QNET DC Motor 111507 - Vanderbilt...

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Description The QNET DC Motor Control Trainer has been designed to illustrate the fundamentals of DC motor control using the NI ELVIS Workstation & LabVIEW software. It can quickly and easily be configured to control motor position and speed, as well as parameter estimation and control of a Haptic Knob. QNET - 010: DC Motor Control Key Features Reliable & Versatile • Durable DC servo motor • Built-in power amplifier • High resolution optical encoder to sense position Convenient • Plug-and-play design facilitates quick & easy lab setup • Compact & easy to store Comprehensive • Covers a wide range of curriculum topics • Complete documentation provided through user manuals and setup guides Compatible • Full compatibility with NI ELVIS & LabVIEW Curriculum Topics • System Modeling • Model Validation • Position & Speed Control • System Simulation • PID Controller Design • Tracking Error • Sensitivity Analysis • Phase & Gain Margins • Disturbance Rejection Product Information Sheet QNET - 010 - page 1 - rev. C System Parameters Interfacing to the NI ELVIS Workstation Motor Torque constant 0.028 Nm/Amp Terminal resistance 3.30 Ohm Rotor Inertia 96.4 gm-cm2 Max Torque 0.14 Nm Linear Amplifier Gain 2.3 V / V Max output voltage 24 V Max current 5 Ampere Max output power 120 Watt Current sense resistor Current sensitivity 1.0 Amp / Volt Encoder Lines per revolution 1024 Lines Resolution- Quadrature 0.0879 Deg / count Type TTL Signals A, B NI E-Series DAQ Signal range Signal Inputs Analog input #0 ± 10 V Current measurement Counter #0 TTL Encoder A & B, 1X, 2X and 4 X Output Analog output #0 ± 10 V Amplifier command The following connections are automatically achieved when the QNET-010 system is plugged in: Specifications subject to change without notice QUANSER ENGINEERING TRAINERS FOR NI ELVIS (QNET) With Quanser the possibilities are infinite +1 (905) 940-3575 www.quanser.com Products and/or services referred to herein are trademarks or registered trademarks of Quanser Inc. and/or its affiliates. Other product and company names mentioned herein are trademarks or registered trademarks of their respective owners. © 2007 Quanser Inc. All rights reserved. Specifications are subject to change without notice. Errors and omissions excepted. NEW! Available in NI-ELVIS Bundle see ni.com for pricing!

Transcript of QNET DC Motor 111507 - Vanderbilt...

Page 1: QNET DC Motor 111507 - Vanderbilt Universityeecs.vanderbilt.edu/courses/eece258/Lab1/Lab1_QNET... · Description The QNET DC Motor Control Trainer has been designed to illustrate

Description

The QNET DC Motor Control Trainer has beendesigned to illustrate the fundamentals of DC motorcontrol using the NI ELVIS Workstation & LabVIEWsoftware. It can quickly and easily be configured to control motor position and speed, as well asparameter estimation and control of a Haptic Knob.

QNET - 010: DC Motor Control

Key Features

Reliable & Versatile• Durable DC servo motor • Built-in power amplifier• High resolution optical encoder

to sense position Convenient • Plug-and-play design facilitates

quick & easy lab setup• Compact & easy to store

Comprehensive• Covers a wide range of

curriculum topics• Complete documentation

provided through user manualsand setup guides

Compatible• Full compatibility with NI ELVIS

& LabVIEW

Curriculum Topics

• System Modeling • Model Validation • Position & Speed Control • System Simulation • PID Controller Design • Tracking Error • Sensitivity Analysis • Phase & Gain Margins • Disturbance Rejection

Product Information Sheet QNET - 010 - page 1 - rev. C

SystemParameters

Interfacing to theNI ELVIS Workstation

Motor

Torque constant 0.028 Nm/AmpTerminal resistance 3.30 OhmRotor Inertia 96.4 gm-cm2Max Torque 0.14 Nm

