NI NIUMI-7764 Universal motion interface Datasheet

Universal Motion Interfaces
NI UMI-7764, NI UMI-7774, NI UMI-7772
• 4 and 2-axis universal motion
wiring interfaces with single cable
connection from motion controller
• Per-axis motion signal breakout
• Screw terminal connectors for
encoder, limit, motion I/O, and
motor driver signals
• Host bus +5 VDC monitor with
built-in driver inhibit control
• Connectivity for third-party drive
and motion components
• Encoder rates of 20 MHz
NI UMI-7774, NI UMI-7772
• Tailored for industrial applications
• Per-axis D-Sub connectivity
• Isolated signals
• 4 and 2-axis versions
• 24 V I/O
Overview and Applications
Features
For connectivity to third-party power drives, use a National
Instruments UMI interface. These products provide a comprehensive
wiring and connection point for motion control and feedback
signals. A single cable from the motion controller to the UMI carries
input and output signals for all axes. By dividing these signals into
per-axis and function-specific connections, the UMI interface
simplifies integration of third-party drivers, amplifiers, encoders,
limits, and I/O with NI controllers. Each UMI works with up to
20 MHz quadrature encoder rates.
Each UMI incorporates a host PC power monitor that inhibits the
motion driver if the host PC loses power during motion control. The
UMI monitors the +5 VDC from the PC and activates the inhibit
signals if the voltage falls out of tolerance.
Enhanced motion-specific features set the UMI apart from simple
connector-only screw terminal blocks. Compatibility with both TTL
and differential encoders, input filtering, host-PC power monitoring,
onboard inhibit functionality, and compact size make the UMI the
ideal motion interface solution. The result is simplified wiring to
third-party amplifier/driver and motor components. Refer to
ni.com/motion for integrated amplifier, power supply, and
connectivity solutions.
Some signals have compatibility defined as signal pass-through,
which means the UMI may have passive filtering on these signals but
voltage range or current handling capabilities are not affected.
Consult your motion controller specifications to determine the
allowable voltage range and logic level compatibility of the signal.
PC
Servo and Stepper
Control Boards
Third-Party
Drive Unit
UMI
Application
Software
A
B
Motion I/O
Figure 1. Typical Motion System Components
Limit Switches
Encoders
Motor
Universal Motion Interfaces
Connecting to Motor Drives
When interfacing to a third-party power drive and motor, it is
important to consider the amount of current to drive the motor and
the connectivity to a motor drive. National Instruments provides a
wide selection of options for interfacing to motors. You can interface
to 2-phase stepper motors with 4 A peak current using National
Instruments power drives. In addition, you can interface to 5-phase
stepper motors and other stepper motors outside the range of
NI MID Series drives using National Instruments UMI interfaces.
For DC-brush servo motors that need up to 10 A peak current, you
can use National Instruments power drives and controllers. For DC
brushless, AC, and other types of servo motors outside the range of
NI MID Series drives, an NI UMI interface simplifies connections to
the motor and controller.
Ordering Information
NI UMI-7764 (4-axis) ..................................................777978-02
NI UMI-7774 (4-axis) ..................................................778558-01
NI UMI-7772 (2-axis) ..................................................778556-01
Cable
SH 68-C68-S cable ....................................................186381-02
BUY ONLINE!
Visit ni.com/info and enter umi7764.
Specifications
UMI-7764
UMI-7774, UMI-7772
Encoder Interface (each axis)
Axes..................................................................
Inputs................................................................
Differential input threshold..............................
Single-ended input threshold...........................
Range................................................................
Noise filter (RC time constant) ........................
Maximum quadrature frequency......................
Compatibility ....................................................
Encoder Interface
4
Quadrature, incremental
±0.3 V (typical)
TTL/CMOS
0 to 5 VDC
100 ns
20 MHz
Signal pass-through
Trigger Inputs
Noise filter (RC time constant) ........................ 100 ns
Compatibility .................................................... Signal pass-through
Inhibit and Inhibit All Inputs
Voltage range ................................................... 0 to 12 VDC
Input voltage threshold .................................... TTL/CMOS
Input pull-up resistor........................................ 3.3 kΩ
Analog Inputs
Noise filter (RC time constant) ........................ 10 µs
Compatibility .................................................... Signal pass-through
Axis Inhibit Out
Range................................................................ 0 to 5 VDC
Output low voltage........................................... 0.5 V at 16 mA
Output high voltage.......................................... 2.4 V at 3.2 mA
Power Requirements
+5 VDC ............................................................ 200 mA + user-defined encoder and limit power
Host Bus Voltage Interlock
Voltage ............................................................ 4.5 VDC
Physical
Dimensions....................................................... 19.5 by 15.2 by 4.5 cm (7.7 by 6.0 by 1.8 in.)
Environment
Operating temperature..................................... 0 to 55 °C
Storage temperature ........................................ -20 to 70 °C
Relative humidity ............................................. 10 to 90% (noncondensing)
Axes
UMI-7774...................................................
UMI-7772...................................................
Inputs................................................................
Differential input threshold..............................
Input Voltage Range.........................................
Single-ended input threshold...........................
Maximum quadrature frequency......................
Encoder Power .................................................
4
2
Quadrature, Incremental
± 0.3 V (typical)
0 to 5 VDC
Differential only
20 MHz
+5 V
Trigger Inputs
Type .................................................................. Optically isolated, sinking inputs
Input Voltage Range......................................... 0 to 30 VDC
Protection ......................................................... Overcurrent and reverse polarity
Inhibit and Inhibit All Inputs
Type ..................................................................
Voltage range ...................................................
Input voltage threshold
Off ..............................................................
On...............................................................
Protection .........................................................
Analog Inputs ..................................................
Protection .........................................................
Optically isolated, sinking inputs
0 to 30 VDC
<2 VDC
>3.5 VDC
Overcurrent and reverse polarity
Pass through
none
Axis Inhibit Out
Type ..................................................................
Range ............................................................
Host Bus Voltage Interlock...............................
Protection .........................................................
Optically isolated, sourcing outputs
5 to 30 VDC
Inhibits all axes if controller power not present
Short circuit and overcurrent
General Purpose I/O
Inputs................................................................ 8, optically isolated, current sinking
Outputs ............................................................ 8, optically isolated, current sourcing
Protection ......................................................... Yes
Step/Direction/Breakpoints Outputs
Type .................................................................. Signal pass through
Power Requirements
24 VDC (±10%) ................................................. 200 mA plus optional 5 to 30 VDC power for isolated
user defined field I/O
Physical
Dimensions....................................................... 26 by 12.7 by 2.2 cm (10.2 by 5 by 0.87 in.)
Environment
Operating temperature..................................... 0 to 55 °C
Storage temperature ........................................ -30 to 70 °C
Relative humidity ............................................. 10 to 90%, noncondensing
Shock and Vibration
Operating Shock* ............................................. 30 g, 11 ms half sine, 3 shocks
Operating Vibration (random)*......................... 5 , 10 to 500 Hz at 0.01 g /Hz
Operating Vibration (sinusoidal)* .................... 5 g, 10 to 500 Hz
*panel-mounted
2
grms
2
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