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교재
Analog InputsAnalog OutputsDigital I/OEncoder InputsPWM OutputsCounters and Watchdog FeaturesSpecial Function I/O and Multiboard SynchronizationFuse Sense
Installing the Data Acquisition CardConnecting the Terminal BoardInstalling the Q8 Driver
-Windows 98/Me/2000/XP-windows NT
Digital I/OEncoder Inputs
-Encoder Connection
Analog Inputs
-Analog Input Channels 0-7-Low-Pass Analog Filtering
Analog OutputsSpecial Function I/OPowerGround Lugs
Launching the Quanser ToolboxThe Q8 Library
-Analog Input-Analog Output-Digital Input-Digital Output-Encoder Input-Counter Output-PWM Output-Watchdog
Additional Q8 Blocks
-Encoder Extras-Time Bases-Asynchronous Interrupts-Polling Interrupts-Status
Card IdentificationRegister MapInterrupt SourcesInterrupt Enable RegisterInterrupt Status RegisterControl Register
-Encoder Index Pulses-A/D Channel and Timing Selection-Starting A/D Conversions Manually-Starting A/D Conversions Automatically-A/D Standby Mode-D/A Transparent Mode-External Interrupt Control
Status Register
-Encoder Flags-A/D Conversion Flags
Counter Preload RegistersCounter Preload RegisterCounter Preload Low RegisterCounter RegisterCounter Preload High RegisterWatchdog Preload RegisterWatchdog Preload Low RegisterWatchdog RegisterWatchdog Preload High RegisterCounter Control Register
-Watchdog Timer Support-Watchdog Counter Support-Watchdog output Support-Watchdog Preload Control-Counter Support-Counter Gating-Counter Output Support-Counter Preload control
Digital I/O RegisterDigital Direction RegisterA/D Register
-Reading Conversion Results After all Conversious-Reading Conversion Results During Conversion
EncodersEncoder Data Register AEncoder Data Register BEncoder Control Register A
-Status FLAG Register-Reset and Load Signal Decoders Register ( RLD )-Counter Mode Register ( CMR )-Input/Output control Register ( IOR )-Index Control Register ( IDR )
Encoder Control Register BD/A Output Register AD/A Output Register BD/A Output Register CD/A Output Register DD/A Update RegisterD/A Mode RegisterD/A Mode Update Register
Configuring the Digital I/O
-Configuring All Channels as Inputs-Configuring All Channels as Outputs-Configuring 0-7 as Outputs, 8-15 as Inputs
Performing Digital I/O
-Reading Channels 8 and 10-Writing to channels 0 and 2
configuring the Analog Outputs
-Configuring all channels as bipolar, 10V-Configuring all channels as bipolar, 5V-Configuring all channels as unipolar, 10V-Configuring channels 0 and 2 as bipolar, 10V-Configuring transparnet mode for channels 0-3-Configuring transparent mode for all channels
Writing to the Analog Outputs
-Writing to Analog Output Channel 0-Writing to Analog Output Channels 0 and 4-Writing to Analog Output Channels 0 , 4 and 5
Configuring the Analog Inputs
-Selecting Analog Inputs 0 and 2 for Conversion
--Using the control Register--Using the A/D Register
-Selecting Channels 0 and 4 for Simultaneous SamplingReading the Analog Inputs
-Reading Channels 0 and 2
--Reading the Results After Conversions Complete--Reading the Results As Soon As Possible
-Reading Channels 0 and 4-Reading All Eight Channels
Configuring the Encoders
-Initializing All Encoder Channels-Configuring Channel 0 as a Non-Quadrature Input-Configuring Channels 0 and 1 as Non-Quadrature Inputs-Configuring Channels 0, 1 and 2-Configuring the Index Input to Reset the Count
Reading the Encoders
-Reading Encoder Input 0-Reading Encoder Input 0 and 1-Reading Encoder Input 0 and 2-Reading All Eight Encoder Inputs
Configuring the 32-Bit Counters
-Initializing the Counters-Generating a Square Wave Output-Generating a PWM Output-Generating a Constant Output
--Setting CNTR_OUT to '1'--Setting CNTR_OUT to '0'--Setting WATCHDOG to '1'--Setting WATCHDOG to '0'
-Generating Periodie Interrupts-Using the Watchdog Feature-Performing Periodie A/D Conversions
Appendix
IndexDataType.hHardware.hQ8.h