Linear Amplifier

Gain 2.3 V / VMax output voltage 24 VMax current 5 AmpereMax output power 120 WattCurrent sense resistor

Current sensitivity 1.0 Amp / VoltEncoder

Lines per revolution 1024 LinesResolution- Quadrature 0.0879 Deg / countType TTLSignals A, B

NI E-Series DAQ Signal range Signal

Inputs

Analog input #0 ± 10 V Current measurementCounter #0 TTL Encoder A & B, 1X, 2X and 4 XOutput

Analog output #0 ± 10 V Amplif ier command

The following connections are automatically achieved when the QNET-010 system is plugged in:

Specifications subject to change without notice

QUANSER ENGINEERING TRAINERSFOR NI ELVIS (QNET)

With Quanser the possibilities are infinite + 1 ( 9 0 5 ) 9 4 0 - 3 5 7 5 w w w . q u a n s e r . c o m

Products and/or services referred to herein are trademarks or registered trademarks of Quanser Inc. and/or its affiliates. Other product and companynames mentioned herein are trademarks or registered trademarks of their respective owners. © 2007 Quanser Inc. All rights reserved. Specificationsare subject to change without notice. Errors and omissions excepted.

NEW!Available in NI-ELVIS Bundle see ni.com

for pricing!

Page 2: QNET DC Motor 111507 - Vanderbilt Universityeecs.vanderbilt.edu/courses/eece258/Lab1/Lab1_QNET... · Description The QNET DC Motor Control Trainer has been designed to illustrate

With Quanser the possibilities are infinite + 1 ( 9 0 5 ) 9 4 0 - 3 5 7 5 w w w . q u a n s e r . c o m

Product Information Sheet QNET - 010 - page 2 - rev. C

Description

The Quanser Engineering Trainers for NI ELVIS (QNET) Series isa new line of training equipment that considerably increases thevalue of your investment in NI ELVIS & LabVIEW software.Designed to connect easily to the NI ELVIS Workstation in placeof the standard prototype board, these cost-effective, plug-and-playboards significantly extend the functionality of the NI platform. Awide range of control experiments that feature hardware-in-the-loopoperation can be conducted in the lab environment. Fully compatiblewith NI ELVIS & LabVIEW, the QNET series is formally endorsedby National Instruments.

NI ELVIS Workstation and LabVIEW available from National Instruments

• Maximize The Value Of Your Investment In NI ELVIS & LabVIEWQNET extends the functionality of NI ELVIS & LabVIEW through instrumented training boards that can beeasily connected to the Workstation and which facilitate a diverse range of control experiments.

• Dramatically Reduce Lab Planning TimeWith a comprehensive set of prepackaged curriculum material, the burden to develop lab material is alleviated.

• Optimize Lab Facilities for Multiple Experiment UseThe plug-and-play feature makes it easy to setup and switch experiments in a matter of minutes, resultingin optimal use of your facilities.

• Advance Learning & Facilitate Greater Insight into Engineering ConceptsWith hardware-in-the-loop implementations, students get hands-on, practical experience in the importantaspects of engineering practice. This spurs student interest and motivation, and ultimately improves thequality of education students receive.

• Lower Total Cost of OwnershipQuanser's and National Instrument’s unparalleled academic-based support ensure technical questions areresolved in a timely fashion, allowing professors & teaching assistants to focus on other, higher-value tasks.

About NI ELVIS : NI ELVIS is a LabVIEW-based platform designed to provide an integrated and flexible environment that enhances measurement, design, and prototyping in an educational laboratory. NI ELVIS integratesLabVIEW software, a multifunction data acquisition board, and the NI ELVIS Workstation to build a suite of virtual instruments. visit http://www.ni.com/academic

• DC Motor Control • Rotary Inverted Pendulum • HVAC Trainer

QNET Series

QNET Product Range

Why QNET?

QUANSER ENGINEERING TRAINERSFOR NI ELVIS (QNET)