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Ver.1.03 AD16-16(PCI)EV 2 Specification Item Specification Analog input Isolated specification Unisolated Type Single-Ended Input or Differential Input (Jumper setup) Number of input channels 16ch (Single-Ended Input) 8ch (Differential Input) Input range Bipolar ±10V, ±5V or Unipolar 0 - +10V, 0 - +5V (Jumper setup) Absolute max. input voltage ±20V Input impedance 1MΩ or more Resolution 16-bit Non-Linearity error *1*2*3 ±5LSB Conversion speed 10µsec/ch (Max.) Buffer memory 16M data FIFO or 16M data RING (Software setup) Conversion start trigger Software/Input data comparison/TTL level external signal Conversion stop trigger Specified sampling data stored /Input data comparison/ TTL level external signal/Software Analog output Isolated specification Unisolated Number of output channel 1ch Output range Bipolar ±10V / Unipolar 0 - +10V (Jumper setup) Output current ability ±5mA Output impedance 1Ω or less Resolution 16-bit Non- Linearity error *1 ±3LSB Conversion speed 10µsec/ch (Max.) Digital I/O Number of input channels Unisolated input 4ch (TTL level, Selection of a counter output is possible at a jumper.) Number of output channels Unisolated input 4ch (TTL level, A counter control input and common use are possible at a jumper.) Counter Counter device i8254 equivalent Counter clock Internal (4MHz) or External signal I/O address Any 32-byte boundary Interrupt 1 level use Power consumption *4 +5V 1000 mA (Max.) Operating condition 0 - 50°C, 10 - 90%RH (No condensation) PCI bus specification 32-bit, 33MHz, Universal key shapes supported *5 Physical dimensions (mm) 176.41(L) x 105.68(H) Interface connectors CN1 D-SUB 37-Pin female connector #4 -40UNC CN2 16-pin Pin-header Weight 150g Certification RoHS,CE,VCCI *1 When the environment temperature is near 0°C or 50°C, the non-linearity error may become larger. *2 At the time of the source use of a signal which built in the high-speed operational amplifier. *3 An error of about 0.02% of the maximum range value may occur with an unisolated bipolar setting of ±5 V or an unisolated unipolar setting of 0 - +5 V. *4 If an external device requires this AD16-16(PCI)EV board to supply +5VDC from the CN1 or CN2 connectors, the power consumption of this board will be bigger than what this specification has defined. *5 This board requires +5V power supply from expansion slots (it does not operate in the environment of only +3.3V power supply). Board Dimensions [mm] 176.41(L) 105.68(H) The standard outside dimension (L) is the distance from the end of the board to the outer surface of the slot cover. Windows version of analog I/O driver API-AIO(WDM) / API-AIO(98/PC) [Stored on the bundled Disk driver library API-PAC(W32)] The API-AIO(WDM) / API-AIO(98/PC) is the Windows version driver library software that provides products in the form of Win32 API functions (DLL). Various sample programs such as Visual Basic and Visual C++, etc and diagnostic program useful for checking operation is provided. You can download the updated version from the CONTEC’s Web site. For more details on the supported OS, applicable language and new information, please visit the CONTEC’s Web site. Linux version of analog I/O driver API-AIO(LNX) [Stored on the bundled Disk driver library API-PAC(W32)] The API-AIO(LNX) is the Linux version driver software which provides device drivers (modules) by shared library and kernel version. Various sample programs of gcc are provided. You can download the updated version from the CONTEC’s Web site. For more details on the supported OS, applicable language and new information, please visit the CONTEC’s Web site. Data Logger Software C-LOGGER [Stored on the bundled Disk driver library API-PAC(W32)] C-LOGGER is a data logger software program compatible with our analog I/O products. This program enables the graph display of recorded signal data, zoom observation, file saving, and dynamic transfer to the spreadsheet software “Excel”. No troublesome programming is required. CONTEC provides download services to supply the updated drivers. For details, refer to the C-LOGGER Users Guide or our website. Data acquisition VI library for LabVIEW VI-DAQ (Available for downloading (free of charge) from the CONTEC web site.) This is a VI library to use in National Instruments LabVIEW. VI-DAQ is created with a function form similar to that of LabVIEW's Data Acquisition VI, allowing you to use various devices without complicated settings. See the CONTEC’s Web site details and download of VI-DAQ. Specification Support Software

