- Description
- Quick Selector Guide
- Specifications
- Setup Software
- Mechanical
- Documents
- Applications
- Accessories

Features
- Two independently field-scalable pulse input channels A and B
- Arithmetic functions A+B, A-B, AxB, A/B, A/B-1 (draw) applicable to rate or total
- Inputs from NPN or PNP proximity switches, contact closures, digital logic, magnetic pickups down to 12 mV, or AC inputs up to 250 Vac
- Two independently field-scalable pulse input channels from 0.005 Hz to 1 MHz
- 4-20 mA, 0-20 mA, 0-10V or -10V to +10V transmitter output, (isolated)
- Analog output resolution 0.0015% of span, accuracy ±0.02% of span
- RS232 or RS485 serial data, Modbus or Laurel ASCII protocol (isolated)
- Dual 120 mA solid state relays for alarm or control (isolated)
- 5V, 10V, 12V, or 24V dc transducer excitation output (isolated)
- Power 85-264 Vac / 90-300 Vdc or 10-48 Vdc / 12-32 Vac (isolated)
- DIN rail mount housing, 22.5 mm wide, detachable screw-clamp connectors
- Operating temperature from 0°C to 55°C
- Operating temperature option from -40°C to 70°C (-40°F to 158°F)
- Extended allows up to 180 data points for custom curve linearization and a rate derived from consecutive readings along with arithmetic functions A+B, A-B, AxB, A/B or A/B-1
The Laureate™ LT Series DIN rail analog transmitter with serial data communication and analog outputs for versatile connectivity.
The digitally programmable transmitter features two relays for alarm or control. The series offers exceptional accuracy with Input frequencies from 0.005 Hz to 1 MHz. The LT Series transmitters offer the same high performance, signal conditioning, and programmable features as Laureate digital panel meters, counters, and timers.The Laureate 4-20 mA, 0-20 mA, 0-10V or -10V to +10V and RS232/RS485 output transmitter for ratio, product, sum or difference of 2 rates or totals accepts two independently scalable input channels A & B from a wide range of pulse sources, such as NPN or PNP proximity switches, contact closures, digital logic, magnetic pickups down to 12 mV, or AC voltages to 250 Vac. Input frequencies can range from 0.005 Hz to 1 MHz.
Arithmetic functions A+B, A-B, AxB, A/B or A/B-1 are made available by the Extended counter main board and can track the sum, difference, product, ratio, or draw of both input channels. These functions can be applied to scaled rates, scaled totals, square root of rates, totals after square root extraction, custom curve linearized rates, or totals after custom curve linearization.
- Sum can be used to add two flows for total flow, or to add the number of parts carried by two conveyor belts.
- Difference can be used to subtract outflow from inflow for net flow, or to subtract reject parts from total parts.
- Product can be used to multiply two rates, for example to compute horsepower by multiplying torque by RPM.
- Ratio can be used to compare flow rates in two channels, the RPM of rollers or gears, or the speed of moving machinery, such as conveyor belts. Ratio can also be applied to scaled totals to compare two batches to be mixed. In this application, one transmitter is used to monitor the ratio of flow rates, and a second transmitter to monitor the resulting batch totals.
- Draw is obtained by subtracting 1 from ratio. Draw is used to measure the elongation of material as it passes between rollers, or to monitor variation in the speed of rollers for tensioning.

The Extended Laureate computer board can display rate based on successive readings. It also allows exceptionally accurate custom curve linearization, for example to read out liquid volume or rate of flow in a horizontal cylindrical tank based on level reported by a 4-20 mA transmitter. For setup, up to 180 data points can be input into a computer spreadsheet or text file by the user. The computer then calculates spline-fit segments, which are downloaded into the transmitter.
