Download Print this page
Unitronics UniStream US5-B5-TA32 User Manual

Unitronics UniStream US5-B5-TA32 User Manual

Plc+hmi all-in-one programmable controllers

Advertisement

Quick Links

UniStream
®
Built-in
This guide provides basic installation information for specific UniStream
Technical specifications may be downloaded from the Unitronics website.
General Features
Unitronics' UniStream
a built-in CPU, an HMI panel, and built-in I/Os.
The series is available in two versions: UniStream Built-in and UniStream Built-in Pro.
Note that a model number that includes:
B5/C5 refers to UniStream Built-in
B10/C10 refers to UniStream Built-in Pro. These models offer additional features, detailed
below.
▪ Resistive Color Touch-screens
HMI
▪ Built-in Trends and Gauges, auto-tuned PID, data tables, data sampling, and Recipes
Power
Features
I/O
▪ Built-in I/O configuration, varies according to model
Options
▪ Built-in ports: 1 Ethernet, 1 USB host, 1 Mini-B USB device port
COM
Options
▪ Fieldbus: CANopen, CAN Layer2, MODBUS, EtherNetIP and more. Implement any serial
COM
Protocols
Programming
Software
Unitronics
®
Built-in series are PLC+HMI All-in-One programmable controllers that comprise
▪ Rich graphic library for HMI design
▪ UniApps™: Access & edit data, monitor, troubleshoot & debug and more – via HMI or remotely via
VNC
▪ Security: Multi-level password protection
▪ Alarms: Built-in system, ANSI/ISA standards
▪ Local I/O via UAG-CX series I/O expansion adapters and standard UniStream Uni-I/O™ modules
▪ Remote I/O using UniStream Remote I/O or via EX-RC1
▪ Serial and CANbus ports may be added via UAC-CX modules
RS232/485, TCP/IP, or CANbus third-party protocols via Message Composer
▪ Advanced: SNMP Agent/Trap, e-mail, SMS, modems, GPRS/GSM, VNC Client, FTP Server/Client
All-in-One software for hardware configuration, communications, and HMI /PLC
applications, available as a free download from Unitronics.
User Guide
US5-B5-TA32, US5-B10-TA32,
US5-C5-TA32, US5-C10-TA32
US7-B5-TA32, US7-B10-TA32,
US7-C5-TA32, US7-C10-TA32
US10-B5-TA32, US10-B10-TA32,
US10-C5-TA32, US10-C10-TA32
®
models with built-in I/O.
1

Advertisement

loading
Need help?

Need help?

Do you have a question about the UniStream US5-B5-TA32 and is the answer not in the manual?

