE RJ-45 USB* GbE RJ-45 COM DUART DDR2 MC TSEC1 TSEC2 TSEC3 TSEC4 XMCspan PCI Express * Commercial temperature only Overview VMEBUS 2ESST PERFORMANCE The 2eSST protocol offers an available VME bus bandwidth of up to 320MB/s, an increase of up to 8x over VME64, while maintaining backward compatibility with VME64 and VME32. The combination of the latest Texas Instruments VMEbus transceivers and the Tundra Tsi148 VMEbus bridge’s legacy protocol support allows customers to integrate the MVME7100 series into their existing infrastructure providing backward compatibility and thereby preserving their investment in existing VMEbus boards, backplanes, chassis and software. BALANCED PERFORMANCE The MVME7100 series provides more than just faster VMEbus transfer rates; it provides balanced performance from the processor, memory subsystem, local busses and I/O subsystems. This coupled with a wealth of I/O interfaces make the MVME7100 series ideal for use as an application-specific compute blade, or an intelligent I/O blade/carrier. The NXP MPC864xD system-onchip (SoC) processor, running at speeds up to 1.3GHz, is well-suite
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