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Measurement Specialties PCI-DAS64/M2/16 Computer Hardware User Manual
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1. 40 pin cable end 37 pin cable end Pin Signal Name Pin Signal Name 1 INTERRUPT IN 1 INTERRUPT IN 2 5V 20 5V 3 INTERRUPT ENABLE 2 INTERRUPT ENABLE 4 GND 21 GND 5 Port B 7 3 Port B 7 6 Port C 7 22 Port C 7 7 Port B 6 4 Port B 6 8 Port C 6 23 Port C 6 9 Port B 5 5 Port B 5 10 Port C 5 24 Port C 5 11 Port B4 6 Port B4 12 Port C 4 25 Port C 4 13 Port B 3 7 Port B 3 14 Port C 3 26 Port C 3 15 Port B 2 8 Port B 2 16 Port C 2 27 Port C 2 17 Port B 1 9 Port B 1 18 Port C 1 28 Port C 1 19 Port BO 10 Port BO 20 Port 29 Port 21 GND 11 GND 22 Port A 7 30 Port A 7 23 N C 12 N C 24 Port A6 31 Port A6 25 GND 13 GND 26 Port 5 32 PortA 5 27 N C 14 N C 28 Port A4 33 Port A4 29 GND 15 GND 30 Port A 3 34 Port A 3 31 N C 16 N C 32 Port A 2 35 PortA 2 33 GND 17 GND 34 Port A 1 36 Port A 1 35 5V 18 5V 36 Port A 0 37 Port A 0 37 GND 19 GND 38 N C 39 N C 40 N C For digital signal conditioning you can connect the BP40 37 cable to a C37FF x or C37FFS x cable and then connect one of these cables to the 37 pin connector on MCC s digital signal conditioning boards Refer to page 2 10 for a list of compatible boards The red stripe identifies pin X Figure 2 7 C37FF x cable PCI DAS64 M2 16 User s Guide Installing the PCI DAS64 M2 16 IO _ 7 20 19 Fig
2. 150 two required the C100HD50 x cable SCB 50 Compatible accessory products using CIO TERM100 the CIO0MMS x cable SCB 100 Compatible accessory products using CIO MINIAO the C40FF x cable Compatible accessory products SCB 37 with the C40 37F x cable CIO MINI37 or CIO TERMINAL with the BP40 37 x and the C37FF x CIO ERB24 or C37FFS x cable CIO ERBOS8 SSR RACK24 SSR RACK08 PCI DAS64 M2 16 User s Guide Installing the PCI DAS64 M2 16 Signal Name Pin Pin Signal Name Pinout main LLGND 100 50 GND CHOINHI 99 49 CHO INLO connector CH1INHI 98 48 CH1INLO CH2 IN HI 97 CH3 IN HI 96 CH4 IN HI 95 CH5 IN HI 94 47 CH2 IN LO 46 CH3 IN LO 45 CH4 IN LO 44 CH5 IN LO Table2 2 CH6INHI 93 43 CH6 INLO 32 channel differential CH7 IN HI 92 42 IN LO mode CH8 IN HI 91 41 CH8 INLO CH9 IN HI 90 CH10 IN HI 89 CH11 IN HI 88 CH12 IN HI 87 CH13 IN HI 86 CH14 IN HI 85 CH15 IN HI 84 LLGND 83 CH16 IN HI 82 CH17 IN HI 81 CH18 IN HI 80 CH19 IN HI 79 CH20 IN HI 78 CH21 IN HI 77 CH22 IN HI 76 CH23 IN HI 75 CH24 IN HI 74 CH25 IN HI 73 CH26 IN HI 72 CH27 IN HI 71 CH28 IN HI 70 CH29 IN HI 69 CH30 IN HI 68 CH31 IN HI 67 40 CH9 IN LO 39 CH10 IN LO 38 CH11 IN LO 37 CH12 IN LO 36 CH13 IN LO 35 CH14 IN LO 34 CH15 IN LO 33 LLGND 32 CH16 IN LO 31 CH17 IN LO 30 CH18 IN LO 29 CH19 IN LO 28 CH20 IN LO 27 CH21 IN LO 26 CH22 IN LO 25 CH23 IN LO 2
3. ADC CNTL Memory DAC e ONTE 1 GNIL 1 Trigger DAC ADC Queue Pacer Pacer CNTL 777 c adem DAC RT Sample CNTL CNTL S Control i Status Decoder EMA IRQ Regs ICTR CTRL nr External D A Trigger Pacer Gate lt 5 D A External Pacer In DAC Pacer Out lt lt 6 Interrupt In PCI Bridge Boot gt w BUS Master EEPROM DMA CHO DMA CH1 Control o E T CTR1 GATE CTR1 CLK CTR1 OUT Figure 4 1 PCI DAS64 M2 16 functional bock diagram The PCI DAS64 M2 16 provides 32 fully differential or 64 single ended analog inputs The input mode is software selectable with no switches or jumpers to set The PCI DAS64 M2 16 offers a 2 MHz sample rate The board offers full speed acquisition in single channel scans and will perform full accuracy multi channel scans of up to 1 5 MHz depending on the operating mode An 8 K sample gain channel queue is available making long complex sample sequencing simple An 8 K sample FIFO buffer combines with Bus Master DMA and scatter gather to assure data taken from the board is transferred into computer memory without missing samples 4 1 PCI DAS64 M2 16 User s Guide Functional Description Table 4 1 lists the input ranges and resolutions for the available input configurations and gains Ta
4. sh nnt 2 1 What comes with your PCI DAS64 M2 16 2 1 Hardware tA MALO EE kts tL Additional documentation Optional components Unpacking the PCI DAS64 M2 1IO etii ett ett eode tvi eise bee cus 2 2 reU RTI RENTRER ees 2 2 Installing the PCEEDAS64 M2 16 irent Prendre 2 2 Configuring the PCI DAS64 M2 16 essen nennen E E E E a iS E enne 2 3 Connecting the board for operations 2 3 Connectors cables main I O connector Pinout main connector esee Pin out auxiliary DIO connector 5 oder Oe ed pe t ON eee Rete e deep epi iege Field wiring signal termination and 1 2 10 Chapter 3 Programming and Developing Applications 3 1 Programming Languages o sae aa se E RT UN IG at ETE ite 3 1 Packaged Applications Programs ses ennn a a ener nnne nnne trennen nnne 3 1 Register Level Programming iun TR EAR PR REB ERR ESCENA A ga aan 3 1 Chapter 4 Functional Description sonaria einsa enaa irren etri ina etn unida Rada a inr 4 1 Analog inputs out E GEN EI ETUR ERN oe een ree Ae 4 1 Burst Modes cnp o Or REOR URGE FO UR DOM
5. 7 5 LSB 0 625 V 9 5 LSB 0 V to 5 000 V 7 5 LSB 0 V to 42 500 V 10 5 LSB to 1 250 12 5 LSB Each PCI DAS64 M2 16 is tested at the factory to assure the board s overall error does not exceed accuracy limits shown in Table 3 6 5 PCI DAS64 M2 16 User s Guide Specifications Typical accuracy is derived directly from the various component typical errors The information in Table 4 assumes that each of the errors contributes in the same direction Table 5 Analog input accuracy components specifications Range Gain error Offset error DLE ILE 5 000 V 3 0 max 2 0 typ 3 0 max 2 0 typ 1 0 max 0 5 typ 2 max 1 0 typ 2 500 V 3 0 max 2 0 typ 5 0 max 4 0 typ 1 0 max 0 5 typ 2 max 1 0 typ 1 250 V 3 0 max 2 0 typ 5 0 max 4 0 typ 1 0 max 0 5 typ 2 max 1 0 typ 0 625 V 5 0 max 4 0 typ 5 0 max 4 0 typ 1 0 max 0 5 typ 2 max 1 0 typ 0 to 5 000 V 4 0 max 3 0 typ 4 0 max 3 0 typ 1 0 max 0 5 typ 2 max 1 0 typ 0 to 2 500 V 6 0 max 5 0 typ 5 0 max 4 0 typ 1 0 max 0 5 typ 2 max 1 0 typ 0 to 1 250 V 6 0 max 5 0 typ 5 0 max 4 0 typ 1 0 max 0 5 typ 2 max 1 0 typ As shown in Table 5 total board error is a combination of gain offset differential linearity error DLE and integral linearity error IL
6. High pulse width 30 nS min clock input Low pulse width 50 nS min clock input Gate width high 50 nS min Gate width low 50 nS min Input low voltage 0 8 V max Input high voltage 2 0 V min Output low voltage 0 4 V max Output high voltage 3 0 V min 6 9 PCI DAS64 M2 16 User s Guide Specifications Pacer Table 16 Pacer specifications ADC pacer type ASIC Configuration One down counter 24 bits 1 scan interval 1 sample interval ADC pacer source 40 MHz internal source ADC pacer gate Internally controlled by software hardware trigger ADC pacer out ADC pacer clock available at user connector A D PACER OUT DAC pacer type ASIC Configuration One down counter 24 bits 1 scan interval 1 sample interval DAC pacer source 40 MHz or 100 kHz internal source Software selectable DAC pacer gate Internally controlled by software hardware trigger DAC pacer out DAC pacer clock Available at user connector SSH OUT D A PACER OUT This pin is software selectable as SSH OUT default or D A PACER OUT Internal pacer crystal oscillator 40 MHz Frequency accuracy 50 ppm Power consumption Table 17 Power specifications 5 2 9 typical 3 3 A max 12 10 mA max Environmental Table 18 Environmental specifications Operating temperature range 0 to 50 C Storage temperature range 40 to 100 C Humid