Exceptional Accuracy and Stability. Laureate transmitters determine frequency by taking the inverse of period as measured with a calibrated quartz crystal time base. This results in extremely accurate and stable 6-digit internal readings (±999,999 counts), which are then processed in software. The analog output is generated by an ultra-linear 16-bit (65,536 step) digital-to-analog converter (DAC) for 0.02% output accuracy. The update rate of the transmitter output is a programmed gate time + 30 ms + 0-2 signal periods. For a 60 Hz signal, the update rate would be 20 per second. Such fast update rates are ideal for alarm and control.
The update rate of the transmitter output is a programmed gate time + 30 ms + 0-2 signal periods. For pulse rates of 60 Hz and above, the update rate would be 20 per second. Such fast update rates are ideal for alarm and control.
All signal conditioner board ranges are factory-calibrated, with calibration factors for each range securely stored in an onboard EEPROM. These factors can be scaled via software to accommodate external shunts, enabling field replacement of signal conditioner boards without necessitating recalibration of the associated transmitter. For optimal accuracy, factory recalibration is recommended annually. All Laurel Electronics instruments undergo factory calibration using the industry-leading Fluke calibrators, which are recalibrated yearly and certified traceable to national standards, ensuring the highest level of precision and reliability.
Laureate Transmitters are easily programmed with Laurel’s free Instrument Setup Software, downloadable from our website and compatible with Windows PCs, requiring a data interface board for setup.
Standard Features of Laureate LT Transmitters Include:
- Serial communications output, (isolated), RS232 or RS485 (half or full duplex), jumper selectable. Three protocols are user selectable: Modbus RTU, Modbus ASCII, or Laurel ASCII. Modbus operation is fully compliant with Modbus Over Serial Line Specification V1.0 (2002). The Laurel ASCII protocol is simpler than the Modbus protocol and is recommended when all devices are Laureates.
- 4-20 mA, 0-10V or -10V to +10V analog transmitter output, (isolated), jumper-selectable and user scalable. All selections provide 0.0015% resolution of output span and 0.02% output accuracy of a reading from -99,999 to +99,999 counts that is also transmitted digitally. Output isolation from signal and power grounds eliminates potential ground loop problems. Note that Ethernet data I/O is provided by Laurel's LTE series transmitters.
- Dual-channel pulse inputs for voltage signals, NPN or PNP proximity switches, contact closures, magnetic pickups or flow meters.
- Dual solid state relays, (isolated), for alarm or control. Rated 120 mA at 130 Vac or 170 Vdc.
- Selectable transducer excitation output, (isolated), user selectable 5V@100 mA, 10V@120 mA, 12V@100 mA, or 24V@50 mA.
- Power 85-264 Vac, (isolated), low-voltage 10-48 Vdc or 12-32 Vac power is optional.
Digital signal filtering modes can be selected to ensure stable readings in electrically noisy environments.
- An unfiltered selection provides true peak and valley readings and aids in control applications.
- A batch average filter selection averages each 16 conversions.
- An adaptive moving average filter selection provides a choice of 8 time constants from 80 ms to 9.6 seconds. When a significant change in signal level occurs, the filter adapts by briefly switching to the shortest time to follow the change, then reverts back to its selected time constant. An Auto setting selects the time constant selection based on signal noise.
Peak and valley values are automatically captured. These may be displayed via Laurel's free Instrument Setup Software, which runs on a PC under MS Windows or can be transmitted as serial data.
Two control inputs (CMOS/TTL levels, logic 0 = tied to digital ground, logic 1 = open) or dry contacts that can be set to control / activate 14 transmitter commands.
An (isolated) 5, 10, 12, or 24 Vdc excitation output is standard to power transducers or two-wire transmitters. Ratiometric operation, which automatically compensates for changes in the applied excitation, is jumper selectable for applications, such as bridges, where the signal to be measured is proportional to the excitation level.
