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High Performance Multi-Function I/O USB Data Acquisition Modules

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$1,463.59

Item# OMB-DAQ-2416

Volume discounts available
Volume Discount Schedule
Quantity Price each
1-4 $1,463.59
5-9 $1,390.41
10-24 $1,361.14
25-49 $1,302.60
50-99 $1,273.32
100+ $1,244.05

Please contact Technical Sales Team for assistance.
High Performance Multi-Function I/O USB Data Acquisition Modules OMB-DAQ-2416 OMB-DAQ-2416

This product has been discontinued. For a possible substitute, please see OM-USB-TC or OM-USB-TC-AI

  • 16 Differential or 32 Single-Ended Analog Inputs, Expandable to 32 Differential / 64 Single-Ended Channels
  • 24-Bit Resolution
  • Thermocouple or Voltage Input
  • Nine Software-Selectable Voltage Ranges: ±20V, ±10V, ±5V, ±2.5V, ±1.25V, ±0.625V, ±0.312V, ±0.156V, and ±0.078V

OMB-DAQ-2416 Model Options

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Edit these specs to order a different model. Not all combinations are valid. Options compatible with previous selections will be in bold.

*Highlighted options are not compatible. Please select a different combination.

Output Type
Number of Outputs
Output Range
Analog Input Type
Analog Input Class
Number of Analog Inputs
Maximum Sample Rate (per sec)
Analog Input Resolution
Input Range
Power
Digital I/O
Interface Protocol


The OMB-DAQ-2416 and the OMB-DAQ-2416-4AO are highly accurate, multi-function measurement and control modules for the USB bus. These modules are 24-bit analog input devices for voltage or temperature, with eight digital I/O lines and two counters. In addition to the features listed, the OMB-DAQ-2416-4AO also includes four analog output channels with 16-bit resolution, ±10V output range, and an aggregate 1000 Hz update rate.

System Expansion
With the addition of an optional OMB-AI-EXP32 analog input expansion module, the number of analog input channels on the OMB-DAQ-2416 or OMB-DAQ-2416-4AO can be doubled—increasing from 16 differential/32 single-ended inputs, to 32 differential/64 single-ended inputs. The expansion module also provides an additional 16 channels of DIO, bringing the total DIO count of the mated pair to 24.

All features of the OMB-DAQ-2416 series module are included when the OMB-AI-EXP32 is attached, including the ability to accommodate thermocouples on any input channel, built-in cold junction compensation, and open thermocouple detection. The OMB-AI-EXP32 can be plugged directly into a OMB-DAQ-2416 series module. The packaging for the OMB-DAQ-2416 series and the OMB-AI-EXP32 ensures ease of use in a variety of applications. Detachable screw terminals facilitate attaching and removing without re-wiring. The modules can easily be DIN-rail mounted for rack applications.

Software
The OMB-DAQ-2416 Series modules ship with an impressive array of software, including TracerDAQ®, a full-featured, out-of-the-box data logging, viewing, and analysis application. Driver support and detailed example programs are included for Universal Library programming libraries for Microsoft® Visual Studio® programming languages, and other languages, including DASYLab®, and ULx for NI LabVIEW® (comprehensive library of VIs and example programs compatible with 32-bit and 64-bit LabVIEW 2010 or later) and InstaCalTM installation, calibration and test utility-powerful solutions for programmers and nonprogrammers alike. These modules operate under Microsoft Windows® VISTA/7/8/10 (32-bit and 64-bit) operating systems.

The OMB-DAQ-2416 Series data acquisition modules are supplied with TracerDAQ software which is a collection of four virtual instrument applications used to graphically display and store input data and generate output signals:

• Strip Chart—Log and graph values acquire from analog inputs, digital inputs, temperature inputs and counter inputs
• Oscilloscope—Display values acquired from analog inputs
• Function Generator—Generate waveforms for analog outputs
• Rate Generator—Generate waveforms for counter outputs

TracerDAQ PRO is an enhanced version of TracerDAQ. A comparison of some of the features included in TracerDAQ vs TracerDAQ PRO is shown on the PDF.