Ver.1.03 AD16-16(PCI)EV 3 Cable (Option) Flat Cable with 37-Pin D-SUB Connector at One End : PCA37P-1.5 (1.5m) Shield Cable with 37-Pin D-SUB Connector at One End : PCA37PS-0.5P (0.5m) : PCA37PS-1.5P (1.5m) Shielded Cable with 37-pin D-SUB connectors at either ends : PCB37PS-0.5P (0.5m) : PCB37PS-1.5P (1.5m) Flat Cable with 15-Pin D-SUB Connector at One End : PCA15P-1.5 (1.5m) Flat Cable with 15-Pin D-SUB Connectors at either Ends Coaxial Cable for Single-ended Inputs (16 channels) : PCC16PS-1.5 (1.5m) : PCC16PS-3 (3m)

2 Wires Shielded Cable for Differential Inputs (8 channels)

: PCD8PS-1.5 (1.5m) : PCD8PS-3 (3m) Flat Cable with 1 Sided 16-Pin Header Connector (1.5m) : DT/E1 Conversion Cable (16-Pin to 15-Pin) with Bracket (100mm) : DT/E2 Conversion Cable (16-Pin to 15-Pin) with Bracket (150mm) : DT-E3 Connector (Option) 37-pin D-SUB (Male) Connector Set (5 Pieces) : CN5-D37M *1 For FTP-15 only Accessories (Option) BNC Terminal Unit (for analog input 16ch) : ATP-16E *1 Buffer Amplifier Box for Analog Input Boards (16ch type) : ATBA-16E *1 General Purpose Terminal (M3 x 15P) : FTP-15 *2 Screw Terminal Unit (M3 x 37P) : EPD-37A *1 *3 Screw Terminal Unit (M3.5 x 37P) : EPD-37 *1 General Purpose Terminal (M3 x 37P) : DTP-3A *1 Screw Terminal (M2.6 x 37P) : DTP-4A *1

16 Channel Simultaneous

Sample & Hold Board : ATSS-16 *1 8ch- Isolated Expansion Accessory Board for Analog Input : ATII-8C *1 8ch- Isolated Expansion Accessory Board for Analog Input : ATII-8A *1 Low Pass Filter Accessory for Analog Input : ATLF-8A*1 16CH Multiplexer Sub-Board for AD12-16(PCI)EV and AD16-16(PCI)EV : ATCH-16A(PCI) *1 A PCB37PS -*P optional cable is required separately. (0.5m is recommended.) *2 A DT/E2 and PCB15P-1.5 optional cable is required separately. *3 “Spring-up” type terminal is used to prevent terminal screws from falling off. * Check the CONTEC’s Web site for more information on these options. Board [AD16-16(PCI)EV] …1 First step guide … 1 Disk *1 [API-PAC(W32)]…1 Serial number label…1 Product Registration Card & Warranty Certificate…1 *1 The Disk contains the driver software and User’s Guide. PCI Bus PCI Bus interfaceOn board memory DC/DC converter ASIC A/D converter Sample & Hold amplifier Instrument amplifier 8/16 channel multiplexer with over voltage protection CN1 CN2 16 single-ended / 8 differential Analog Inputs

4 Digital Inputs /

4 Digital Outputs /

To connect an external device to this board, plug the cable from the device into the interface connector (CN1, CN2) shown below. The board has two interface connectors: the analog I/O connector (CN1: 37-pin female D-SUB connector) and the control signal connector (CN2: 16-pin pin-header) for digital input/output and counter control. CN1 CN2 A8B8 A1B1 - Connector used A 37pin D type connector[F(female)type] DCLC-J37SAF-20L9 [mfd.by JAE]equivalent - Applicable connector 17JE-23370-02(D8C) [mfd by DDK, M(male)type] Interface connector(CN1) Interface connector(CN3) - Applicable connector PS-16SEN-D4P1-1C [mfd.by JAE] Interface connector(CN2) It is the connector (CN3) for or ATUH-16A(PCI). ATCH-16A(PCI) * Please refer to this page for more information on the supported cable and accessories. Cable & Connector Accessories How to connect the connectors Block Diagram Packing List

