Advantech PC-LabCard PCI-1784 Manual do Utilizador

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Resumo do Conteúdo

Página 1 - User Manual

PCI-17808-ch Counter/Timer Card User Manual

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1.4 Software Overview Advantech offers a rich set of DLL drivers, third-party driver support and application software to help fully utilize the fu

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1.5 Device Drivers Programming Roadmap This section will provide you a roadmap to demonstrate how to build an application from scratch using Ad

Página 4 - Contents

For information about using other function groups or other development tools, please refer to the Creating Windows 95/NT/2000 Application with Devic

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1.6 Accessories Advantech offers a complete set of accessory products to support the PCI-1780 card. These accessories include: Wiring Cable ❏ PCL

Página 6 - 1. Introduction

2. Installation This chapter gives users a package item checklist, proper instructions about unpacking and step-by-step procedures for both driver a

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Also, pay extra caution to the following aspects to ensure proper installation: a Avoid physical contact with materials that could hold static el

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2.2 Driver Installation We recommend you to install the driver before you install the PCI-1780 card into your system, since this will guarantee a

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Step 3: Select the Individual Drivers option. Step 4: Select the specific device then just follow the installation instructions step by step to comp

Página 10 - 1.4 Software Overview

Step 1: Turn off your computer and unplug the power cord and cables. TURN OFF your computer before installing or removing any components on the com

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Fig. 2-3 The device name listed in the Device Manager Note: ✎ If your card is proper

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Copyright The documentation and the software included with this product are copyrighted 2002 by Advantech Co., Ltd. All rights are reserved. Advante

Página 13 - 1.6 Accessories

2.4 Device Setup & Configuration The PCI-1780 Utility program is a utility that allows you to setup, configure and test your device, and la

Página 14 - 2. Installation

Step 3: Scroll down the Supported Devices box to find the device that you wish to install, then click the Add… button to evoke the Existing unconfig

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Step 4: After you have finished configuring the device, click OK and the device name will appear in the Installed Devices box as seen below: Fig.

Página 17 - 2.3 Hardware Installation

3. Signal Connections 3.1 Overview Maintaining signal connections is one of the most important factors in ensuring that your application system is

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Board ID setting (SW1) ID3 ID2 ID1 ID0 Board ID 1 1 1 1 0 1 1 1 0 1 1 1 0 1 2 1 1 0 0 3 1 0 1 1 4 1 0 1 0 5 1 0 0 1 6 1 0 0 0 7 0 1 1 1

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3.3 Signal Connections Pin Assignment Figure 3-2 shows the pin assignments for the 68-pin I/O connector on the PCI-1780. GND 68 34 FOUT3 G

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I/O Connector Signal Description Table 3-2 I/O connector signal descriptions Signal Name Reference Direction Description GND - - DC ground +5V

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Period measurement This approach is a particular fit for a low frequency signal. CLK OUT GATE Counter 0 CLK OUT GATE Counter 1 Unknown Sig

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Frequency measurement This approach is a particular fit for a high frequency signal. Standard Clock Unknown Signal CLK OUT GATE Counter

Página 24 - 3. Signal Connections

Appendix A. Specifications Programmable Counter Channels 8 (independent) Resolution 16-bit Programmable Clock Source 8 independent Programmable C

Página 26 - 3.3 Signal Connections

Appendix B. Block Diagram PCIInterfaceClockDividerPCIBUSAddressDecoderOutputBufferInputBufferDI 0~7DO 0~7InterruptControlLogic16-bitCounter0~7GateCo

Página 28 - OUT GATE

Appendix C. Register Structure and Format C.1 Overview The PCI-1780 is delivered with an easy-to-use 32-bit DLL driver for user programming under

Página 29 - Unknown Signal

Table C-1 PCI-1780 register format (Part 1) PCI-1780 Register Format Base Address + HEX 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 Counter 0 Mode W CM1

Página 30 - Appendix A. Specifications

Table C-1 PCI-1780 register format (Part 2) PCI-1780 Register Format Base Address + HEX 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 Counter 2 Mode W CM1

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Table C-1 PCI-1780 register format (Part 3) PCI-1780 Register Format Base Address + HEX 15 13 12 11 7 6 5 4 3 2 1 0 Counter 4 Mode W CM15 20H 14

Página 32 - Appendix B. Block Diagram

Table C-1 PCI-1780 register format (Part 4) PCI-1780 Register Format Base Address + HEX 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 Counter 6 Mode W CM1

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Table C-1 PCI-1780 register format (Part 5) PCI-1780 Register Format Base Address + HEX 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 Command Enable W

Página 34 - C.1 Overview

Contents 1. INTRODUCTION... 1 1.1 FE

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Table C-1 PCI-1780 register format (Part 6) PCI-1780 Register Format Base Address + HEX 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 FOUT 0 Control W

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C.3 Counter 0/1/2/3/4/5/6/7 mode — BASE+00/08/10/18/20/28/30/38H Table C-2 PCI-1780 Register for counter 0/1/2/3/4/5/6/7 mode Base Addr. 15 14 13

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CM5 Count control (reload) 0 Reload from LOAD register 1 Reload from LOAD or HOLD register CM6 Count control (special gate) 0 Disable speci

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CM14 Gating polarity selection 0 High level for level active, rising edge for edge active 1 Low level for level active, falling edge for edge a

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C.4 Counter 0/1/2/3/4/5/6/7 load — BASE+02/0A/12/1A/22/2A/32/3AH Table C-3 PCI-1780 Register for counter 0/1/2/3/4/5/6/7 load Base Addr. 15 14 1

