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MSK040C-0600-NN-M1-UG1-NNNN模块现货

型号: MSK040C-0600-NN-M1-UG1-NNNN  分类: foxboro
  • MSK040C-0600-NN-M1-UG1-NNNN
  • MSK040C-0600-NN-M1-UG1-NNNN
  • MSK040C-0600-NN-M1-UG1-NNNN
  • MSK040C-0600-NN-M1-UG1-NNNN
  • MSK040C-0600-NN-M1-UG1-NNNN


MSK040C-0600-NN-M1-UG1-NNNN模块现货 MSK040C-0600-NN-M1-UG1-NNNN模块现货 MSK040C-0600-NN-M1-UG1-NNNN模块现货 MSK040C-0600-NN-M1-UG1-NNNN模块现货 MSK040C-0600-NN-M1-UG1-NNNN模块现货




 

MSK040C-0600-NN-M1-UG1-NNNN

❏ 四个32位可编程定时器和可编程看门狗定时器
(麦奇普)
❏ 两个32位可编程定时器和可编程看门狗定时器
(可选VMEchip2)
❏ 8K乘8非易失性随机存取存储器(NVRAM)和
带备用电池的日(TOD)时钟(汤普森MK48T08)
❏ 输入/输出
–两个串行端口(一个EIA-232-D DCE;一个EIA-232-D或EIA-530
DCE/DTE)
–串行端口控制器(Zilog Z85230)
–可选小型计算机系统接口(SCSI)总线接口
32位本地总线突发直接存储器存取(DMA)(NCR 53C710
控制器)
–带有32位本地总线的可选LAN以太网收发器接口
DMA(英特尔82596CA控制器)
–四个MVIP IndustryPack接口
❏ VMEbus接口(VMEchip2)-非VMEbus版本可选
–VMEbus系统控制器功能
–VMEbus与本地总线的接口(A24/A32、D8/D16/D32
(D8/D16/D32/D64BLT)(BLT=块传输)
–本地总线至VMEbus接口(A16/A24/A32、D8/D16/D32)
–VMEbus断续器
规格
MVME162/D2 1-3
1.
–VMEbus中断处理程序
–处理器间通信的全球CSR
–用于快速本地存储器VMEbus传输的DMA(A16/A24/A32,
D16/D32[D16/D2/D64BLT])
❏ 开关和发光二极管(LED)
–两个按钮开关(中止和复位)
–八个指示灯(故障、状态、运行、SCON、LAN、保险丝、SCSI和VME)
规格
表1-2,MVME162规格,列出了MVME162的规格
没有工业包装。后续章节详述了冷却要求
以及FCC合规性。
注:请参阅以下有关冷却要求的章节
高温操作的特殊注意事项。
表1-2 MVME162规格
特性和规格
功率要求
(带PROM;不带IPs)
+5V(±5%),典型3.5A,大4.5A
+12 Vdc(±5%),大100 mA
-12 Vdc(±5%),大100 mA
工作温度:0°至70°C,强制空气冷却的出口空气(见注释)
储存温度-40°C至+85°C
相对湿度5%至90%(非冷凝)
物理尺寸
带夹层的PC板
仅模块
身高
深度

双高VMEboard
9.2英寸(233毫米)
6.3英寸(160毫米)
0.66英寸(17毫米)
带连接器的PC板
和前面板
身高
深度

10.3英寸(262毫米)
7.4英寸(188毫米)
0.80英寸(20.32毫米)
一般资料
1-4 MVME162嵌入式控制器用户手册
1.
冷却要求
摩托罗拉MVME162嵌入式控制器被指定、设计和
经测试,在0°至
55°C(32°至131°F),强制空气冷却速度通常可达到
通过使用100CFM轴流风扇。温度鉴定在
标准摩托罗拉VMEsystem 3000机箱。25瓦负载板
插入两个卡槽中,每侧一个,与下板相邻
测试,以模拟高功率密度系统配置。集合
三台轴流风机,每台风机额定值为100 CFM,直接位于VME下方
卡笼。在风扇之间测量进气温度
组件和卡笼,其中进入的气流首先遇到
控制器正在测试中。测试软件在控制器进行以下操作时执行:
环境温度变化。临界高功率外壳温度
对密度集成电路进行监控,以确保组件供应商
不超过规格。
而冷却所需的确切气流量取决于
环境空气温度和板的类型、数量和位置,以及
对于其他热源,通常可以用10 CFM实现充分冷却
490 LFM流过控制器。需要较少的气流来冷却
具有较低大环境的环境中的控制器。更多
有利的热条件下,可以操作控制器
在高于55°C且气流增加的情况下可靠运行。重要的是要注意:
除鼓风机的额定CFM外,还有几个因素:
确定流过控制器的空气的实际体积和速度。
高温运行的特殊注意事项
以下信息适用于其MVME162应用程序的用户
可能使其经受高温。
MVME162使用商用级设备。因此,它可以在
环境空气温度为0°C至70°C的环境。几个因素
影响MVME162上组件所看到的环境温度。
其中包括进气温度;气流特性;数量、类型,
以及IndustryPack(IP)模块的位置;相邻设备的功耗
系统中的板等。
温度分布图