LT series DIN rail Transmitters & signal conditioners can be interfaced to a wide range of sensors and transducers using one of seven available plug-in signal conditioner boards. The transmitters duplicate the high performance (high accuracy, high read rate) and extensive programmable features of Laureate 1/8 DIN digital panel meters, counters and timers. They utilize the same signal conditioners boards, much of the same firmware, and Laurel's free Windows-based Instrument Setup Software. They come in a compact DIN rail mount package with detachable screw-clamp connectors for easy wiring.
The LT series Transmitters accessible from this page include a 4-20 mA, 0-20 mA, 0-10V, or -10V to +10V analog output (isolated, user selectable), an RS232 or RS485 serial data interface (isolated, user selectable), and dual 120 mA solid state AC/DC relays (isolated). An (isolated) 5, 10, 12, or 24 Vdc transducer excitation output is included with all models other than those with a temperature or AC RMS signal conditioner.
Connecting Laureate LT Transmitters to a Local Area Network (LAN)
Up to 30 Laureate LT Transmitters and/or Digital Panel Meters can be configured for RS485 and daisy-chained to an LT Transmitter for seamless LAN integration. Alternatively, Laurel LTE series Ethernet transmitters can connect directly to a LAN via an Ethernet cable. Setup for both configurations is streamlined using Laurel’s free Instrument Setup Software, which simplifies node discovery and transmitter configuration.
Flexible Communication Options for LT Transmitters
Laureate Transmitters can be equipped with Laurel communication boards to support various interfaces and protocols. These include serial interfaces with ASCII or Modbus RTU protocols, and Ethernet interfaces with web access, ASCII, or Modbus TCP/IP protocols, ensuring versatile connectivity for your commercial applications.
LT Transmitter Signal Input & Function | Model Series | Analog Output | RS232 & RS485 | Dual Relays | |
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1 | DC Input Voltage and Current | LT-DC | ![]() |
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2 | AC RMS Voltage or Current | LT-RMS | ![]() |
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3 | Process Voltage or Current | LT-P | ![]() |
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4 | Weighing Applications | LT-WA | ![]() |
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5 | Load Cell & Microvolt Signals | LT-WM | ![]() |
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6 | Thermocouple (Types J, K, T, E, N, R, S) | LT-TC | ![]() |
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7 | RTD Temperature | LT-RTD | ![]() |
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8 | Resistance in Ohms | LT-R | ![]() |
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9 | Frequency, Rate, Speed | LT-FR | ![]() |
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10 | Pulse Input Totalizer | LT-FR | ![]() |
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11 | Process Signal Totalizer | LT-VF | ![]() |
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12 | Sum, Difference, Ratio, Product of 2 Inputs | LT-FR | ![]() |
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13 | Batch Controller Pulse Input | LT-FR | ![]() |
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14 | Batch Controller Analog Input | LT-FR | ![]() |
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15 | On/Off Duty Cycle | LT-FR | ![]() |
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16 | Stopwatch Timing for Single Events | LT-FR | ![]() |
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17 | Average Time of Periodic Events | LT-FR | ![]() |
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18 | AC Phase Angle and Power Factor | LT-FR | ![]() |
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19 | Quadrature Position or Rate | LT-QD | ![]() |
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4-20 mA & RS232/RS485 Data Transmitters for Position or Rate from Quadrature Encoders
Pulse Input | ||||
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Signal Types | AC, pulses from NPN, PNP transistors, contact closures, magnetic | |||