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C.5 Counter 0/1/2/3/4/5/6/7 hold — BASE+04/0C/14/1C/24/2C/34/3CH Table C-4 PCI-1780 Register for counter 0/1/2/3/4/5/6/7 hold Base Addr. 15 14 13

Página 41 - Base Addr

C.6 Counter 0/1/2/3/4/5/6/7 command — BASE+06/0E/16/1E/26/2E/36/3EH Table C-5 PCI-1780 Register for counter 0/1/2/3/4/5/6/7 command Base Addr. 1

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C.7 Command enable — BASE+40H Table C-6 PCI-1780 Register for command enable Base Addr. 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 Command enable 40H

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C.8 Interrupt control — BASE+42H Table C-7 PCI-1780 Register for interrupt control Base Addr. 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 Interrupt c

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C.10 Clear interrupt — BASE+44H Write any data to these two bytes to clear the interrupt. Table C-9 PCI-1780 Register for clear interrupt Base

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C.10 CLEAR INTERRUPT — BASE+44H ... 44 C.11 DIGITAL OUTPUT — BASE+48H...

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C.13 Board ID — BASE+4EH The PCI-1780 offers Board ID register BASE+4EH. With correct Board ID settings, users can easily identify and access each

Página 47 - Command enable

C.14 FOUT 0/1/2/3/4/5/6/7 control — BASE + 50~5FH Table C-13 PCI-1780 Register for FOUT 0/1/2/3/4/5/6/7 Control Base Addr. 15 14 13 12 11 10 9 8

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FS2 ~ FS0 FOUT source 000 External clock 001 CLK N 010 FOUT N-1 011 10 MHz clock 100 1 MHz clock 101 100 KHz clock 110

Página 50 - C.13 Board ID — BASE+4EH

Appendix D. Waveform of each mode The PCI-1780 offers 16 powerful counter functions to fulfill your industrial or laboratory applications. This chap

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As is fully explained in the TC section of the document, for these modes the counter is actually stopped or disarmed following the active-going sour

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D.1 Mode A waveform Software-Triggered Strobe with No Hardware Gating Mode A is one of the simplest operating modes. The counter will be available

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D.2 Mode B waveform Software-Triggered Strobe with Level Gating Mode B is identical to Mode A except that source edges are counted only when the a

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D.3 Mode C waveform Hardware-Triggered Strobe Mode C is identical to Mode A, except that counting will not begin until a Gate edge is applied to t

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D.4 Mode D waveform Rate Generator with No Hardware Gating Mode D is typically used in frequency generation applications. In this mode, the Gate i

Página 56 - D.1 Mode A waveform

1. Introduction Thank you for buying the Advantech PCI-1780. The PCI-1780 is a general purpose multiple channel counter/timer card for the PCI bus.

Página 57 - D.2 Mode B waveform

D.5 Mode E waveform Rate Generator with Level Gating Mode E is identical to Mode D, except the counter will only count those source edges that occ

Página 58 - D.3 Mode C waveform

D.6 Mode F waveform Non-Retriggerable One-Shot Mode F provides a non-retriggerable one-shot timing function. The counter must be armed before it w

Página 59 - D.4 Mode D waveform

D.7 Mode G waveform Software-Triggered Delayed Pulse One-Shot In Mode G, the Gate does not affect the counter's operation. Once armed, the co

Página 60 - D.5 Mode E waveform

D.8 Mode H waveform Software-Triggered Delayed Pulse One-Shot with Hardware Gating Mode H is identical to Mode G except that the Gate input is use

Página 61 - D.6 Mode F waveform

D.9 Mode I waveform Hardware-Triggered Delayed Pulse Strobe Mode I is identical to Mode G, except the counting will not begin until a Gate edge is

Página 62 - D.7 Mode G waveform

D.10 Mode J waveform Variable Duty Cycle Rate Generator with No Hardware Gating Mode J will find the greatest usage in frequency generation applic

Página 63 - D.8 Mode H waveform

D.11 Mode K waveform Variable Duty Cycle Rate Generator with Level Gating Mode K is identical to Mode J except that source edges are only counted

Página 64 - D.9 Mode I waveform

D.12 Mode L waveform Hardware-Triggered Delayed Pulse One-Shot Mode L is similar to Mode J except that counting will not begin until a Gate edge i

Página 65 - D.10 Mode J waveform

D.13 Mode O waveform Hardware-Triggered Strobe with Edge Disarm Mode O, shown in Figure O, is identical to Mode C except that the counter will be

Página 66 - D.11 Mode K waveform

D.14 Mode R waveform Non-Retriggerbale One-Shot with Edge Disarm Mode R is identical to Mode F except that the counter will be disarmed while an i

Página 67 - D.12 Mode L waveform

Special Shielded Cable for Noise Reduction The PCL-10168 shielded cable is specially designed for the PCI-1780 for reducing noise. Its wires are all

Página 68 - D.13 Mode O waveform

D.15 Mode U waveform Hardware-Triggered Delayed Pulse Strobe with Edge Disarm Mode U is identical to Mode I except that the counter will be disarm

Página 69 - D.14 Mode R waveform

66D.16 Mode X waveform Hardware-Triggered Delayed Pulse One-Shot with Edge Disarm Mode X is identical to Mode L except that the counter will be d

Página 70 - D.15 Mode U waveform

1.2 Applications ❏ Event counting ❏ One shot output ❏ Programmable frequency output ❏ Frequency measurement ❏ Pulse width measurement ❏ PWM output

Página 71 - D.16 Mode X waveform

Start to write your own application Read examples & driver manual Use test utility to test hardware Use driver utility to configure hardware I

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