7. 16 after it has fully warmed up For best results calibrate the board immediately before making critical measurements The high resolution analog components on the board are somewhat sensitive to temperature This pre measurement calibration insures that your board is operating at the optimum calibration values Configuring the PCI DAS64 M2 16 All hardware configuration options on the PCI DAS64 M2 16 are software controlled You can select some of the configuration options using nstaCal such as the analog input configuration 64 single ended or 32 differential channels and the edge used for triggering when using an external pacer Once configured any program that uses Measurement Computing s Universal Library will initialize the hardware according to these selections Connecting the board for IJO operations Connectors cables main connector Table 2 1 lists the board connectors applicable cables and compatible accessory boards Table 2 1 Main board connector cables accessory equipment Parameter Specification Connector type Main connector Shielded SCSI 100 pin D type Auxiliary DIO connector 40 pin header connector Compatible cables main connector 100 50 unshielded ribbon cable x 3 or 6 feet C100MMS x shielded round cable x 1 2 or 3 meters Compatible cables 40 pin auxiliary C40FF x connector 40 37 BP40 37 x Compatible accessory products using
8. 40 pin Female 37 pin Female IDC Connector Dsub Connector 20 37 40 Figure 2 4 C40 37F x cable 27 PCI DAS64 M2 16 User s Guide Installing the PCI DAS64 M2 16 37 pin Male D Connector with Backplate Assembly The red stripe and arrow identify pin 1 Figure 2 5 BP40 37 cable GND 5 GND NC GND NC GND NC GND FIRSTPORTB BIT 0 FIRSTPORTB BIT 1 FIRSTPORTB BIT2 FIRSTPORTB BIT 3 FIRSTPORTB BIT4 FIRSTPORTB BIT 5 FIRSTPORTB BIT 6 FIRSTPORTB BIT 7 NC NC EN E EE N 4 01 O CO o O O 37 36 35 34 33 32 31 30 29 28 27 26 25 24 23 22 21 20 FIRSTPORTA BIT 0 FIRSTPORTA BIT 1 FIRSTPORTA BIT 2 FIRSTPORTA BIT 3 FIRSTPORTA BIT 4 FIRSTPORTA BIT 5 FIRSTPORTA BIT 6 FIRSTPORTA BIT 7 FIRSTPORTC BIT 0 FIRSTPORTC BIT 1 FIRSTPORTC BIT 2 FIRSTPORTC BIT 3 FIRSTPORTC BIT 4 FIRSTPORTC BIT 5 FIRSTPORTC BIT 6 FIRSTPORTC BIT 7 GND 5V Figure 2 6 BP40 37 cable pin out 40 40 pin Female IDC Connector 2 8 PCI DAS64 M2 16 User s Guide Installing the PCI DAS64 M2 16 40 pin to 37 pin signal mapping Signal mapping on the C40 37F x and the BP40 37 cables is not 1 1 Table 2 5 lists the pin numbers of the signals on the 40 pin end and the pin numbers of the associated signals on the 37 pin end Table 2 5 Signal mapping on the C40 37F x and BP40 37F cables
9. 86 36 CH45 IN CH14 IN 85 35 CH46 IN CH15 IN 84 34 CH47 IN LLGND 83 33 LLGND CH16 IN 82 32 48 IN CH17 IN 81 31 CH49 IN CH18 IN 80 30 CH50 IN CH19 IN 79 29 CH51 IN CH20 IN 78 28 CH52 IN CH21 IN 77 27 CH53 IN CH22 IN 76 26 CH54 IN CH23 IN 75 25 CH55 IN CH24 IN 74 24 CH56 IN CH25 IN 73 23 CH57 IN CH26 IN 72 22 CH58 IN CH27 IN 71 21 CH59 IN CH28 IN 70 20 60 CH29 IN 69 19 CH61 IN CH30 IN 68 18 CH62 IN CH31 IN 67 17 CH63 IN D A GND 0 66 16 12V D A OUT 0 65 15 GND D A GND 1 64 14 12V D A OUT 1 63 13 GND PC 5V 62 12 DINO D A EXTERNAL PACER 61 11 DIN1 EXT D A TRIGGER PACER GATE 60 10 DIN2 SSH OUT DAC PACER OUT 59 9 DIN3 A D PACER OUT 58 8 DOUTO A D PACER GATE 57 7 DOUT1 ANALOG TRIGGER IN 56 6 DOUT2 A D START TRIGGER IN 55 5 DOUT3 A D STOP TRIGGER IN 54 4 CTR1 GATE A D EXTERNAL PACER 53 3 CTR1 CLK EXTERNAL INTERRUPT 52 2 CTR1 OUT GND 51 1 GND PCI slot 2 5 PCI DAS64 M2 16 User s Guide Installing the PCI DAS64 M2 16 Strain relief is stamped Pins 1 50 49 50 Pins 1 50 are on the long side of the D connector The red stripe identifies pin 1 99 100 L Pins 51 100 are on the short side of Strain relief is 51 52 the connector Stamped Pins 51 100 V The red stripe identifies pin 51 Figure 2 1 C100HD50 x cable connections m cem P D lt Figure 2 2 100 5 cable 2 6 P
10. CH31 IN LO 67 CH31 IN HI 18 CH30 IN LO 68 CH30 IN HI 19 CH29 IN LO 69 CH29 IN HI 20 CH28 IN LO 70 CH28 IN HI 21 CH27 IN LO 71 CH27 IN HI 22 CH26 IN LO 72 CH26 IN HI 23 CH25 IN LO 73 CH25 IN HI 24 CH24 IN LO 74 CH24 IN HI 25 CH23 IN LO 75 CH23 IN HI 26 CH22 IN LO 76 CH22 IN HI 27 CH21 IN LO 7T CH21 IN HI 28 CH20 IN LO 78 CH20 IN HI 29 CH19 IN LO 79 CH19 IN HI 30 CH18 IN LO 80 CH18 IN HI 31 CH17 IN LO 81 CH17 IN HI 32 CH16 IN LO 82 CH16 IN HI 33 LLGND 83 LLGND 34 CH15 IN LO 84 CH15 IN HI 35 CH14 IN LO 85 CH14 IN HI 36 CH13 IN LO 86 CH13 IN HI 37 CH12 IN LO 87 CH12 IN HI 38 CH11 IN LO 88 CH11 IN HI 39 CH10 IN LO 89 CH10 IN HI 40 CH9 IN LO 90 CH9 IN HI 41 CH8 IN LO 91 CH8 IN HI 42 CH7 IN LO 92 CH7 IN HI 43 CH6 IN LO 93 CH6 IN HI 44 CH5 IN LO 94 CH5 IN HI 45 CH4 IN LO 95 CH4 IN HI 46 CH3 IN LO 96 CH3 IN HI 47 2 97 CH2 IN HI 48 CH1 IN LO 98 CH1 IN HI 49 CHO IN LO 99 CHO IN HI 50 GND 100 LLGND PCI DAS64 M2 16 User s Guide Specifications Single ended mode pin out Table 22 64 channel single ended mode pin out Pin Signal name Pin Signal name 1 GND 51 GND 2 CTR1 OUT 52 EXTERNAL INTERRUPT 3 CTR1 CLK 53 A D EXTERNAL PACER 4 CTR1 GATE 54 A D STOP TRIGGER IN 5 DOUT3 55 A D START TRIGGER IN 6 DOUT2 56 ANALOG TRIGGER
11. Eri de t breed deri eim pe iicet 4 2 Analog output ite RR A ARG ate e RU ERE E Ds 4 2 Digital TO sao eno diuitiis en ttv dai ee mie tete dal aa 4 2 Counter timer iie SEA Bess BAA p ied dtl teo e e c n EUR een 4 2 Chapter 5 Calibrating the 5864 2 16 5 1 osito Sot usa ALT 5 1 Calibratiot theoty ane ER ee e RA e es 5 2 Chapter 6 Specifications eite a a ga aa nan 6 4 Analogtput tee tte nuc dtu 6 4 SystemithroughpUt cssc ia ate itae a a e e P e p a ra 6 5 Accuracy Crosstalk Noise performante 2 6 7 iv PCI DAS64 M2 16 User s Guide Analog output URGERE GRE ERO RR REIR ee RR ICONE 6 7 Accuracy Analog output pacing and triggering nee enne nennen neret trennen enne entere 6 8 Digital input output roe thee p it e ede ean ORIS ee 6 8 se gti eU dis on ste t ne dite d Ure i eius 6 9 Oe e tpe fee een et etate ede aen rete ee te e MI 6 9 PACED Sass E 6 10 Powet consuimptionc ss iit tei erit bt audet aka nb ah sa 6 10 Environmental oret Re S STREET RTT 6 10 ite eA RB BI 6 10 Main connector and pitt Out RE e RR ERE Mi ek ee A EAA Hen 6 10 Di