SPECIFICATIONS
A/D CONVERTER
(OMB-DAQ-2416, OMB-DAQ-2416-4AO)
A/D Converter Type:
24-bit sigma delta
A/D Data Rates:3750 samples/sec (S/s), 2000 S/s, 1000 S/s, 500 S/s, 100 S/s, 60 S/s, 50 S/s, 25 S/s, 10 S/s, 5 S/s, 2.5 S/s
Input Isolation: 500 Vdc min between field wiring and USB interface
Common Mode Rejection: Thermocouple mode, 110 dB; voltage mode, 90 dB

ANALOG INPUTS
(OMB-DAQ-2416, OMB-DAQ-2416-4AO, OMB-AI-EXP32)
Number of Channels:
16 differential/32 single-ended (thermocouples require differential mode) on OMB-DAQ-2416 or OMB-DAQ-2416-4AO. The OMB-AI-EXP32 is a multiplexer-based channel expansion module that adds an additional 16 differential/32 single ended channels.
Maximum Input Voltage: ±30V (power on), ±10V (power off)
Input Impedance: 2 G? (power on), 390 ? (power off)
Input Leakage Current: ±10.6 nA (OMB-DAQ-2416, OMB-DAQ-2416-AO); ±20 nA (OMB-AI-EXP32); ±1µA max for input voltage >±30 V
Input Capacitance: 590 pF
Crosstalk: 100 dB adjacent channels
Channel Gain Queue: Up to 64 elements, software configurable channel and range
Warm-Up Time: 45 minutes max (OMB-DAQ-2416, OMB-DAQ-2416-4AO); 15 minutes max (OMB-AI-EXP32)
Open Thermocouple Detect: Automatically enable when a channel is configured for a thermocouple sensor.
CJC Sensor Accuracy: ±0.15°C typical (15 to 35°C); ±0.5°C max (0 to 55°C)


ANALOG OUTPUT
(OMB-DAQ-2416-4AO ONLY)
Number of Channels:
4
Resolution: 16-bit
Range: ±10 Vdc
Absolute Accuracy: ±16.0 LSB
Relative Accuracy: ±4.0 LSB
Differential Non-Linearity: ±0.25 LSB typical; ±1 LSB max
Current: ±3.5 mA max
Power On and Reset State: DACs cleared to zero scale, 0V ± 50 mV
Noise: 30 µVRMS
Settling Time: 45 µs
Slew Rate: 1.0 V/µs
Throughput: Single channel, 1000 S/s (max, system dependent); multiple channels, 1000 S/s divided by the number of channels (max, system dependent)

ANALOG INPUT/OUTPUT
CALIBRATION
Recommended Warm-Up Time:
45 minutes max
Calibration: Firmware calibration
Calibration Interval: 1 year
Calibration Reference: 10.000V, ±5 mV max; actual measured values stored in EEPROM
Tempco: 5 ppm/°C max
Long Term Stability: 30 ppm/1000 hrs

DIGITAL INPUTS
(OMB-DAQ-2416, OMB-DAQ-2416-4AO, OMB-AI-EXP32)
Number of Digital I/O

Channels: 8 (OMB-DAQ-2416, OMB-DAQ-2416-4AO); 16 (OMB-AI-EXP32)
Configuration: Each DIO bit can be independently read from (DIN) or written to (DOUT). The DIN bits can be read at any time whether the DOUT is active or tri-stated.
Voltage Range: 0 to 15 Vdc
Type: CMOS (Schmitt trigger)
Characteristics: 47 k? pull-up/pulldown resistor, 28 k? series resistor
Maximum Input Voltage Range: 0 to 20 Vdc max (power on/off, relative to DGND)
Pull-Up/Pull-Down Configuration: All pins pulled up to 5V via individual 47 k? resistors (default configuration); pull-down capability is available by moving internal jumper
Transfer Rate (Software Paced): 500 port reads or single bit reads per second typical
Input High Voltage: 1.3V min, 2.2V max
Input Low Voltage: 1.5V max, 0.6V min
Schmitt Trigger Hysteresis: 0.4V min, 1.2V max

