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PRODUCT OVERVIEW
Copyright 2007
3-4
VME6U HARDWARE REFERENCE
3.7 Utility Software
3.7.1 SCRAMNet Diagnostics
The SCRAMNet
Network Hardware Diagnostics are designed to test the functionality of
the hardware. This suite of tests will detect whether it is testing a Classic board or a
SCRAMNet-LX/SCRAMNet
+
board and adjust the test menus accordingly.
3.7.2 EEPROM Initialization (EPI)
The EEPROM Initialization program is a SCRAMNet
+
utility used to simplify
configuration of the network node. The EPI program will store a start-up configuration in
the serial EEPROM that can initialize the node on power up. This initialization program
can be run when the board is installed to set the desired power-up state of the
SCRAMNet
+
node. EPI is completely menu driven and contains a context-sensitive help
feature.
3.7.3 SCRAMNet Monitor
The SCRAMNet Monitor allows viewing and editing of memory and CSR locations on
the SCRAMNet
node. This utility is useful during software development to verify that the
correct values are being written to SCRAMNet memory and CSRs.
3.8 Options
3.8.1 Electronic Bypass Switch
The Electronic Bypass Switch exists on some Media Cards. This switch allows for fast
bypass on power-fail conditions. The electronic switch operates in the low nanosecond
range compared to 20 millisecond for a typical mechanical switch.
In case of node power failure, the electronic switch restores the network so quickly that
only one or two messages will have to be retransmitted, whereas a mechanical switch
could cost an excessive amount of transmission time re-sending perhaps thousands of
messages.
3.8.2 Quad Switch
The SCRAMNet Quad Switch is designed to provide configuration control over the
network topology and computing resources. The Quad Switch allows local clusters of up
to four SCRAMNet nodes to be switched in or out of a primary SCRAMNet ring,
independently and dynamically (Figure 3-2). It also allows sharing of a critical real-time
resource between multiple systems.
The Quad Switch performs other useful functions such as optical bypassing, fiber-optic
repeating to gain transmission length beyond the SCRAMNet node’s transmission power
limit, and to act as a media converter.
The electronic bypass switching action is very fast, introducing a total network disruption
of about one microsecond. This is over 10,000 times faster than mechanical optical
bypass switches, and permits ring re-configuration to be performed in real-time with
minimal impact on the system.
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