12. N61000 4 3 1997 Radiated Electromagnetic Field immunity Criteria A N61000 4 4 1995 Electric Fast Transient Burst immunity Criteria A N61000 4 5 1995 Surge immunity Criteria N61000 4 6 1996 Radio Frequency Common Mode immunity Criteria A N61000 4 8 1994 Power Frequency Magnetic Field immunity Criteria A N61000 4 11 1994 Voltage Dip and Interrupt immunity Criteria A Declaration of Conformity based on tests conducted by Chomerics Test Services Woburn MA 01801 USA in September 2001 Test records are outlined in Chomerics Test Report EMI3053 01 NH NH 8 8 NH NM Hj rri pi pj pn pn nd We hereby declare that the equipment specified conforms to the above Directives and Standards 2 ht Carl Haapaoja Director of Quality Assurance Measurement Computing Corporation 10 Commerce Way Suite 1008 Norton Massachusetts 02766 508 946 5100 Fax 508 946 9500 E mail info mccdag com www mccdag com
13. frequency see Figure 5 1 We recommend that you select a frequency as close as possible to the applications sampling frequency Instacal File Install Tes Help Bp ips ad a PC Board List 5 0 Primary bus 01 BdHO PCI DAS64 M2 16 4 For optimum calibration please select the frequency closest to your expected aggregate sampling rate Ready riri Figure 5 1 InstaCal Calibration Frequency dialog Table 5 1 lists the available calibration frequencies and recommended sampling frequency ranges Using this table as a guide a 1 LSB offset error relative to the calibrated offset is maintained over a given sampling frequency range We recommend that you perform A D calibration at 100 kHz if you intend to use the entire sampling frequency range but do not want to re calibrate for a given sampling frequency span In that case you can expect a 6 LSB offset drift with respect to the calibrated offset over the full 10 Hz to 2 MHz range 5 1 PCI DAS64 M2 16 User s Guide Calibrating the PCI DAS64 M2 16 Table 5 1 Recommended A D calibration frequencies Calibration Frequency kHz Min Sampling Frequency kHz Max Sampling Frequency kHz 2 0 01 6 15 6 30 50 30 70 100 70 200 300 200 400 650 400 1000 1250 1000 1500 1850 1500 2000 For best results calibrate the board immediately prior to making your measurements The
14. page 2 7 for a complete list of compatible accessory products Unpacking the PCI DAS64 M2 16 As with any electronic device you should take care while handling to avoid damage from static electricity Before removing the PCI DAS64 M2 16 from its packaging ground yourself using a wrist strap or by simply touching the computer chassis or other grounded object to eliminate any stored static charge If any components are missing or damaged notify Measurement Computing Corporation immediately by phone fax or e mail Phone 508 946 5100 and follow the instructions for reaching Tech Support Fax 508 946 9500 to the attention of Tech Support Email techsupport mccdaq com Installing the software Refer to the Quick Start Guide for instructions on installing the software on the Measurement Computing Data Acquisition Software CD This booklet is available in PDF at www mccdag com PDFmanuals DA Q Software Quick Start pdf Installing the PCI DAS64 M2 16 The PCI DAS64 M2 16 board is completely plug and play with no switches or jumpers to set Configuration 1s controlled by your system s BIOS To install your board follow the steps below Install the MCC DAQ software before you install your board The driver needed to run your board is installed with the MCC DAQ software Therefore you need to install the MCC DAQ software before you install your board Refer to the Quick Start Guide for instructions on installing the softwar
15. 16 bit down counter A variety of analog and digital trigger modes with software selectable trigger levels and direction The PCI DAS64 M2 16 board is designed with Measurement Computing s powerful System Timing Controller STC chip The STC chip controls all A D sampling and D A update rates as well as controlling the 8K A D FIFO the 8K gain channel queue and the 16K D A FIFO buffer This functionality is based on the STC chip s use of an on board 32K x 16 SRAM The STC chip assigns functions to various parts of the SRAM such as the A D FIFO buffer and provides full speed control and arbitration among the various functions using the various sections of the SRAM buffer The STC allows simultaneous full speed A D sampling D A updating and gain channel queue sequencing with variable inter sample timing if desired The STC chip performs these functions up to 5 MHz and is available as an OEM component for use in your own designs The board provides bus mastering and scatter gather functionality to assure the desired system timing is maintained The PCI DAS64 M2 16 is completely plug and play with no switches jumpers or potentiometers on the board board addresses interrupt channels etc are set by your computers plug and play software Calibration is performed via software by using on board trim D A converters Software features For information on the features of nstaCal and the other software included with your PCI DAS64 M2 16 refer t
16. 4 CH24 IN LO 23 CH25 IN LO 22 CH26 IN LO 21 CH27 IN LO 20 CH28 IN LO 19 CH29 IN LO 18 CH30 IN LO 17 CH31 IN LO D A GND 0 66 16 12V D A OUT 0 65 15 GND D A GND 1 64 14 12V D A OUT 1 63 13 GND PC 5V 62 12 DINO D A EXTERNAL PACER 61 11 DIN1 EXT D A TRIGGER PACER GATE 60 10 DIN2 SSH OUT DAC PACER OUT 59 9 DIN3 A D PACER OUT 58 8 DOUTO A D PACER GATE 57 7 DOUT1 ANALOG TRIGGER IN 56 6 DOUT2 A D START TRIGGER IN 55 5 DOUT3 A D STOP TRIGGER IN 54 4 CTR1 GATE A D EXTERNAL PACER 53 3 CTR1 CLK EXTERNAL INTERRUPT 52 2 CTR1 OUT GND 51 1 GND PCI slot 2 4 PCI DAS64 M2 16 User s Guide Installing the PCI DAS64 M2 16 Table 2 3 64 channel single ended mode Signal Name Pin Pin Signal Name LLGND 100 50 GND CHO IN 99 49 CH32 IN CH1 IN 98 48 CH33 IN CH2 IN 97 47 CH34 IN CH3 IN 96 46 CH35 IN CH4 IN 95 45 CH36 IN CH5 IN 94 44 CH37 IN CH6 IN 93 43 CH38 IN CH7 IN 92 42 CH39 IN CH8 IN 91 41 CH40 IN CH9 IN 90 40 CH41 IN CH10 IN 89 39 CH42 IN CH11 IN 88 38 CH43 IN CH12 IN 87 37 CH44 IN CH13 IN
17. 66 CIO MINI37 37 pin universal screw terminal board Details are available on our web site at www mccdagq com cbicatalog cbiproduct asp dept 1id 102 amp pf 14 255 CIO TERMINAL Universal screw terminal with prototype area and circuitry Includes a 37 pin screw terminal board Details are available on our web site at http www mccdaq com cbicatalog cbiproduct asp dept id 102 amp pf 14 282 For digital signal conditioning you can connect the PCI DAS64 M2 16 to the following boards using the C40 37F x cable directly or by combining the BP40 37 x cable with the C37FF x or C37FFS x cable CIO ERB24 24 Form C 6A relays Details on this product are available on our web site at www mccdaq com cbicatalog cbiproduct asp dept 1d 123 amp pf 14 241 08 Eight Form C 6A relays Details are available on our web site at www mccdaq com cbicatalog cbiproduct asp dept 1d 123 amp pf 14 240 SSR RACK24 24 channel solid state module rack Details are available on our web site at www mecdag com cbicatalog cbiproduct asp dept_id 122 amp pf_id 1193 SSR RACKO8 24 channel solid state module rack Details are available on our web site at www mccdaq com cbicatalog cbiproduct asp dept 1d 122 amp pf 14 620 Chapter 3 Programming and Developing Applications After following the installation instructions in Chapter 2 your board should now be installed and ready for use Although the board is part of the large
