VT1433B User's Guide

Index

Shut, 6-5

Tach1, 7-5

Tach2, 7-5

connectors SMB, 5-7, 6-5, 7-5 constant output level amplifier, 6-2, 6-5 continuous mode, 3-32, 3-33, 4-24, 4-25 control

measurement, 3-25, 4-18 control register, A-7

controller protocol examples, A-12 count division, 7-3

count register, A-9 coupling, 5-2 covers

part numbers, 10-5, 10-7, 10-9 removing, 10-14

create group, 3-7, 3-8, 4-11 current RPM value, 5-2

D

D32, 5-2 data

transfer bus, 5-8 transferring, 5-9

data buffer, 5-2

data flow diagram, 3-15

data transfer modes, 3-32, 4-24 decimation, 5-2

decimation filter baseband, 3-17

default logical address, 1-4 default values, parameters, 4-5 delete group, 3-7

device message-based, A-2 register-based, A-2

device type register, A-5 diagnostics, 9-2 disassembly, 10-14 display button (SFP), 2-9 division

input count, 7-3 dll file, 3-6

done, wait for, A-13 DRAM, 3-15, 5-10 driver

VXIplug&play, 2-5, 2-6, 3-3, 3-6 DSP bus registers, A-14

DSP command register, A-15 DSP protocol, A-13

DTB arbitration bus, 5-8

dynamic configuration protocol, A-5 Dynamic RAM, 5-10

E

eight-channel input See 8-channel input

error messages, 4-2 errornumbers, 4-2

exact RPM triggering, 7-2 example programs

Agilent VEE , 2-10

Visual Basic, 2-19 exit button (SFP), 2-9 ExSamp, 5-7 external access, 5-10 external sample clock, 5-14 external shutdown, 6-2

external trigger, 3-29, 4-22, 5-13, 5-14, 7-2 external trigger input, 7-2

ExTrig, 5-7, 7-5

F

failed LED, 5-7, 6-5, 7-5 features, 5-2

FIFO architecture, 3-15 files

header, 3-6, 4-3 library, 3-6, 4-3

find module, 3-7 firmware, source, 6-5 FP file, 3-6

free-running clock line, 5-13

frequency response function random, 2-16 frequency, external clock, 5-14 frf_rand.vee (example program), 2-16 front panel, 5-5, 5-6, 5-7, 6-5, 7-5

arbitrary source, 6-4 part numbers, 10-13 removing, 10-15

G

general features, 5-2 getting started, 2-2 global parameters, 4-5 glossary (rear of manual), 2-1 go button (SFP), 2-9 ground, 5-8

group

channels, 3-7, 3-9 create, 3-7, 3-8, 4-11 delete, 3-7

get info, 3-8

input channels, 3-8 modules, 3-9 source channels, 3-8 tach channels, 3-8

group ID, 4-10, 4-11 grouping of channels, 4-12 grouping of modules, 4-12

H

hardware configuration, 3-7 header files, 3-6, 4-3

help

Agilent VEE, 2-11 SFP, 2-5

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VXI manual VT1433B Users Guide Index

VT1433B specifications

The VXI VT1433B is a versatile and sophisticated instrument designed for testing and measurement applications, particularly in the realm of telecommunications and electronics. Designed with the needs of engineers in mind, it brings a comprehensive set of features and technologies that enable accurate and efficient performance.

One of the standout features of the VT1433B is its ability to function as a high-performance data acquisition system. With up to 32 input channels, users can capture a wide range of signals simultaneously. This capability is particularly beneficial for applications requiring the monitoring of multiple parameters or systems concurrently, such as in complex electronic testing scenarios.

The VT1433B utilizes advanced technology for signal processing and analysis. Equipped with high-resolution analog-to-digital converters, the unit ensures precise measurement of various signal types, including voltage, current, and frequency. This precision is critical for engineers who rely on accurate data to make informed decisions during the design and testing phases.

In addition to its measurement capabilities, the VT1433B also supports multiple communication protocols, including GPIB, USB, and LAN, allowing for easy integration into existing test systems. This flexibility enhances its usability in both laboratory settings and field operations, where different setups may be required.

The instrument also comes with a user-friendly interface, featuring a clear display and intuitive controls that simplify operation. This design consideration allows users, regardless of their experience level, to navigate the system seamlessly and access the features they need without unnecessary delays.

Moreover, the VT1433B incorporates robust software support, including various programming tools and libraries. This aspect allows for easy implementation of automated test sequences and extensive data analysis capabilities, streamlining the workflow significantly.

Another notable characteristic of the VT1433B is its reliability and durability, designed to withstand the rigors of continuous use in demanding environments. It is engineered to operate under a broad range of temperatures and conditions, making it suitable for diverse applications, from laboratory research to field testing.

In summary, the VXI VT1433B stands out as a comprehensive testing solution, characterized by its extensive input channels, high precision measurement capabilities, multi-protocol communication, user-friendly interface, and robust software support. This combination of features and technologies makes it an invaluable tool for engineers and researchers looking to optimize their testing and data acquisition processes in various fields.