DIGITAL OUTPUTS
(OMB-DAQ-2416, OMB-DAQ-2416-4AO, OMB-AI-EXP32)
Number of Digital I/O Channels:

8 (OMB-DAQ-2416, OMB-DAQ-2416-4AO); 16 (OMB-AI-EXP32)
Configuration: Each DIO bit can be independently read from (DIN) or written to (DOUT). The DIN bits can be read at any time whether the DOUT is active or tri-stated.
Characteristics: 47 k? pull-up, open drain DMOS transistor
Pull-Up Configuration: All pins pulled up to 5V via individual 47 k? resistors by default
Transfer Rate (Software Paced): 500 port writes or single bit writes per second typical
Output Voltage Range: 0 to 5V (no external pull-up resistor, internal 47 k? resistors connected to 5V by default); 0 to 15V max
Drain to Source Breakdown Voltage: 50V min
Off-State Leakage Current: 0.1 µA
Sink Current Capability: 150 mA max continuous per output pin; 150 mA max continuous for all eight channels
DMOS Transistor On-Resistance (Drain to Source): 4 ?

COUNTERS
(OMB-DAQ-2416, OMB-DAQ-2416-4AO)
Number of Channels:
2
Resolution: 32-bit
Counter Type: Event counter
Input Type: Schmitt trigger, rising edge triggered
Counter Read/Write Rates (Software Paced): 500 reads or writes per second (system dependent)
Input Characteristics: 562 k? pull-up resistor to 5V, 10 k? series resistor
Input Voltage Range: ±15V max
Maximum Input Voltage Range: ±20V max (power on/off)
Input High Voltage: 1.3V min, 2.2V max
Input Low Voltage: 1.5V max, 0.6V min
Schmitt Trigger Hysteresis: 0.4 min, 1.2V max
Input Bandwith (-3dB): 1 MHz
Input Capacitance: 25 pf
Input Leakage Current: ±120 nA
Input Frequency: 1 MHz max
High Pulse Width: 500 ns min
Low Pulse Width: 500 ns min


GENERAL
OMB-DAQ-2416, OMB-DAQ-2416-4AO
DATA ACQUISITION MODULES
Memory:
EEPROM
Microcontroller: One high-performance 8-bit RISC microcontroller with USB interface (non-isolated); one high-performance 16-bit RISC microcontroller for measurements (isolated)
Power: 5V ±5%, 340 mA supplied by included AC adaptor (OMB-DAQ-2416-ADAP)
User Output Voltage: 5V, 10 mA max available (pin 35)
Isolation: 500 Vdc min measurement system to PC
USB Device Type: USB 2.0 (full-speed)
Device Compatibility: USB 1.1, USB 2.0
USB Cable Length: 5 m (16') max
Dimensions: 245 L x 146 W x 50 mm H (9.6 x 5.7 x 2.0")
Input Connections: Detachable screw terminal blocks (accept 16 to 30 AWG wire)
Operating Temperature: 0 to 50°C (32 to 122°F), 0 to 90% RH non-condensing
Storage Temperature: -40 to 85°C (-40 to 185°F)
Weight: 463 g (16.3 oz)

OMB-AI-EXP32
EXPANSION MODULE
User Output Voltage:

+5 V, 10 mA max available (pin 19)
Dimensions: 245 L x 146 W x 50 mm H (9.6 x 5.7 x 2.0")
Input Connections: Detachable screw terminal blocks (accept 16 to 30 AWG wire)
Operating Temperature: 0 to 50°C (32 to 122°F), 0 to 90% RH non-condensing
Storage Temperature: -40 to 85°C (-40 to 185°F)
Weight: 400 g (14.1 oz)
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Rated 4 out of 5 by from delivery the product is ok, but the delivery time is too long. Moreover, processing is also slow.
Date published: 2021-06-06
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Am i able to use single ended and differential channels at the same time when recording data?

Asked by: Unknown
The OMB-DAQ-2416 series cannot do what you are asking for. If a channel is set to differential then the others by default will set to differential, is single ended then all the channels will be set to single ended. Thank you.
Answered by: Application Engineer
Date published: 2019-07-15
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