18. CI DAS64 M2 16 User s Guide Installing the PCI DAS64 M2 16 Pin out auxiliary DIO connector The auxiliary digital connector can be accessed using a variety of cabling schemes To bring the 40 pin header out to a bracket at the back of the PC use a BP40 37 adapter This terminates in a CIO DIO series compatible connector to which you can connect a CIO MINI37 or CIO TERMINAL screw terminal board using a C37FF x or C37FFS x cable Other options include direct cabling using a C40 37F x which maintains CIO DIO compatibility or using the C40FF x cable with the CIO MINIAO screw terminal board Table 2 4 Auxiliary digital connector pin out NC 1 2 PC 5V NC 3 4 DIG GND FIRSTPORTB 7 5 6 FIRSTPORTC Bit 7 FIRSTPORTB Bit6 7 8 FIRSTPORTC Bit 6 FIRSTPORTB Bit5 9 10 FIRSTPORTC Bit 5 FIRSTPORTB Bit4 11 12 FIRSTPORTC Bit 4 FIRSTPORTB Bit3 13 14 FIRSTPORTC Bit 3 FIRSTPORTB Bit 2 15 16 FIRSTPORTC Bit 2 FIRSTPORTB Bit 1 17 18 FIRSTPORTC Bit 1 FIRSTPORTB BitO 19 20 FIRSTPORTC Bit 0 DIG GND 21 22 FIRSTPORTA Bit 7 NC 23 24 FIRSTPORTA Bit 6 DIG GND 25 26 FIRSTPORTA Bit 5 NC 27 28 FIRSTPORTA Bit 4 DIG GND 29 30 FIRSTPORTA Bit 3 NC 31 32 FIRSTPORTA Bit 2 DIG GND 33 34 FIRSTPORTA Bit 1 5V 35 36 FIRSTPORTA Bit 0 DIG GND 37 38 NC NC 39 40 NC The red stripe 2 identifies pin 1 1 39 40 39 40 Female 40 Female IDC Connector IDC Connector Figure 2 3 C40FF x cable The red stripe identifies vx
19. E The theoretical worst case error of the board can be calculated by summing these component errors Worst case errors are realized only in the unlikely event that each of the component errors are at their maximum level and causing error in the same direction Crosstalk Crosstalk is defined here as the influence of one channel upon another when scanning two channels at the maximum rate A full scale 100 Hz triangle wave is input on channel 1 and channel 0 is tied to analog ground at the 100 pin user connector Table 6 summarizes the influence of channel 1 on channel 0 with the effects of noise removed The residue on channel 0 is described in LSBs Table 6 Crosstalk specifications Range Crosstalk LSB Per channel rate kS s ADC rate kS s 5 000 V 15 750 1500 2 500 V 15 750 1500 1 250 20 750 1500 0 625 8 375 750 0 V to 5 000 15 750 1500 0 V to 2 500 20 750 1500 to 1 250 8 375 750 Table 7 Analog input drift specifications Analog input full scale gain drift 0 3 LSB C typical Analog input zero drift 2 1 LSB C typical Overall analog input drift 2 4 LSB C typical Common mode range 5 CMRR 60Hz 90 dB Input leakage current 2 3 nA Input impedance 10x 10 Q Absolute maximum input voltage 15 V Warm up time 60 minutes 6 6 PCI DAS64 M2 16 User s Guide Specifications Noise per
20. IN 7 DOUT1 57 A D PACER GATE 8 DOUTO 58 A D PACER OUT 9 DIN3 59 SSH OUT D A PACER OUT 10 DIN2 60 EXTERNAL D A TRIGGER PACER GATE 11 DIN1 61 D A EXTERNAL PACER 12 DINO 62 5 13 GND 63 D A OUT 1 14 12 64 D A GND 1 15 GND 65 D A OUT 0 16 12V 66 D A GND 0 17 CH63 IN 67 CH31 IN 18 CH62 IN 68 CH30 IN 19 CH61 IN 69 CH29 IN 20 CH60 IN 70 CH28 IN 21 CH59 IN 71 CH27 IN 22 CH58 IN 72 CH26 IN 23 CH57 IN 73 CH25 IN 24 CH56 IN 74 24 IN 25 CH55 IN 75 CH23 IN 26 54 76 CH22 IN 27 CH53 IN 77 211 28 52 78 CH20 IN 29 CH51 IN 79 CH19 IN 30 CH50 IN 80 CH18 IN 31 CH49 IN 81 CH17 IN 32 CH48 IN 82 CH16 IN 33 LLGND 83 LLGND 34 CH47 IN 84 CH15 IN 35 CH46 IN 85 CH14 IN 36 CH45 IN 86 CH13 IN 37 44 IN 87 CH12 IN 38 CH43 IN 88 CH11 IN 39 CH42 IN 89 CH10 IN 40 CH41 IN 90 9 IN 41 CH40 IN 91 CH8 IN 42 CH39 IN 92 CH7 IN 43 CH38 IN 93 CH6 IN 44 CH37 IN 94 CH5 IN 45 CH36 IN 95 CH4 IN 46 CH35 IN 96 CH3 IN 47 CH34 IN 97 CH2 IN 48 CH33 IN 98 CH1 IN 49 CH32 IN 99 CHO IN 50 GND 100 LLGND 6 12 PCI DAS64 M2 16 User s Guide Specifications Digital input output connector and pin out Table 23 Digital connector specifications Connector type 40 pin header Connector compatibility Translates to standard CIO DIO24 type using 40 37 Compatible cable C40FF 2 Compat
21. On power up or reset all I O ports default to the input state high impedance Counter timer I O The PCI DAS64 M2 16 provides one 16 bit down counter 1 3 of an 82C54 Clock gate and output connections are available at the 100 pin user I O connector 4 2 Chapter 5 Calibrating the PCI DAS64 M2 16 Overview The PCI DAS64 M2 16 provides self calibration of the analog inputs and outputs eliminating the need for external equipment and user adjustments All adjustments are made via 8 bit calibration DACs which are referenced to an on board factory calibrated standard The board is fully calibrated at the factory with calibration coefficients stored in nvRAM At run time these calibration factors are loaded into system memory and are automatically retrieved each time you specify a different DAC ADC range You can recalibrate any time using factory voltage standards by selecting the Calibrate option in nstaCal A full calibration typically requires less than two minutes We strongly recommend that you turn your computer on and allow at least 60 minutes for the internal computer case temperature to stabilize prior to calibrating or acquiring data with the board A D calibration is performed at user selectable conversion frequencies This is required to reduce any frequency dependent offset effects across the operating range When you pull down the Calibrate menu option and click on A D a dialog opens for you to select a calibration
22. PCI DAS64 M2 16 PCI Bus Compatible Analog Digital Data Acquisition amp Control Board User s Guide Laer ante MEASUREMENT COMPUTING PCI DAS64 M2 16 Multifunction Analog amp Digital I O User s Guide A MEASUREMENT COMPUTING Document Revision 1 July 2006 Copyright 2006 Measurement Computing Corporation Your new Measurement Computing product comes with a fantastic extra Management committed to your satisfaction Refer to www mccdaq com execteam html for the names titles and contact information of each key executive at Measurement Computing Thank you for choosing a Measurement Computing product and congratulations You own the finest and you can now enjoy the protection of the most comprehensive warranties and unmatched phone tech support It s the embodiment of our two missions offer the highest quality computer based data acquisition control and GPIB hardware and software available at the best possible price To offer our customers superior post sale support FREE Whether providing unrivaled telephone technical and sales support on our latest product offerings or continuing that same first rate support on older products and operating systems we re committed to you Lifetime warranty Every hardware product manufactured by Measurement Computing Corporation is warranted against defects in materials or workmanship for the life of the product Products found defec