Signal Ground | pickups | |||
Channel A Frequency | Common ground for channels A & B. | |||
Channel B Frequency | 0.005 Hz to 1 MHz | |||
Minimum Signal | 0.005 Hz to 250 kHz | |||
Maximum Signal | Nine ranges from (-12 to +12 mV) to (+1.25 to +2.1V) | |||
Noise Filter | 250 Vac | |||
Contact Debounce | 1 MHz, 30 kHz, 250 Hz (selectable) | |||
Time Base Accuracy | 0, 3, 50 ms (selectable) | |||
Arithmetic Functions | Quartz crystal calibrated to ±2 ppm A+B, A-B, AxB, A/B, A/B-1 | |||
Recalibration: All ranges are calibrated at the factory. Recalibration is recommended every 12 months. | ||||
Analog Output (standard) | ||||
Output Levels | 4-20 mA, 0-20 mA, 0-10 Vdc, -10 to +10Vdc (user selectable) | |||
Compliance at 20 mA | 10V (0-500Ω load) | |||
Compliance, 0-10V | 2 mA ( 5 kΩ or higher load ) | |||
Output Resolution | 16 bits (65,536 steps) | |||
Output Accuracy | ±0.02% of output span | |||
Output Update Rate | Programmed gate time + 30 ms + 0-2 signal periods | |||
Output Isolation | 250V rms working, 2.3 kV rms per 1 minute test | |||
Serial Data Output (standard) | ||||
Signal Types | RS232 or RS485 (half or full duplex), jumper selectable | |||
Data Rates | 300, 600, 1200, 2400, 4800, 9600, 19200 baud | |||
Output Isolation | 250V rms working, 2.3 kV rms per 1 min test | |||
Serial Protocols | Modbus RTU, Modbus ASCII, Custom ASCII | |||
Modbus Compliance | Modbus over Serial Line Specification V1.0 (2002) | |||
RS232/RS485 Connector | Screw terminals for easy daisy chaining | |||
Digital Addresses | 247 for Modbus, 31 for Custom ASCII | |||
Dual Relay Output (standard) | ||||
Relay Type | Two solid state relays, SPST, normally open, Form A | |||
Load Rating | 120 mA at 140 Vac or 180 Vdc | |||
Excitation Output (standard) | ||||
5 Vdc | 5 Vdc ± 5%, 100 mA (jumper selectable) | |||
10 Vdc | 10 Vdc ± 5%, 120 mA (jumper selectable) | |||
12 Vdc | 12 Vdc ± 5%, 100 mA (jumper selectable) | |||
24 Vdc | 24 Vdc ± 5%, 50 mA (jumper selectable) | |||
Output Isolation | 50 Vdc from signal ground | |||
Power Input | ||||
Standard Power | 85-264 Vac or 90-300 Vdc | |||
Low Power Option | 10-48 Vdc or 12-32 Vac | |||
Power Frequency | DC or 47-63 Hz | |||
Power Isolation | 250V rms working, 2.3 kV rms per 1 min test | |||
Power Consumption at 24V | 1.5W typical, 3W with max excitation output | |||
Environmental | ||||
Operating Temperature | -40°C to 70°C (-40°F to 158°F) | |||
Storage Temperature | -40°C to 85°C (-40°F to 185°F) | |||
Relative Humidity | 95% at 40°C, non-condensing | |||
Cooling Required | Mount transmitters with ventilation holes at top and bottom. Leave 6 mm (1/4") between transmitters, or force air with a fan. | |||
Mechanical | ||||
Enclosure | Rugged black polycarbonate housing material | |||
Mounting | 35 mm rail per DIN EN 50022 | |||
Dimensions | 129 x 104 x 22.5 mm case | |||
Connectors | Detachable screw clamp connectors meet VDE / IEC / UL / CSA standards. RJ45 jack for Ethernet | |||
Tightening Torque | Screw terminal connectors: 5 lb-in (0.56 Nm) | |||
Weight | Complete transmitter: 183 g (6.5 oz) | |||
General | ||||
Programming | Utilize Laurel's free Instrument Setup Software, which runs on a PC under MS Windows. | |||
Security | Lockout options available using Laurel's free Instrument Setup Software. | |||
Warranty | 3 years parts & labor | Recalibration: All ranges are calibrated at the factory. Recalibration is recommended every 12 months. |
Transmitter Pinout

Free Instrument Setup Software for Series 2 Laureates
Free Downloadable Windows-based Instrument Setup (IS) software (Data Interface Board Required) for use with our programmable Digital Panel Meters, Scale Meters, Counters, Timers, Remote Displays, and Transmitters, are an easy method to set up Laureate 1/8 DIN digital panel meters, counters, timers, remote displays, and DIN-rail transmitters, as explained in the Instrument Setup Software Manual. Laureate 1/8 DIN instruments can also be set up from the front panel, as explained in their respective Owners Manuals. Instrument Setup software is of benefit whether or not the PC is connected to the instrument.
