The CAN (Controller Area Network) is a serial communication protocol, and efficiently supports distributed real-time control with a very high level of security. It is an especially suited for networking "intelligent" devices as well as sensors and actuators within a system or sub-system. In CAN networks, there is no addressing of subscribers or stations in the conventional sense, but instead prioritized messages are transmitted.
ICP DAS provides an open architecture platform for CAN bus PISO-CM100/100U. The PISO-CM100/100U represents a very powerful and economic solution of an active CAN board with one CAN channels, covering a wide range of CAN applications. The 16-bit on-board microcontroller allows, among many other features, the filtering, preprocessing, and storage (with timestamp) of CAN messages as well as the real-time transmission of CAN messages. PISO-CM100/100U also uses the new Phillips SJA1000T and Transceiver 82C250/251, which provide bus arbitration and error detection with auto correction and re-transmission function. Under the effect of the powerful microcontroller, this card can be made for one CAN controller without losing data, even in systems with a high bus load. Besides, equipped with integrated intelligence functions, the PISO-CM100/100U makes it is possible to preprocess CAN data streams, thus relieving the PC of a considerable burden. As a result, real-time requirements on the PC applications are drastically reduced. Due to the state-of-the-art, it can be installed in a slot of 32-bits PCI bus or Universal PCI bus and supported truly “Plug & play” technology.
In addition, users can develop their own CAN application by using the PISO-CM100/100U library. When the PISO-CM100/100U is active, the data exchange between users’ application and can bus firmware is performed via the memory mapping method of the PISO-CM100/100U.
Features
Microprocessor inside with 80186, 80MHz
82C250 CAN transceiver
SJA1000T CAN controller
Support both CAN 2.0A and CAN 2.0B
Timestamp with at least ±1ms precision
DIP switch to select board number
Dual port RAM communication mechanism
RTC (real time clock) inside
Applications:
DeviceNet
CANopen
CAN J1939
SDS (System Wide Network) protocol applications
CAN bus communication application.
Industry automation
Industrial Machinery
Building Automation
Food & Beverage
Semiconductor Fabrication
Control systems
Software Utility Features
Windows Drivers:
Development Toolkit for Windows 98/Me/NT/2000/XP
Demos for VC++, VB and BCB
Windows Tools
CANUility: Includes send/receive CAN messages, message ID filter, data format transformation, messages recoder and firmware update functions
Debug tool
MiniOS7 Tools:
C/C++ Library for RTC, EEPROM, LED, DPRAM, CAN controller and timers control functions
Demos for TC, TC++, BC and BC++
Performance Test
Test development
OS:Windows XP SP 3
CPU:Intel Core 2 Duo 2.00 GHz
RAM:512 MB
Baud Rate(bps)
CAN 2.0 A
CAN 2.0 B
Frame per sec.
Frame per sec.
1000 k
7502
6589
800 k
6188
5258
500 k
4097
3451
250 k
2140
1801
125 k
1098
920
50 k
440
371
20 k
176
148
10 k
88
74
Note:The test result is the average value of receiving 100000 CAN messages.
Specifications
Software
Driver
Windows XP/7/8/10 (32-bit/64-bit OS), InduSoft
SDK
VB 6.0, VC++ 6.0, BCB 6.0, Delphi 4.0, C 2008
CPU Module
CPU
80186, 80 MHz or compatible
EEPROM
16 KB
Flash
512 KB
NVRAM
31 bytes (battery backup, data valid for up to 10 years)
SRAM
512 KB
Real Time Clock
Yes
LED Indicators
Status
1 x CAN status 1 x Operating mode
PC Bus
Type
Universal PCI, 3.3 V and 5 V, 33 MHz, 32-bit, plug and play
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