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This document contains proprietary information that is protected by copyright.All rights are reserved. No part of this document may be photocopied, reproduced, or translated to another language without the prior written consent of the Agilent Technologies. Agilent Technologies Japan, Ltd. Component Test PGU-Kobe 1-3-2, Murotani, Nishi-Ku, Kobe-shi, Hyogo, 651-2241 Japan Copyright © 1990, 1998, 1999, 2000 Agilent Technologies Japan, Ltd. Manual Printing History The manual’s printing date and part

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The sensing leads should be connected as close to the load as possible. If slightly degraded CV load regulation can be tolerated, the power supply will provide remote voltage sensing with up to 2 Vdc drop in each load lead and with more than 0.2 ohms resistance in each sense lead. As the voltage drop in the load leads increases, the load voltage error due to sense-lead resistance increases according to the formula: (2Rs + 0.5)V1 1000 where Rs is the resistance in ohms of each sense lead and Vl i

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Push button switches allow the display to alternately show the programmed values of voltage and current or the overvoltage limit. LED indicators show the operating state of the unit (CV, CC, Unregulated and Overvoltage). All connections are made to rear-panel screw-on terminals. Output voltage can be locally or remotely sensed. A six-position MODE switch located on the rear panel is used to change from front panel control to remote voltage or remote resistance control. See section 3 for a descri

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18 Installation Power Connection Caution: Connection of this supply to an ac power source should only be performed by an electrician or other qualified person. Before connecting the supply to the ac power source, check the label on the rear panel to ensure that the supply is set for the correct ac voltage to be used. If necessary, convert the line voltage to another by following the instructions under “Line Voltage Conversion”. Agilent Models 6010A, 6011A, 6012B and 6015A. To connect input power

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For proper regulation the load wires should be large enough to limit the voltage drop to no more than 0.5 volts per lead. Table 3-2 lists resistivity for various wire sizes and the maximum lengths that may be used to limit voltage drop to 0.5 volts for various currents. Lengths listed are the sum of the lengths of the (+ ) and ( - ) load wires. Lengths are given in meters and (feet). To determine maximum lengths (in meters or feet) for currents not listed, use the formula: 0.5 x 1000 maximum len

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5959-3343 Edition 1 Printed: September 1990 Edition 2 Printed: January 1992 Updated: February 2000 CERTIFICATION Agilent Technologies certifies that this product met its published specifications at time of shipment from the factory. Agilent Technologies further certifies that its calibration measurements are traceable to the United States National Bureau of Standards, to the extent allowed by the Bureau’s calibration facility, and to the calibration facilities of other International Standards Or

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Both voltage and current outputs can also be controlled by a voltage source. A voltage of 0 to 5 volts programs the output voltage or current from zero to full scale. Voltage sources of more than 5 volts can be scaled down to the proper range. The following paragraphs discuss in greater detail the methods of remotely programming the output voltage or current using either a resistance or voltage input. Whichever method is used, the wires connecting the programming device must be shielded to reduc

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Refer to "Related Documents" for other information concerning these products. Description This system power supply is an autoranging GP-IB power supply. It uses power MOSFETs in a 20 kHz switching converter to provide an autoranging output characteristic with laboratory performance. Output voltage and current are continuously indicated on individual meters. LED indicators show the complete operating state of the unit. Front-panel controls allow the user to set output voltage, current and overvol

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Part Number Location VM IM VP IP M P +S -S + - (3) 8-32 x 5/16 0360-2217 (4) M4x0.7 x 65mm Cover 5060-3237 (2) M3x0.5 6mm 0515-0642 (4) M5x0.8 12mm 0515-0155 (4) M4x0.7 35mm 0515-0968 Cover 5040-1626 0515-0414 (screw) 3050-1053 (washer) (3) M4x0.7 10mm SYSTEM MODELS A A A B B B B C C 28 Installation OPERATING INSTRUCTIONS Introduction This section describes the operating controls and indicators, turn-on checkout procedures, and operating procedures and considerations for the power supply. Local

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e. If foldback protection is desired, press FOLDBACK pushbutton switch to enable this feature. f. If a load change causes the current limit to be exceeded, the power supply automatically crosses over to constant current operation and the output voltage drops proportionately. If foldback protection is enabled, mode crossover causes the power supply output to be disabled. In setting the current limit, make adequate allowance for high current peaks that could cause unwanted mode crossover. Operatin





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