- When the PC is connected to the instrument, Instrument Setup software can retrieve the setup file from the instrument or open a default setup file or previously saved setup file from disk View Setup, then provides graphical user interface (GUI) screens with pull-down menus applicable to input, display, scaling, filtering, alarms, communications, analog output, and front panel lockouts. Fields that are not applicable to the instrument as configured are either left out or grayed out. Clicking on any item will bring up a detailed Help screen for that item. After editing, the setup file can be downloaded, uploaded to the instrument, or saved to a disk. The same setup file can then be downloaded into multiple instruments.
- When the PC is not connected to the instrument, the above GUI screens can be used to set up a virtual instrument. The setup file can then be saved to disk. Switching toView Menu then brings up a screen with the required front panel programming steps. This view can be printed out for use at the instrument site and to serve as a hard copy record.
Download Free Instrument Setup Software
Installation
Set User Account Control (UAC) of MS Windows to "Never notifiy me" so that Instrument Setup Software can create directories. The UAC change screen can be reached as follows:
- Under Windows 7, click on the Windows Start button in the lower left of the desktop and enter "UAC" in the search field.
- Under Windows 8, navigate to Control Panel, then to the "User Accounts and Family Safety" section, and click on "Change User Account Control Settings."
- Under Windows 10, click on the Windows Start button in the lower left of the desktop, then on "Settings", and enter "UAC" in the search field.
- Reboot your computer for the changed UAC setting to take effect.

RJ11-to-DB9 cable with rear view of DB9 connector to PC

RS232 cable, meter to PC, P/N CBL01
Laureate 1/8 DIN Laureate instruments must be equipped with a serial communications board and be connected to the computer via a serial communications cable. The connection can be via RS232, RS485, USB or Ethernet. Following setup, the serial communications board may be removed from the instrument if desired. The wiring of the RS232 cable is illustrated above with end views of the two connectors.
Laureate LT Series transmitters come standard with a 3-wire serial interface, which can be jumpered for RS232 or RS485.
Laureate LTE Series transmitters come standard with an Ethernet interface.
Meter Setup Screens
Click on any of the reduced screens below for a full-size screen view, then click on the Back button of your browser to return to this page. The screens examples below are for a fully-loaded Series 2 Digital Panel Meter (DPM), which is connected to the PC via RS232. If the meter is a Series 1 meter (pre-2007), this is sensed by the software, and somewhat different screens are brought up. Please see Series 1 setup screens.











Meter Setup Utilities




From the Main Menu, click on Readings if your PC is connected to the meter. A pull-down menu then offers three choices: List, Plot and Graph.
- List presents the latest readings in a 20-row by 10-column table. Press Pause at any time to freeze the display. This is one method to capture peak readings.
- Plot generates a plot of readings vs. time in seconds. It effectively turns the DPM-PC combination into a printing digital oscilloscope.
- Graph generates a histogram where the horizontal axis is the reading and the vertical axis is the number of occurrences of readings. The display continually resizes itself as the number of readings increases.


Dimensions

Dimensioned CAD assembly drawings in EPRT, STEP, x_t, .dwg, pdf file formats: Laureate-transmitter-case.zip (zipping prevents browser from opening CAD files as text files).