Questions and answers

Subscribe to Our Youtube Channel

Summary of Contents for Unitronics UniStream US5-B5-TA32

  • Page 1 US10-B5-TA32, US10-B10-TA32, US10-C5-TA32, US10-C10-TA32 This guide provides basic installation information for specific UniStream ® models with built-in I/O. Technical specifications may be downloaded from the Unitronics website. General Features Unitronics’ UniStream ® Built-in series are PLC+HMI All-in-One programmable controllers that comprise a built-in CPU, an HMI panel, and built-in I/Os.
  • Page 2 ▪ All examples and diagrams are intended to aid understanding, and do not guarantee operation. Unitronics accepts no responsibility for actual use of this product based on these examples. ▪ Please dispose of this product according to local and national standards and regulations.
  • Page 3 Pro models only. This 3.5mm Audio jack enables you to connect external audio equipment. Built-in I/O Model-dependent. Present in models with built-in I/O configurations. Uni-COM™ CX Connection point for up to 3 stack-on modules. These are available by Module Jack separate order. Unitronics...
  • Page 4 Allocate space for: ▪ the controller ▪ any modules that will be installed ▪ access to ports, jacks, and the microSD card slot For exact dimensions, please refer to the Mechanical Dimensions shown below. Mechanical Dimensions UniStream 5” UniStream 7" Unitronics...
  • Page 5 When properly mounted, the panel is squarely situated in the panel cut-out as shown below. ▪ Do not apply torque exceeding 0.35 N·m (3.1 in-lb) of torque to tighten the bracket Caution screws. Using excessive force to tighten the screw can damage this product. UniStream 5” Unitronics...
  • Page 6 First Use The battery is protected by a removable cover on the side of the controller. The battery is supplied installed inside the unit, with a plastic tab preventing contact which must be removed by the user. Unitronics...
  • Page 7 ▪ To avoid damaging the wire, use a maximum torque of 0.5 N·m (4.4 in-lb). ▪ Do not use tin, solder, or any substance on stripped wire that might cause the wire strand to break. ▪ Install at maximum distance from high-voltage cables and power equipment. Unitronics...
  • Page 8 ➢ Keep shield connections as short as possible. ➢ Ensure shield continuity when extending shielded cables. For detailed information, refer to the document System Wiring Guidelines, located in the Technical Library in the Unitronics’ website. Wiring the Power Supply The controller requires an external power supply.
  • Page 9 Top groups Input connection points Bottom group Output connection points The function of certain I/Os may be adapted via wiring and software settings. Unitronics...
  • Page 10 ▪ Input modes are set both by wiring and software. Input wiring, sink Input wiring, source High Speed Input wiring, sink High Speed Input wiring, source Use sink input wiring to connect a sourcing (pnp) device. Use source input wiring to connect a sinking (npn) device. Unitronics...
  • Page 11 ▪ The mode is determined by the hardware configuration within the software application. ▪ Note that if, for example, you wire the input to current, you must also set it to current in the software application. Voltage Differential Single-ended Current 2-wire 3-wire 4-wire Unitronics...
  • Page 12 The mode is determined both by wiring and by the hardware configuration within the software application. ▪ Voltage and current modes use distinct points. Connect only the point associated with the selected mode; leave the other point unconnected. Voltage Differential Single-ended Current 2-wire 3-wire 4-wire Unitronics...
  • Page 13 ▪ Use isolated-junction thermocouples, or, if you are not using the analog inputs, you may use up to one exposed-junction thermocouple; ▪ Electrically isolate exposed-junction thermocouples from other electrically-conductive parts of the system. Unitronics...
  • Page 14 Output’s power supply The use of any of the outputs requires an external 24VDC power supply as shown in the accompanying figure. Outputs Connect the +VO and 0V terminals as shown in the accompanying figure. O0-O7 share common return 0V. Unitronics...
