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All rights reserved. Agilent® is a registered trademark of Agilent Technologies Inc. Hewlett-Packard® is a registered trademark of Hewlett-Packard Company. LCQ™, LTQ™, LXQ™, MSQ™, TSQ™, and Xcalibur™ are trademarks of Thermo Fisher Scientific Inc. Thermo Fisher Scientific Inc. provides this document to its customers with a product purchase to use in the product operation. This document is copyright protected and any reproduction of the whole or any part of this document is strictly prohibited, e

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Use the cable and adapter to connect Agilent instruments with 9-pin male RS-232 connectors to most PCs or printers. The cable kit contains: □ Null modem cable, 9-pin F to 9-pin F, 2.5 meters (8 ft. 2.5 in.), Agilent Part Number F1047-80002. □ Adapter, 9-pin M to 25-pin F (straight through), for PCs and printers, Agilent Part Number 5181-6641. □ This Reference Guide, Agilent Part Number 34398-90001. Agilent 34399A RS-232 Adapter Kit Contains four adapters to change a 9-pin female Null Modem (

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r Products Tested The following Agilent instruments have been tested to operate properly with a PC, printer, and modem using the cable and adapter kits. • 33120A Function Generator /Arbitrary Waveform Generator • 34401A Multimeter • 53131A Universal Counter Cable and Adapter Pin Diagrams The following diagrams show the pin connections for the Null Modem cable (part number F1047-80002) with each of the adapters. Instrument DCD 1 - RX 2 - TX 3 DTR 4 GND 5 DSR 6 RTS 7 CTS 8 R

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Default parameters are shown in bold. 8 Frequency and Period Configuration Commands (see page 214 in the User’s Guide) CONFigure :FREQuency [{|AUTO|MIN|MAX|DEF} [,|MIN|MAX|DEF}],] (@) CONFigure? [(@)] [SENSe:] FREQuency:VOLTage:RANGe {|MIN|MAX}[,(@)] FREQuency:VOLTage:RANGe? [{(@)|MIN|MAX}] FREQuency:VOLTage:RANGe:AUTO {OFF|ON}[,(@)] FREQuency:VOLTage:RANGe:AUTO? [(@)] [SENSe:] FREQuency:APERture {0.01|0.1|1|MIN|M

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All three Input/Output interface connections come standard with the 34980A mainframe. If you choose to modify or upgrade your test system I/O, the 34980A is system ready. You can also easily control the 34980A without connecting to a PC by pressing the front-panel buttons, an advantage when first setting up or troubleshooting a system. Upgrading your test system from using the 3499A/B/C GPIB to the 34980A GPIB, or newer USB or LAN is quick and easy. If you have used I/O Config from the Agilent I

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One reading is displayed for each monitor command. The Web interface can also be used to monitor a channel measurement. The 3499A/B/C monitor feature allows users to continuously monitor a selected switch or module status from the front display. A channel monitor can be set up using the front panel buttons or instrument commands. The 3499A/B/C monitor output can be a specific switching channel, a digital I/O port or the state of all switches or digital I/O on one plug-in module. The 3499A/B/C al

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2 Place concentrator into 50 mL centrifuge tube (filtrate collection vessel – not supplied, user must provide). 3 Insert assembled concentrator into centrifuge (when fixed angle rotors are used, angle the concentrators so that the printed windows face upwards/outwards). Spin at recommended speeds, taking care not to exceed the maximum g force indicated in the table above (20-40 minutes is common). 4 Once the desired concentration is achieved, remove assembly and recover sample from the bottom of

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c3 Memory Offset. 10 data characters which define the base address of the A24 or A32 address space on the device. This value is expressed in hex format (first two characters are # H). c4 Memory Size. 10 data characters which define the size of the A24 or A32 address space in bytes. This value is expressed in hex format (first two characters are # H). c5 Pass/Failed. Up to 5 data characters which define the status of the device; FAIL | IFAIL | PASS | READY. FAIL = failed self-test, IFAIL = config

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Static electricity can build up on your body and can easily damage sensitive internal circuit elements when discharged. Static discharges too small to be felt can cause permanent damage. Devices such as calibration components and devices under test (DUTs), can also carry an electrostatic charge. To prevent damage to the test set, components, and devices: • always wear a grounded wrist strap having a 1 MW resistor in series with it when handling components and devices or when making connections t

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A network’s behavior is linear when (1) a linear change in the input results in a linear change in the output, and (2) the output, resulting from multiple input signals, is the same as the sum of the outputs resulting from independent input signals. Some examples of linear networks are filters, amplifiers, cables and isolators. A network analyzer measurement system can be divided into four major parts shown in Figure 2: 1. A signal source providing the incident signal 2. Signal separation device





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