Controlling the Mixing Ratio of Two Fluids | |
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Transmitting and alarming the input flow rate ratio of two fluids (gas or liquid) allows these to be mixed in a predetermined ratio in continuous processes. The sensing element is normally a turbine flow meter, which outputs pulses at a frequency proportional to flow rate. The A/B ratio can also be transmitted for totalized rate (or delivered volume). |
Comparing Fluid Inflow & Outflow | |
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The ratio of the inflow and outflow rates of a tank is a measure of the relative filling or emptying rate. The same transmitter can also be programmed to transmit the net inflow or outflow rate in flow units, or to transmit totalized inflow our outflow in volume units. Any of these parameters can be alarmed using the dual relay board and be transmitted via 4-20 mA. |
Controlling Coating Thickness on a Film | |
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In this application, Channel A measures the rate at which a coating material is applied, as measured by a flow meter, while Channel B measures the speed of the film based on pulses from a proximity switch. Transmitting and alarming the A/B ratio assures that an even thickness of coating material is applied as the speed of the film is varies. |
Instrumenting a Pulsed Laser System | |
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The dual-channel Laureate transmitter can measure the speed of conveyor lines by using the output of proximity switches which sense gear teeth or spokes of rotating drive wheels. Transmitting the speed ratio of two lines allows line speeds to be adjusted so that material arrives at work stations when needed. |
Measuring Draw for Elongation | |
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Draw (Ch A / Ch B - 1) can be used to indicate the elongation of films compressed between rollers, the shrinkage films, and the RPM difference of rollers whose speed is varied to maintain tension. The high resolution of Laureate dual channel transmitters is ideal for comparison of rates that are close to each other. |
CLB02
USB-to-RS232 Adapter Cable
CBL04
RS232 Cable for LT Transmitters
What is the LT DIN Rail Digital Transmitter with Serial Data Communication and Analog Outputs
In the world of industrial automation and process control, accurate and reliable measurement of various parameters is crucial. One versatile tool used in such applications is the LT DIN Rail Digital Transmitter. This device offers a range of functionalities, including serial data communication and analog outputs, making it a valuable asset for measuring and processing rates or totals. In this article, we'll delve into the features and applications of this transmitter, particularly focusing on its ability to handle ratios, products, sums, or differences of two rates or totals.
What is an LT DIN Rail Digital Transmitter?
An LT DIN Rail Digital Transmitter is a specialized device designed for mounting on DIN rails, a common standard for modular electrical rail mounting systems. It serves as a digital interface for processing and transmitting measurement data in various industrial settings. Its core functions include measuring and calculating different parameters and communicating this data through serial communication protocols while also providing analog outputs.
Key Features
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DIN Rail Mounting: The transmitter is designed to fit on DIN rails, facilitating easy installation and integration into existing control panels and systems. This standard mounting method is widely used for its convenience and modularity.
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Digital Processing: The device processes incoming data digitally, ensuring high precision and reliability. It can handle complex calculations, such as the ratio, product, sum, or difference of two rates or totals.
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Serial Data Communication: The LT transmitter supports serial data communication, allowing it to interface with other digital devices and systems. This capability is crucial for integrating with digital control systems, data loggers, or other monitoring equipment.
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Analog Outputs: In addition to digital communication, the transmitter provides analog outputs. This feature allows it to interface with devices that require analog signals, such as analog meters or control systems.
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Versatile Calculations: One of the standout features of this transmitter is its ability to calculate and output various mathematical operations, including:
- Ratio: The transmitter can compute the ratio of two rates or totals, which is essential for applications where proportional relationships need to be monitored.
- Product: It can multiply two rates or totals, useful for applications where combined quantities are important.
- Sum: The device can sum two rates or totals, providing a combined measurement of two different parameters.
- Difference: It can also calculate the difference between two rates or totals, which is important for monitoring deviations or changes.
Applications
The LT DIN Rail Digital Transmitter is used in a variety of industrial applications where accurate measurement and data processing are required:
- Flow Measurement: In processes where flow rates need to be monitored and analyzed, the transmitter can calculate ratios or differences between different flow rates.