23. ation The following electronic documents provide relevant information to the operation of your PCI DAS64 M2 16 MCC s Specifications PCI DAS64 M2 16 the PDF version of the Specifications chapter in this guide is available on our web site at www mccdaq com pdfs PCI DAS64 M2 16 pdf Quick Start Guide is available our web site at www mccdaq com PDFmanuals DAQ Software Quick Start pdf MCC s Guide to Signal Connections is available on our web site at www mccdag com signals signals pdf MCC s Universal Library User s Guide is available on our web site at www mccdaq com PDFmanuals sm ul user guide pdf MCC s Universal Library Function Reference is available our web site at www mccdaq com PDFmanuals sm ul functions pdf Universal Library for LabVIEW User s Guide is available on our web site at www mecdag com PDFmanuals SM UL LabVIEW pdf PCI DAS64 M2 16 User s Guide this document is also available on our web site at www mcecdag com PDFmanuals PCI DAS64 M2 16 pdf vi 1 Introducing the PCI DAS64 M2 16 Overview PCI DAS64 M2 16 features The PCI DAS64 M2 16 board offers a combination of high speed channel count and resolution on a single PCI bus data acquisition board It offers 64 single ended or 32 differential 16 bit analog inputs 2 MHz sample rate Two 16 bit analog outputs 100 kHz D A update rate 16 K FIFO 32 bits of digital I O One
24. ble 11 Analog output accuracy components specifications Range Gain error LSB Offset error LSB DLE LSB ILE LSB 5 0 10 0 max 5 0 1 0 1 0 max Each PCI DAS64 M2 16 is tested at the factory to assure the board s overall error does not exceed the absolute accuracy limits listed Table 10 PCI DAS64 M2 16 User s Guide Specifications Analog output pacing and triggering Table 12 Analog output pacing and triggering specifications D A pacing Internal counter ASIC software programmable External source D A external pacer Software paced D A gate sources External digital external D A trigger pacer gate software programmable External analog analog trigger in D A gating modes External digital Programmable active high or active low level or edge External analog Software configurable for above or below reference Gating levels are set by DACO or DACI D A trigger sources External digital external D A trigger pacer gate Software triggered D A triggering modes External digital Software configurable for rising or falling edge Data transfer From 16 k RAM buffer via DMA demand or non demand mode using scatter gather Programmed I O 100 kS s max per channel Digital input output Table 13 Digital I O specifications Digital type main connector Ou
25. ble 4 1 Analog input range and resolution configurations Bipolar Unipolar Range Resolution Range Resolution 5 153 0to5V 76 3 uV 42 5 76 3 uV 0102 5 V 38 1 1 25 38 1 uV 0to 1 25 V 19 1 uV 40 625 V 19 1 uV Burst mode Channel to channel skew is the result of multiplexing the A D inputs It is defined as the time between consecutive samples Burst mode minimizes channel to channel skew by clocking the A D at a high rate between successive samples within a scan then waiting a specified time before starting a new scan The PCI DAS64 M2 16 provides burst mode with a 667 ns minimum sample skew delay Analog output The PCI DAS64 M2 16 board provides two high speed 5V 16 bit analog outputs The outputs are updated via on board 16 K FIFO buffer and provide a 100 kHz max update rate Repetitive D A based waveforms can be stored in on board memory and generated without requiring ongoing PCI bus transfers The outputs provide rated accuracy to 15 mA are short circuit protected 25 mA limit and are cleared to 0 volts on power up or reset The board supports simultaneous full speed operation of both the A D and D A Digital I O The PCI DAS64 M2 16 provides 32 bits of digital I O An 82C55 chip provides 24 bits of CMOS compatible at the board s 40 pin auxiliary digital connector Four LSTTL compatible digital inputs and four outputs are provided on the main 100 pin connector
26. e 1 Turn your computer off open it up and insert your board into an available PCI slot 2 Close your computer and turn it on If you are using an operating system with support for plug and play such as Windows 2000 or Windows XP a dialog box pops up as the system loads indicating that new hardware has been detected If the information file for this board 15 not already loaded onto your PC you will be prompted for the disk containing this file The MCC DAQ software contains this file If required insert the Measurement Computing Data Acquisition Software CD and click OK 3 To test your installation and configure your board run the InstaCal utility you installed in the previous section Refer to the Quick Start Guide that came with your board for information on how to initially set up and load nstaCal If your board has been powered off for more than 10 minutes allow your computer to warm up for at least 60 minutes before acquiring data This warm up period is required for the board to achieve its rated accuracy The high speed components used on the board generate heat and it takes this amount of time for a board to reach steady state if it has been powered off for a significant amount of time 2 2 PCI DAS64 M2 16 User s Guide Installing the PCI DAS64 M2 16 Calibrate the PCI DAS64 M2 16 after it has warmed up and immediately before making critical measurements Use the nstaCal utility to calibrate the PCI DAS64 M2
27. ersal Library or one of the packaged application programs mentioned above to control your board Only experienced programmers should try register level programming If you need to program at the register level in your application refer to the STC Register Map for the PCI DAS64 Mx 16 Series available at www mcecdag com registermaps RegMapSTC PCI DAS64 Mx 16 PDF 3 1 Chapter 4 Functional Description PCI DAS64 M2 16 block diagram The PCI DAS64 M2 16 is a multifunction measurement and control board that provides the following features 32 differential or 64 single ended 16 bit analog inputs Two 16 bit analog outputs 32 digital I O channels One 16 bit counter PCI DAS64 M2 16 functions are illustrated in the block diagram shown here Gain and Offset Autocal oo o gt Analog In 64 CH single ended 9 gt 32 CH differential o gt Analog g Trigger AID Start Stop Triggero AID Pacer Gateo AID External Pacero SSH Out AID Internal Pacer Out o p Gain 24 bits DIO FIRSTPORTA 7 0 lt PortA FIRSTPORTB 7 0 lt gt PortB FIRSTPORTC 7 0 lt PortC Control DIN 3 0 gt Inputs DOUT 3 0 4 4 Outputs Analog inputs Holding REG Queue ADC DAC 0 1 Buffer Buffer Buffer 8K 8K 16K 32K x 16 SRAM Gain and Offset Autocal
