AI-1616L-LPE Analog Input Low Profile PCI Express Card /16ch AI(16bit 100ks/s) / 1ch Counter
AI-1616L-LPE Analog Input Low Profile PCI Express Card /16ch AI(16bit 100ks/s) / 1ch Counter
  • SKU: AI-1616L-LPE
  • Availability: In Stock Many in stock Out of stock BUILT TO ORDER - SHIPS IN 2 - 6 WEEKS

AI-1616L-LPE Analog Input Low Profile PCI Express Card /16ch AI(16bit 100ks/s) / 1ch Counter

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    This PCI Express bus multi-function interface card offers digital input and output (LVTTL level, for each 4 points), 16bit high-precision analog input and counter (32bit, 1ch). It features a Low-Profile size slot and a standard size slot by changing an attached bracket. A Windows/Linux driver is attached. In addition, the card supports MATLAB and LabVIEW thanks to an exclusive library plug-in (free download).


    High-precision analog I/O can be implemented in a compact system. This card offers an analog input (16bit, 16ch). This card includes digital inputs and outputs (4 each, LVTTL level) and a counter (32-bit 1ch).

    Analog I/O can be synchronized with an internal timer or external clock

    Analog I/O can both be performed at fixed time intervals or synchronized with an external signal.

    Buffer memory available for background processing independent of software

    The card includes buffer memory (1K Word for each analog input and output) which can be used in either FIFO or ring format. This allows analog I/O to be performed independently of the operating state of the PC or software.

    Software-based calibration

    Analog input/output calibration can be performed by software. Besides the settings information prepared before shipment, additional settings can be stored according to the application environment.

    Filter function for easy connection of external signals

    The digital input signals, counter input signals, and the external control signals for analog I/O include a digital filter to prevent problems such as chattering.


    Item   AI-1616L-LPE
    Analog input Isolated specification Non-isolated
    Input type Single-Ended Input
    Number of input channels 16ch
    Input range Bipolar ±10V
    Absolute max. input voltage ±20V
    Input impedance 1MΩ or more
    Resolution 16bit
    Non-Linearity error *1 *2 ±5LSB
    Conversion speed 10µsec/ch*3 [100KSPS]*4
    Buffer memory 1k Word
    Conversion start trigger Software / external trigger
    Conversion stop trigger Number of sampling times / external trigger/software
    External start signal LVTTL level (Rising or falling edge can be selected by software) Digital filter (1µ sec can be selected by software)
    External stop signal LVTTL level (Rising or falling edge can be selected by software) Digital filter (1µ sec can be selected by software)
    External clock signal LVTTL level (Rising or falling edge can be selected by software)
    Digital I/O Number of input channels Non-isolated input 4ch (TTL level positive logic)
    Number of output channels Non-isolated output 4ch (TTL level positive logic)
    Counter Number of channels 1ch
    Counting system Up count
    Max. count FFFFFFFFh (Binary data,32bit)
    Number of external inputs 2 LVTTL level (Gate/Up)/ch Gate (High level), Up (Rising edge)
    Number of external outputs 1 LVTTL level, Count match output (positive logic, pulse output)
    Response frequency 10MHz (Max.)
    Common section I/O address 64 ports
    Interruption level Errors and various factors, One interrupt request line as INTA
    Used Connector 10250-52A2JL[3M] or equivalent to it
    Power consumption 3.3VDC 400mA,12VDC 120mA
    Operating condition 0 - 50°C, 10 - 90%RH (No condensation)
    Bus specification PCI Express Base Specification Rev. 1.0a x1
    External dimension (mm) 121.69 (L) x 67.90 (H)
    Weight 60g
    Certification RoHS,CE,VCCI
    Notes: *1: The non-linearity error means an error of approximately 0.1% occurs over the maximum range at 0°C and 50°C ambient temperature.
    *2: At the time of the source use of a signal which built in the high-speed operational amplifier.
    *3: The required time is indicated in the analog to digital translation of one channel. When AD of two or more channels is converted, time of the a few minutes of the channel is necessary.
    Conversion time = Number of conversion channelsx10µsec
    *4: SPS = Samplings Per Second. The number of data that can be converted in one second is shown.

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