  • Page 15 1. Disconnect the power supply. 2. Remove all wiring and disconnect any installed devices according to the device’s installation guide. 3. Unscrew and remove the mounting brackets, taking care to support the device to prevent it from falling during this procedure. Unitronics...
  • Page 16 Built-in series are PLC+HMI All-in-One programmable controllers that comprise built-in HMI and built-in I/Os. UniStream connects directly to UniCloud, Unitronics' IIoT cloud platform using built-in UniCloud connectivity. More information about UniCloud is available at www.unitronics.cloud. Model numbers in this document...
  • Page 17 Add-on Ports Add up to 3 ports to a single controller using Uni-COM™ UAC-CX Modules Internal memory Standard (B5/C5) Pro (B10/C10) RAM: 512MB RAM: 1GB ROM: 3GB system memory ROM: 6GB system memory 1GB user memory 2GB user memory Unitronics...
  • Page 18 Isolation None Cable USB 2.0 compliant; < 3 m (9.84 ft) USB host Number of ports Port type Type A Data rate USB 2.0 (480Mbps) Isolation None Cable USB 2.0 compliant; < 3 m (9.84 ft) Over current protection Unitronics...
  • Page 19 Quadrature Mode figure below). Pulse width Pulse/Direction mode: 5.1s min. for each state in Pulse/Dir Mode figure below). Quadrature mode: 2.5s min. for each state in Quadrature Mode figure below). Cable Shielded twisted pair Quadrature Mode Pulse/Direction mode Unitronics...
  • Page 20 Voltage mode – AIx: -1V ÷ 10.5V ; CM1: -1V ÷ 0.5V range (signal + Current mode – AIx: -1V ÷ 5.5V ; CM1: -1V ÷ 0.5V common mode) (x=0 or 1) Cable Shielded twisted pair Diagnostics Analog input overflow Unitronics...
  • Page 21 317.3ms 491.5ms 491.5ms 2477.3ms Medium 627.2ms 975.4ms 975.4ms 4947ms Strong 1246.9ms 1943.3ms 1943.3ms 9886.5ms Update time (10) Noise Rejection Frequency Update Time 400Hz 154.9ms 60Hz 242ms 50Hz 242ms 10Hz 1234.9ms Cable Shielded twisted pair Diagnostics Analog input overflow (11) Unitronics...
  • Page 22 (2,192°F < T ≤ 2,282°F) Thermocouple type -200°C ≤ T ≤ 1,372°C Under-range: (-328°F ≤ T ≤ 2,501.6°F) -270°C ≤ T < -200°C (-454°F ≤ T < -328°F) Over-range: 1,372°C < T ≤ 1,400°C (2,501.6°F < T ≤ 2,552°F) Unitronics...
  • Page 23 390Ω < R ≤ 395.85Ω -70mV ≤ V ≤ 70mV Under-range: -71.05mV ≤ V < -70mV Over-range: 70mV ≤ V < 71.05mV * Overflow or Underflow is declared when an input value exceeds the Over- (11) range or Under-range boundaries respectively. Unitronics...
  • Page 24 1242.4ms Weak 317.3ms 491.5ms 491.5ms 2477.3ms Medium 627.2ms 975.4ms 975.4ms 4947ms Strong 1246.9ms 1943.3ms 1943.3ms 9886.5ms Update time Noise Rejection Frequency Update Time (10) 400Hz 154.9ms 60Hz 242ms 50Hz 242ms 10Hz 1234.9ms Thermocouple ±1.5°C (±2.7°F) Cold junction error (15) Unitronics...
  • Page 25 (Load resistance < 4kΩ ( PWM Frequency O0, O1: (18) 3kHz max. (Load resistance < 4kΩ) Short-circuit protection Source Transistor Outputs Power Supply Nominal operating 24VDC voltage Operating voltage 20.4 – 28.8VDC Maximum current 30mA@24VDC consumption Current consumption does not include load current Unitronics...
  • Page 26 0 ÷ 20mA and 4 ÷ 20mA – 1.7ms (600Ω load), 1.7ms (600Ω + 10mH load) Short circuit protection Yes (no indication) (voltage mode) Cable Shielded twisted pair Diagnostics (11) Current – Open circuit indication Supply level – Normal / Low or missing Unitronics...
  • Page 27 Size US5-xx-TA32 0.39 Kg (0.86 lb) Refer to the images on page 29 US7-xx-TA32 0.68 Kg (1.49 lb) Refer to the images on page 30 US10-xx-TA32 1.08 Kg (2.38 lb) Refer to the images on page 30 UniStream 5” Unitronics...
  • Page 28 User Guide UniStream 7" UniStream 10.1" Unitronics...
  • Page 29 14. For temperature measurement, the value is represented in 0.1° units. For example, a temperature of 12.3° is represented as 123 at the Value tag. 15. The overall accuracy for thermocouples is a combination of the per-sensor specified accuracy and the thermocouple cold junction error specification. Unitronics...
  • Page 30 The tradenames, trademarks, logos and service marks presented in this document, including their design, are the property of Unitronics (1989) (R"G) Ltd. or other third parties and you are not permitted to use them without the prior written consent of Unitronics or such third party as may own them.