28. fferential mode pin out Single ended mode pin out Digital input output connector and pin 6 13 About this User s Guide What you will learn from this user s guide This user s guide explains how to install configure and use the PCI DAS64 M2 16 so that you get the most out of its analog digital and timing I O features This user s guide also refers you to related documents available on our web site and to technical support resources Conventions in this user s guide For more information on Text presented in a box signifies additional information and helpful hints related to the subject matter you are reading Caution Shaded caution statements present information to help you avoid injuring yourself and others damaging your hardware or losing your data dit Angle brackets that enclose numbers separated by a colon signify a range of numbers such as those assigned to registers bit settings etc bold text Bold text is used for the names of objects on the screen such as buttons text boxes and check boxes For example 1 Insert the disk or CD and click the OK button italic text Italic text is used for the names of manuals and help topic titles and to emphasize a word or phrase For example The nstaCal installation procedure is explained in the Quick Start Guide Never touch the exposed pins or circuit connections on the board Where to find more inform
29. formance Table 8 summarizes the worst case noise performance for the PCI DAS64 M2 16 Noise distribution 1s determined by gathering 50 K samples with inputs tied to ground at the user connector Samples are gathered at the maximum specified single channel sampling rate Specification applies to both single ended and differential modes of operation Table 8 Noise performance specifications Range 2 counts 1 count MaxCounts LSBrms Note 2 5 000 V 60 40 22 3 3 2 500 V 60 40 24 3 6 1 250 V 60 40 26 3 9 0 625 V 45 30 32 4 8 0 to 5 000 V 60 40 24 3 6 0 to 2 500 V 60 40 26 3 9 0 to 1 250 V 45 30 32 4 8 Note 2 RMS noise is defined as the peak to peak bin spread divided by 6 6 Analog output Table 9 Analog output specifications Resolution 16 bits Number of channels 2 Voltage range 5 V Guaranteed monotonic over temperature Analog output zero drift 1 6 LSB C Overall analog output drift 4 0 LSB C Slew rate 2 5 V us Settling time FS step to 0008 max all ranges Current drive 15 mA Output short circuit duration Indefinite 25 mA Output coupling DC Output impedance 010 Power up and reset DACs cleared to 0 75 mV max Accuracy Table 10 Analog output absolute accuracy specifications Range Absolute accuracy 5V 16 0 LSB Ta
30. g modes External digital Software configurable for rising or falling edge External analog Software configurable for positive or negative slope Trigger levels set by DACO and or DACI Pre post trigger Unlimited number of pre trigger samples 16 Meg post trigger samples Compatible with both digital and analog trigger options Data transfer From 8 k RAM buffer via DMA demand or non demand mode using scatter gather Programmed I O Configuration memory 8 K words Channel gain queue Up to 8 K elements Programmable channel gain and offset A D conversion time 500 nS Calibration Auto calibration calibration factors for each range stored on board in non volatile RAM 6 4 PCI DAS64 M2 16 User s Guide Specifications System throughput Table 2 System throughput specifications Condition Calibration coefficients Max ADC rate 1 Single channel single input range Per specified range 2 0 MS s 2 Multiple channel single input range 5 V Per specified range 1 5 MS s 2 5 1 25 5 0 to 2 5 V 3 Multiple channel single input range 40 625 V 0 Per specified range 7150 kS s to 1 25 V 4 Single channel multiple input ranges Default to value for cbAInScan range 500 kS s 5 Multiple channels multiple ranges All samples in Default to value for cbAInScan range 500 kS s unipolar or bipolar bode 6 Multiple chan
31. high resolution analog components on the board are somewhat sensitive to temperature and this pre measurement calibration helps assure your board operates at the same temperature at which it was calibrated Calibration theory Offset calibration for the analog front end is performed via adjustments of the ADC itself Front end gain adjustment is performed only via the ADC reference This strategy was chosen since the gain tolerance of the in amp circuit is quite good and there is adequate gain tuning range using only the ADC A block diagram of the analog front end calibration system is shown in Figure 5 2 Calibration Reference Analog In Trim DAC Coarse Trim DAC Fine Trim DAC Coarse Trim DAC Fine ADC Offset Gain Adjust Adjust Figure 5 2 Analog front end calibration system 5 2 PCI DAS64 M2 16 User s Guide Calibrating the PCI DAS64 M2 16 The analog output circuits are calibrated for gain and offset Gain calibration of the analog outputs is performed via DAC reference adjustments Offset adjustments for the analog outputs are made in the output buffer section The tuning range of this adjustment yields maximum DAC and output buffer offsets The calibration scheme for the analog out section is shown in Figure 5 3 This circuit is duplicated for both DACO and DACI Analog Out Trim DAC Coarse Trim DAC Coarse Trim DAC Fine Figure 5 3 Analog out cal
32. ible accessory products CIO MINI40 Table 24 Digital I O connector pin out Pin Signal name Pin Signal name 1 NC 2 PC 5 3 NC 4 DIG GND 5 FIRSTPORTB Bit 7 6 FIRSTPORTC Bit 7 7 FIRSTPORTB Bit 6 8 FIRSTPORTC Bit 6 9 FIRSTPORTB Bit 5 10 FIRSTPORTC Bit 5 11 FIRSTPORTB Bit 4 12 FIRSTPORTC Bit 4 13 FIRSTPORTB Bit 3 14 FIRSTPORTC Bit 3 15 FIRSTPORTB Bit 2 16 FIRSTPORTC Bit 2 17 FIRSTPORTB Bit 1 18 FIRSTPORTC Bit 1 19 FIRSTPORTB Bit 0 20 FIRSTPORTC Bit 0 21 DIG GND 22 FIRSTPORTA Bit 7 23 NC 24 FIRSTPORTA Bit 6 25 DIG GND 26 FIRSTPORTA Bit 5 27 NC 28 FIRSTPORTA Bit 4 29 DIG GND 30 FIRSTPORTA Bit 3 31 NC 32 FIRSTPORTA Bit 2 33 DIG GND 34 FIRSTPORTA Bit 1 35 PC 5 36 FIRSTPORTA Bit 0 37 DIG GND 38 NC 39 NC 40 NC 6 13 Declaration of Conformity Manufacturer Measurement Computing Corporation Address 10 Commerce Way Suite 1008 Norton MA 02766 USA Category Electrical equipment for measurement control and laboratory use Measurement Computing Corporation declares under sole responsibility that the product PCI DAS64 M2 16 to which this declaration relates is in conformity with the relevant provisions of the following standards or other documents EU EMC Directive 89 336 EEC Electromagnetic Compatibility EN55022 1995 EN55024 1998 Emissions Group 1 Class B 55022 1995 Radiated and Conducted emissions Immunity EN55024 N61000 4 2 1995 Electrostatic Discharge immunity Criteria A
33. ibration Trim DAC Fine 5 3 Chapter 6 Specifications Typical for 25 unless otherwise specified Specifications in italic text are guaranteed by design Analog input Table 1 Analog input specifications A D converter type Sub ranging sampling ADC Resolution 16 bits Number of channels 32 differential or 64 single ended software selectable Input ranges 5 V 2 5 V 1 25 V 0 625 V 0 to 5 V 0 to 2 5 V 0 to 1 25 V software programmable Polarity Unipolar bipolar software selectable A D pacing nternal counter ASIC software programmable External source A D external pacer The total number of sample clocks must be at least 5 greater than the total number of samples desired This is required to accommodate the pipelined architecture of the ADC Software polled Burst mode Software selectable option Valid for a fixed input range only Burst rate 667 nS A D gate sources External digital A D pacer gate External analog analog trigger in A D gating modes External digital Programmable active high or active low level or edge External analog Software configurable for Above or below reference Positive or negative hysteresis norout of window Trigger levels set by DACO and or DACI A D trigger sources External digital A D start trigger in and A D stop trigger in External analog Analog Trigger In A D triggerin