- Batch Processing: For batch processes, the device can sum or multiply quantities to ensure accurate production and mixing.
- Energy Management: In energy monitoring systems, it can calculate ratios or differences in energy consumption across different units or periods.
- Process Control: The transmitter’s ability to handle complex calculations makes it suitable for various process control applications where precise data is critical.
Conclusion
The LT DIN Rail Digital Transmitter with Serial Data Communication and Analog Outputs is a powerful tool for industrial measurement and control. Its ability to handle a range of calculations, along with its digital and analog communication capabilities, makes it an essential component in many industrial systems. Whether you're monitoring flow rates, managing batch processes, or integrating with sophisticated control systems, this transmitter offers the precision and flexibility needed to optimize performance and ensure accurate data handling.
Understanding the Applications of LT DIN Rail Digital Transmitters with Serial Data Communication and Analog Outputs
In the realm of industrial automation and process control, the LT DIN Rail Digital Transmitter stands out as a versatile and essential component. This device, equipped with serial data communication and analog outputs, is specifically designed to handle complex calculations and measurements, such as the ratio, product, sum, or difference of two rates or totals. Let’s delve into the applications and benefits of this advanced technology.
1. Industrial Automation
In industrial automation systems, accurate and reliable measurement of various parameters is crucial. The LT DIN Rail Digital Transmitter is employed to process and transmit data related to flow rates, temperatures, pressures, and other critical variables. By utilizing its capabilities for calculating ratios, sums, and differences, it ensures precise control over processes, improving overall efficiency and reducing errors.
- Example: In a water treatment plant, the transmitter can monitor the ratio of water flow to chemical dosing rates, ensuring optimal chemical usage and treatment efficiency.
2. Process Control Systems
In complex process control systems, managing the interplay between multiple variables is essential. The LT DIN Rail Digital Transmitter's ability to compute ratios and differences between two different rates or totals makes it invaluable for maintaining balance and stability within the system.
- Example: In a chemical production facility, the device can be used to calculate the difference between the input and output flow rates, helping to adjust and control the process in real-time.
3. Measurement and Calibration
For measurement and calibration tasks, accurate data handling and conversion are necessary. The transmitter’s analog outputs are used to provide precise data readings to other instrumentation or control systems, while its serial data communication capabilities allow for seamless integration with data acquisition systems.
- Example: In a laboratory setting, the transmitter can be used to measure and calibrate the flow rates of different fluids, ensuring that all equipment operates within specified parameters.
4. Energy Management
Effective energy management relies on accurate monitoring and control of energy consumption. The LT DIN Rail Digital Transmitter helps in calculating and monitoring energy usage by processing data from different meters and sensors.
- Example: In an energy management system, the device can compute the sum of energy consumption from multiple sources and provide a consolidated output, aiding in effective energy management and cost control.
5. Building Automation Systems
Building automation systems benefit from the transmitter's capability to handle complex calculations involving multiple parameters. It can be used to monitor and control HVAC systems, lighting, and other building services by integrating with other sensors and controllers.
- Example: In a commercial building, the transmitter can calculate the ratio of outside air to recirculated air in an HVAC system, optimizing air quality and energy efficiency.
Benefits of LT DIN Rail Digital Transmitters
- Versatility: Capable of handling multiple types of calculations, including ratios, sums, products, and differences, making it suitable for various applications.
- Integration: Serial data communication allows for easy integration with existing control systems and data acquisition platforms.
- Accuracy: Provides precise analog outputs, ensuring reliable data for process control and measurement.
- Efficiency: Enhances process efficiency by allowing for real-time adjustments and monitoring.
Conclusion
The LT DIN Rail Digital Transmitter is a vital component in modern industrial and automation systems. Its ability to compute complex calculations and communicate data efficiently makes it indispensable for accurate measurement, process control, and energy management. By integrating this technology into your systems, you can achieve greater precision, efficiency, and control over your operations.
Less Information.