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KLR-DEV 060713
3-1
SECTION 3 - IVI-COM DRIVER
3.1
INTRODUCTION
The IVI-COM (Interchangeable Virtual Instrument) driver provided with the instrument allows
remote programming of the unit via either the LAN, GPIB or RS 232 ports.
The IVI-COM (Interchangeable Virtual Instrument) driver provided with the instrument can be
used with many Kepco power supplies. The KLR does not support all features found in the
driver, specifically those related to the Bipolar type power supplies. It allows remote program-
ming of the KLR via either the LAN (E-Series models only), GPIB (all models) or RS 232 (stan-
dard models only) ports.
This driver supports the IviDCPwr class-compliant interface and fulfills all requirements imposed
by IVI-4.4: IviDCPwr, Revision 2.0. The driver implements all of the class capabilities from the
IviDCPwr specification for which the instrument has matching functionality. The Kepco KLR IVI-
COM driver does not support the configuring and resetting of overvoltage and overcurrent con-
ditions.
3.1.1
SPECIFICATION COMPLIANCE
The IVI Foundation provides several specifications outlining the criteria for compliance with the
IVI-COM driver architecture. The chief aim of these specifications is to ensure compatibility with
specific IVI-COM infrastructure components, thereby increasing the degree of driver and instru-
ment interchangeability. This IVI-COM driver complies with the following IVI standards:
• • IVI 3.1 - IVI Driver Architecture Specification
• • IVI 3.2 - Inherent Capabilities Specification
• • IVI 3.3 - Standard Cross-Class Capabilities Specification
• • IVI 3.4 - Guidelines for API Style
• • IVI 3.5 - IVI Factory Specification
• • IVI 3.6 - IVI Configuration Server Specification
The driver is built upon the National Instruments VISA-COM interface.
3.1.2
RANGE CHECKING AND COERCION
The driver will predominantly rely upon the instrument to perform range checking and coercion.
3.1.3
MULTITHREADING SUPPORT
Multithread safety is provided using standard operating system primitives for object locking. This
driver uses method-level locking, so that the driver can operate properly in multithreaded appli-
cations.
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