34. ity 0 to 95 non condensing Mechanical Table 19 Mechanical specifications Card dimensions 315 mm L x 100 6 mm W x 16 mm Main connector and pin out Table 20 Main connector and pinout specifications Parameter Specification Connector type Shielded SCSI 100 pin D type Compatible cables C100HD50 x unshielded ribbon cable x 3 or 6 feet C100MMS x shielded round cable x 1 2 or 3 meters Compatible accessory products CIO MINISO two required using the 100 50 cable SCB 50 Compatible accessory products CIO TERM100 using the CIOOMMS x cable SCB 100 6 10 PCI DAS64 M2 16 User s Guide Specifications Differential mode pin out Table 21 32 channel differential mode pin out Pin Signal Name Pin Signal Name 1 GND 51 GND 2 CTR1 OUT 52 EXTERNAL INTERRUPT 3 CTR1 CLK 53 EXTERNAL PACER 4 CTR1 GATE 54 A D STOP TRIGGER IN 5 DOUT3 55 A D START TRIGGER IN 6 DOUT2 56 ANALOG TRIGGER IN 7 DOUT1 57 A D PACER GATE 8 DOUTO 58 A D PACER OUT 9 DIN3 59 SSH OUT D A PACER OUT 10 DIN2 60 EXTERNAL D A TRIGGER PACER GATE 11 DIN1 61 D A EXTERNAL PACER 12 DINO 62 5 13 GND 63 D A OUT 1 14 12V 64 D A GND 1 15 GND 65 D A OUT 0 16 12V 66 D A GND 0 17
35. nels multiple ranges All samples in Default to value for cbAInScan range 500 kS s unipolar and or bipolar bode 7 Multiple channel switching unipolar bipolar Default to value for cbAInScan range 750 kS s mode single input range Note 1 For conditions 1 3 specified accuracy is maintained at rated throughput Conditions 4 7 apply calibration coefficients which correspond to the range value selected in cbAInScan These coefficients remain unchanged throughout the scan Errors of up to 25 counts may be incurred when switching gains while in bipolar or unipolar mode only conditions 4 and 5 Errors of up to 500 counts may be incurred when mixing unipolar bipolar modes conditions 6 and 7 Accuracy A 100 kS s sampling rate single channel operation and a 60 minute warm up Accuracies are listed for operational temperatures within 4 channel 0 and low side tied to low level ground at the user connector Table 3 Analog input absolute accuracy specifications 2 C of internal calibration temperature Calibrator test source high side tied to Range Absolute accuracy 5 000 V 6 0 LSB 2 500 V 8 0 LSB 1 250 8 0 LSB 0 625 V 10 0 LSB 0 V to 5 000 V 8 0 LSB 0 V to 42 500 V 11 0 LSB 0 V to 1 250 13 0 LSB Table 4 Analog input typical accuracy specifications Range Typical accuracy 5 000 V 5 5 LSB 2 500 V 7 5 LSB 1 250
36. o the Quick Start Guide that shipped with your device The Quick Start Guide is also available in PDF at www mccdaq com PDFmanuals DAQ Software Quick Start pdf Check www mccdag com download htm for the latest software version or versions of the software supported under less commonly used operating systems Chapter 2 Installing the 564 2 16 What comes with your PCI DAS64 M2 16 shipment As you unpack your board make sure each of the items shown below is included Hardware PCI DAS64 M2 16 MADE IN U S A Additional documentation In addition to this hardware user s guide you should also receive the Quick Start Guide available in PDF at www mccdaq com PDFmanuals DAQ Software Quick Start pdf This booklet supplies brief description of the software you received with your PCI DAS64 M2 16 and information regarding installation of that software Please read this booklet completely before installing any software or hardware Optional components If you ordered any of the following products with your board they should be included with your shipment Cables EU a C100HD50 x 100 5 C40FF x C40 37F x BP40 37 2 1 PCI DAS64 M2 16 User s Guide Installing the PCI DAS64 M2 16 Signal termination and conditioning accessories MCC provides signal termination products for use with the PCI DAS64 M2 16 Refer to the Field wiring signal termination and conditioning section on
37. poration product for use in life support systems and or devices without prior written consent from Measurement Computing Corporation Life support devices systems are devices or systems which a are intended for surgical implantation into the body or b support or sustain life and whose failure to perform can be reasonably expected to result in injury Measurement Computing Corporation products are not designed with the components required and are not subject to the testing required to ensure a level of reliability suitable for the treatment and diagnosis of people iii Table of Contents Preface About this e dead ecce iced nei e oce ed eese e ce eese vi What you will learn from this user s enne nennen nnne vi Conventions in this user s guide 1 Where to find more information cccccccccccssscesccecsseceeeceesseceeeeesseceseecesseceseeeesseceseeeessecsueeeesaecsueeseseeceeeeesaeceas 1 1 Introducing the PCI DAS64 M2 16 eese eene eren 1 1 Overview PCI DAS64 M2 16 features cccccccssccesscesssecsssceeseecsseeeessccesseeessecsseeeseecsesessecseeecsaeceeeeeeesseenues 1 1 Software features sn e ote ar e Ue eee od duo Rt ade ett 1 1 Chapter 2 Installing the 564 2 16 4422 4444400
38. r DAS family in general there may be no correspondence among registers for different boards Software written at the register level for other DAS models will not function correctly with your board Programming Languages Measurement Computing s Universal Library provides access to board functions from a variety of Windows programming languages If you are planning to write programs or would like to run the example programs for Visual Basic or any other language please refer to the Universal Library User s Guide available on our web site at www mccdaq com PDFmanuals sm ul user guide pdf Packaged Applications Programs Many packaged application programs such as SoftWIRE and HP VEE now have drivers for your board If the package you own does not have drivers for the board please fax or e mail the package name and the revision number from the install disks We will research the package for you and advise how to obtain drivers Some application drivers are included with the Universal Library package but not with the application package If you have purchased an application package directly from the software vendor you may need to purchase our Universal Library and drivers Please contact us by phone fax or e mail Phone 508 946 5100 and follow the instructions for reaching Tech Support Fax 508 946 9500 to the attention of Tech Support Email techsupport mccdaq com Register Level Programming You should use the Univ