Ver.1.03 AD16-16(PCI)EV 4 Examples of Connecting Options Connector Pin Assignment Pin Assignment of CN1 CN1 Digital Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground +5V DC from PC Simultaneous Hold Output Analog Output Analog Input 7 [-] Analog Input 7 [+] Analog Input 6 [-] Analog Input 6 [+] Analog Input 5 [-] Analog Input 5 [+] Analog Input 4 [-] Analog Input 4 [+] Analog Input 3 [-] Analog Input 3 [+] Analog Input 2 [-] Analog Input 2 [+] Analog Input 1 [-] Analog Input 1 [+] Analog Input 0 [-] Analog Input 0 [+] CN1 Digital Ground Analog Ground Analog Ground Analog Ground Ana log Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground Analog Ground +5V DC from PC Simultaneous Hold Output Analog Output Analog Input 15 Analog Input 7 Analog Input 14 Analog Input 6 Analog Input 13 Analog Input 5 Analog Input 12 Analog Input 4 Analog Input 11 Analog Input 3 Analog Input 10 Analog Input 2 Analog Input 9 Analog Input 1 Analog Input 8 Analog Input 0 < Single-Endedn Input > < Differential Input > Analog Input 0 - Analog Input 15 Analog input signals in single-ended input mode. The numbers correspond to channel numbers. Analog Input 0[+] - Analog Input 7[+] Analog input signals in differential input mode. The numbers correspond to channel numbers. Analog Input 0[-] - Analog Input 7[-] Analog input signals in differential input mode. The numbers correspond to channel numbers. Analog Output Analog output signal Analog Ground Analog ground common to analog I/O signals. Simultaneous Hold Output Control signal for simultaneous sampling unit ATSS-16 available as an option. +5V DC from PC Supplies 2A of current at +5 V. Digital Ground Digital ground common to "Simultaneous Hold Output" and "+5V DC from PC". CAUTION Do not connect any of the outputs and power outputs to the analog or digital ground. Neither connect outputs to each other. Doing either can result in a fault. Pin Assignment of CN2 CN2 +5V DC from PC Sampling Clock Output External Stop Trigger Input Digital Input 3 / INT Trigger Digital Input 1 / CNT Gate Digital Ground Digital Output 2 Digital Output 0 N. C. Digital Ground External Sampling Clock Input External Start Trigger Input Digital Input 2 / CNT Clock Digital Input 0 Digital Output 3 / CNT Output Digital Output 1 Digital Input 0 Digital input signal. Digital Input 1 /CNT Gate Digital input signal. Also serving as the counter gate control input signal. Digital Input 2 /CNT Clock Digital input signal. Also serving as the clock input signal Digital Input 3 /INT Trigger Digital input signal. Also serving as the interrupt input signal. Digital Out 0 to Digital Out 2 Digital output signal. Digital Out 3 to CNT Output Digital output signal. Capable of being jumper-switched to serve as the counter output signal. External Start Trigger Input External trigger input signal for sampling start conditions External Stop Trigger Input External trigger input signal for sampling stop conditions External Sampling Clock Input External sampling clock input signal Sampling Clock Output Sampling clock output signal +5V DC from PC Supplies 1A of current at +5 V. Digital Ground Digital ground common to the signals and “+5V DC from PC”. N.C. No connection to this pin. CAUTION Do not connect any of the outputs and power outputs to the analog or digital ground. Neither connect outputs to each other. Doing either can result in a fault. There are two analog input modes: the Single-ended input and the Differential input. Here we give some examples of analog input connections by using flat cable or shield cable. Single-ended Input The following figure shows an example of flat cable connection. Each signal source is connected to one analog input channel and the signal common to analog ground pin of CN1. Single-ended Input Connection (Flat Cable) Analog Input 0..15 Analog Ground BOARD CN1 Cable Signal Source The following figure shows an example of shield cable connection. When the distance between the signal source and the board is long or you want to increase the noise tolerance, a shield cable is suggested. Connect the signal by the core wire and common signal by the shield braids. Single-ended Input Connection (Shield Cable) Analog Ground Shield cable Analog Input 0..15 BOARD CN1 Signal Source CAUTION If the signal source contains over 100kHz signals, the signal may effect the cross-talk noise between channels. If the board and the signal source receive noise or the distance between the board and the signal source is too long, data may not be input properly. An input analog signal should not exceed the maximum input voltage (relate to the board analog ground). If it exceeds the maximum voltage, the board may be damaged. Connect all the unused analog input channels to analog ground. Analog Input Signal Connection