MSK040C-0600-NN-M1-UG1-NNNN

MSK040C-0600-NN-M1-UG1-NNNN模块现货

MSK040C-0600-NN-M1-UG1-NNNN

❏ Four 32-bit programmable timers and programmable Watchdog Timer
(MCchip)
❏ Two 32-bit programmable timers and programmable Watchdog Timer
(optional VMEchip2)
❏ 8K by 8 Non-Volatile Random Access Memory (NVRAM) and Time of
Day (TOD) clock with battery backup (Thompson MK48T08)
❏ Input/Output
– Two serial ports (one EIA-232-D DCE; one EIA-232-D or EIA-530
DCE/DTE)
– Serial port controller (Zilog Z85230)
– Optional Small Computer Systems Interface (SCSI) bus interface with
32-bit local bus burst Direct Memory Access (DMA) (NCR 53C710
controller)
– Optional LAN Ethernet transceiver interface with 32-bit local bus
DMA (Intel 82596CA controller)
– Four MVIP IndustryPack interfaces
❏ VMEbus interface (VMEchip2)—non-VMEbus version optional
– VMEbus system controller functions
– VMEbus interface to local bus (A24/A32, D8/D16/D32
(D8/D16/D32/D64BLT) (BLT = Block Transfer)
– Local bus to VMEbus interface (A16/A24/A32, D8/D16/D32)
– VMEbus interrupter
Specifications
MVME162/D2 1-3
1
– VMEbus interrupt handler
– Global CSR for interprocessor communications
– DMA for fast local memory-VMEbus transfers (A16/A24/A32,
D16/D32[D16/D32/D64BLT])
❏ Switches and Light-Emitting Diodes (LEDs)
– Two pushbutton switches (ABORT and RESET)
– Eight LEDs (FAIL, STAT, RUN, SCON, LAN, FUSE, SCSI, and VME)
Specifications
Table 1-2, MVME162 Specifications, lists the specifications for an MVME162
without IndustryPacks. The subsequent sections detail cooling requirements
and FCC compliance.
Note Refer to the following sections on Cooling Requirements and
Special Considerations for Elevated Temperature Operation.
Table 1-2. MVME162 Specifications
Characteristics Specifications
Power requirements
(with PROM; without IPs)
+5V (± 5%), 3.5 A typical, 4.5 A maximum
+12 Vdc (± 5%), 100 mA maximum
-12 Vdc (± 5%), 100 mA maximum
Operating temperature 0° to 70° C exit air with forced air cooling (see NOTE)
Storage temperature -40° to +85° C
Relative humidity 5% to 90% (noncondensing)
Physical dimensions
PC board with mezzanine
module only
Height
Depth
Thickness
Double-high VMEboard
9.2 inches (233 mm)
6.3 inches (160 mm)
0.66 inch (17 mm)
PC board with connectors
and front panel
Height
Depth
Thickness
10.3 inches (262 mm)
7.4 inches (188 mm)
0.80 inch (20.32 mm)
General Information
1-4 MVME162 Embedded Controller User’s Manual
1
Cooling Requirements
The Motorola MVME162 Embedded Controller is specified, designed, and
tested to operate reliably with an incoming air temperature range from 0° to
55° C (32° to 131° F) with forced air cooling at a velocity typically achievable
by using a 100 CFM axial fan. Temperature qualification is performed in a
standard Motorola VMEsystem 3000 chassis. Twenty-five watt load boards
are inserted in two card slots, one on each side, adjacent to the board under
test, to simulate a high power density system configuration. An assembly of
three axial fans, rated at 100 CFM per fan, is placed directly under the VME
card cage. The incoming air temperature is measured between the fan
assembly and the card cage, where the incoming airstream first encounters the
controller under test. Test software is executed as the controller is subjected to
ambient temperature variations. Case temperatures of critical, high power
density integrated circuits are monitored to ensure component vendors
specifications are not exceeded.
While the exact amount of airflow required for cooling depends on the
ambient air temperature and the type, number, and location of boards and
other heat sources, adequate cooling can usually be achieved with 10 CFM
and 490 LFM flowing over the controller. Less airflow is required to cool the
controller in environments having lower maximum ambients. Under more
favorable thermal conditions, it may be possible to operate the controller
reliably at higher than 55° C with increased airflow. It is important to note that
there are several factors, in addition to the rated CFM of the air mover, which
determine the actual volume and speed of air flowing over the controller.
Special Considerations for Elevated Temperature Operation
The following information is for users whose applications for the MVME162
may subject it to high temperatures.
The MVME162 uses commercial grade devices. Therefore, it can operate in an
environment with ambient air temperatures from 0° C to 70° C. Several factors
influence the ambient temperature seen by components on the MVME162.
Among them are inlet air temperature; air flow characteristics; number, types,
and locations of IndustryPack (IP) modules; power dissipation of adjacent
boards in the system, etc.
A temperature profile of the 



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