39. rupt is generated when A D Stop Trigger In is detected DAQ DONE Interrupt is generated when a DAQ sequence completes DAQ FIFO 1 4 FULL Interrupt is generated when ADC FIFO is full DAQ SINGLE Interrupt is generated after each conversion completes DAQ EOSCAN Interrupt is generated after the last channel is converted in multi channel scans DAQ EOSEQ Interrupt is generated after each interval delay during multi channel scans DAC interrupt sources DAC ACTIVE Interrupt is generated when DAC waveform circuitry is active software programmable DAC DONE Interrupt is generated when a DAC sequence completes DAC FIFO 1 4 EMPTY Interrupt is generated DAC FIFO is 4 empty DAC HIGH CHANNEL Interrupt is generated when the DAC high channel output is updated DAC RETRANSMIT Interrupt is generated when the end of a waveform sequence has occurred in retransmit mode External interrupt Interrupt is generated via edge sensitive transition on the External Interrupt pin Rising falling edge polarity software selectable Counters Table 15 Counter specifications User counter type 82C54 Configuration One down counter 16 bits Counters 2 and 3 not used Counter 1 source External from connector CTR1 CLK Counter 1 gate Available at connector CTR1 GATE Counter 1 output Available at connector CTR1 OUT Clock input frequency 10 MHz max
40. tive are repaired or replaced promptly Lifetime Harsh Environment Warranty We will replace any product manufactured by Measurement Computing Corporation that is damaged even due to misuse for only 50 of the current list price I O boards face some tough operating conditions some more severe than the boards are designed to withstand When a board becomes damaged just return the unit with an order for its replacement at only 5096 of the current list price We don t need to profit from your misfortune By the way we honor this warranty for any manufacturer s board that we have a replacement for 30 Day Money Back Guarantee You may return any Measurement Computing Corporation product within 30 days of purchase for a full refund of the price paid for the product being returned If you are not satisfied or chose the wrong product by mistake you do not have to keep it Please call for an RMA number first No credits or returns accepted without a copy of the original invoice Some software products are subject to a repackaging fee These warranties are in lieu of all other warranties expressed or implied including any implied warranty of merchantability or fitness for a particular application The remedies provided herein are the buyer s sole and exclusive remedies Neither Measurement Computing Corporation nor its employees shall be liable for any direct or indirect special incidental or consequential damage arising from the use of its products e
41. tput 74LS175 Input 74LS244 Configuration Four inputs four outputs DINO through DIN3 DOUTO to DOUT3 Output high voltage 0 4 mA 2 7 V min Output low voltage IOL 8 mA 0 5 V max Input high voltage 2 0 V min 7 volts absolute max Input low voltage 0 8 V max 0 5 volts absolute min Digital type digital I O connector 82C55 Number of I O 24 FIRSTPORTA Bit 0 through FIRSTPORTC Bit 7 Configuration 2 banks of 8 and 2 banks of 4 or 3 banks of 8 or 2 banks of 8 with handshake Input high voltage 2 0 V min 5 5 V absolute max Input low voltage 0 8 V max 0 5 V absolute min Output high voltage 2 5 mA 3 0 V min Output low voltage IOL 2 5 mA 0 4 V max Power up reset state Input mode high impedance SSH output TTL compatible output HOLD is asserted from start of the conversion for Channel 0 through conversion of the last channel in the scan Available at user connector SSH OUT D A PACER OUT This pin is software selectable as SSH OUT default or D A PACER OUT SSH polarity HOLD high default or HOLD low software selectable 6 8 PCI DAS64 M2 16 User s Guide Specifications Interrupts Table 14 Interrupt specifications Interrupts PCI INTA Mapped to IRQz via PCI BIOS at boot time Interrupt enable Programmable through PLX9080 ADC interrupt DAQ ACTIVE Interrupt is generated when a DAQ sequence is active DAQ STOP Inter
42. ure 2 8 C37FFS x cable Field wiring signal termination and conditioning You can use the following accessory boards with the 100 50 cable 50 50 pin screw terminal board Details are available on our web site at www mccdaq com cbicatalog cbiproduct asp dept 1d 102 amp pf 14 258 SCB 50 50 conductor shielded signal connection box Details are available on our web site at www mecdag com cbicatalog cbiproduct asp dept_id 196 amp pf_id 1168 You can use the following accessory boards with the CLOOMMS x cable SCB 100 100 conductor shielded signal connection box Details are available at www mecdag com cbicatalog cbiproduct asp dept_id 196 amp pf_id 1169 CIO TERM100 100 screw terminal board with positions for pull up resistors Details are available on our web site at www mccdaq com cbicatalog cbiproduct asp dept id 102 amp pf 10 281 You can use the following screw terminal board with the C40FF x cable CIO MINI40 40 pin screw terminal board Details are available on our web site at www mccdaq com cbicatalog cbiproduct asp dept 1d 102 amp pf 14 257 You can use the following screw terminal boards with the C40 37F x cable directly or by combining the BP40 37 adapter and C37FF x or C37FFS x cable SCB 37 37 conductor shielded signal connection screw terminal box Details on are available on our web site at www mccdaq com cbicatalog cbiproduct asp dept id 196 amp pf 11 11
43. ven if Measurement Computing Corporation has been notified in advance of the possibility of such damages HM PCI DAS64 M2 16 doc ii Trademark and Copyright Information TracerDAQ Universal Library Harsh Environment Warranty Measurement Computing Corporation and the Measurement Computing logo are either trademarks or registered trademarks of Measurement Computing Corporation Windows Microsoft and Visual Studio are either trademarks or registered trademarks of Microsoft Corporation LabVIEW is a trademark of National Instruments CompactFlash is a registered trademark of SanDisk Corporation other trademarks are the property of their respective owners Information furnished by Measurement Computing Corporation is believed to be accurate and reliable However no responsibility is assumed by Measurement Computing Corporation neither for its use nor for any infringements of patents or other rights of third parties which may result from its use No license is granted by implication or otherwise under any patent or copyrights of Measurement Computing Corporation rights reserved No part of this publication may be reproduced stored in a retrieval system or transmitted in any form by any means electronic mechanical by photocopying recording or otherwise without the prior written permission of Measurement Computing Corporation Notice Measurement Computing Corporation does not authorize any Measurement Computing Cor
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