Ver.1.03 AD16-16(PCI)EV 5 Differential Input The following figure shows an example of flat cable connection. Each signal source is connected to a [+] pin of analog input channel and the signal common of this source to the [-] pin of this input channel of CN1. In addition, the signal common must be connected to the pin of the analog ground of CN1 by a third wire. Differential Input Connection (Flat Cable) Analog Input 0[+]..7[+] Analog Ground BOARD Cable Signal Source Analog Input 0[-]..7[-] CN1 The following figure shows an example of 2-wire shielded cable connection. When the distance between the signal source and the board is long or you want to increase the noise tolerance, a shield cable connection is preferred. Each signal source is connected to a [+] pin of analog input channel and the signal common of this source to the [-] pin of this input channel of CN1. In addition, the signal common must be connected to the pin of the analog ground of CN1 by the shielded braids. Differential Input Connection (Shield Cable) Analog Input 0[+]..7[+] Analog Ground BOARD Signal Source Analog Input 0[-]..7[-] CN1 Shield cable CAUTION If the signal source contains over 100kHz signals, the signal may effect the cross-talk noise between channels. The input data would be uncertain if the analog ground is not connected. If the board and the signal source receive noise or the distance between the board and the signal source is too long, data may not be input properly. The input voltage from the [+] input or [-] input should not exceed the maximum input voltage (based on the board analog ground). If it exceeds the maximum voltage, the board may be damaged. Because the input data will be uncertain if the [+] pin or the [-] pin of CN1 is not connected, all the unused input pins of CN1 should be connected to the analog ground, AGND. This section shows how to connect the analog output signal by using a flat cable or a shielded cable. The following figure shows an example of flat cable connection. Connect the signal source and ground to the CN1 analog output. Analog Output Connection (Flat Cable) Analog Output Analog Ground BOARD CN1 Cable Target If the distance between the signal source and the board is long or if you want to increase the noise tolerance, a shield cable connection is strongly recommended. Analog Output Connection (Shield Cable) Analog Ground Shield cable Analog Output BOARD CN1 Target CAUTION If the board or the connected wire receives noise, or the distance between the board and the target is long, data may not be outputted properly. For analog output signal, the current capacity is ±5mA (Max.). Check the specification of the connected device before connecting the board. Do not short the analog output signal to analog ground, digital ground, and/or power line. Doing so may damage the board. The digital I/O signals and the control signals are interfaced through the connector CN2. User can use an optional cable DT/E1 or DT/E2 or DT-E3 (with bracket and a 15-pin D type female connector) to connect these signals to your external devices. All the digital I/O signals and control signals are TTL level signals. Digital Input Connection Input Digital Ground 10kΩBOARD CN2 Cable Target Digital Output Connection Digital Ground BOARD CN2 Cable TargetOutput IOL=24mA CAUTION Do not short the output signals to analog ground, digital ground, and/or power line. Doing so may damage the board. This product is a product that partially improves a past analog E series, and the upper compatibility goods of the analog E series. Therefore, the same usage as the E series can be basically done. There are some differences in specifications as shown below. Past E Series : AD16-16(PCI)E This product : AD16-16(PCI)EV AD16-16(PCI)E AD16-16(PCI)EV I/O address Any 16-byte boundary Any 32-byte boundary Analog input range Jumper setting Jumper setting (The setting different from old goods) Analog output range Jumper setting Jumper setting (The setting different from old goods) Buffer memory *1 256K Word FIFO or 256K Word RING 16M data FIFO or 16M data RING Analog output non-linearity error ±2LSB ±3LSB Power consumption +5V 1100mA (Max.) +5V 1000 mA (Max.) Interrupt signal resource setting Set to select whether to use jumper JP12 Automatically set by PC PCI bus specification 32-bit, 33MHz, 5V key shapes supported 32-bit, 33MHz, Universal key shapes supported Physical Dimension (mm) 176.41(L) x 106.68(H) 176.41(L) x 105.68(H) *1 It is necessary to correct the application because the capacity of the buffer memory is different when replacing it from old goods. Digital I/O signals and Control signals Connection Analog Output Signal Connection Differences between past analog E and this product