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6. GPIB Connector
. A standard GPIB cable can be attached to this connector to allow
the instrument to be computer-controlled. See the “Programming Manual for -B
Instruments” for more details on GPIB control.
7. RS-232 Connector.
A standard serial cable with a 25-pin male connector can be
attached to this connector to allow the instrument to be computer-controlled. A user
name (“admin”) and a password (“default”, as shipped from the factory) are required
when logging into a serial terminal session. The internal controller attempts to auto-
sense the parity setting. It may be necessary to send a few return characters before
attempting a login in order to provide enough data to allow this auto-sensing to work.
(A standard Linux “agetty” process is used to implement serial control internally.) See
the “Programming Manual for -B Instruments” for more details on RS-232 control.
8. Network Connector
. This Ethernet connector allows the instrument to be remotely
controlled using the VXI-11.3, ssh (secure shell), telnet, and http (web) protocols. See
the “Programming Manual for -B Instruments” for more details.
9. OS Connector
. (Optional feature. Present on “-OS” units only.) The desired DC offset
is applied to this connector. Internally, it is connected to the output centre conductor
via a high quality RF inductor. Do not exceed ±50V, 250 mA.
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Summary of Contents for AVR-E1-B
Page 35: ...PCB 158R4 LOW VOLTAGE POWER SUPPLY...
Page 36: ...PCB 235B HIGH VOLTAGE DC POWER SUPPLY...
Page 37: ...PCB 151D RANGE POLARITY RELAY BOARD...
Page 46: ...PERFORMANCE CHECKSHEET 46...