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35.231.175.166  Public Scan

URL: https://www.theleeco.com/piezoelectric-disc-pump-evaluation-kit/
Submission: On April 11 via manual from US — Scanned from DE

Form analysis 4 forms found in the DOM

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      <input type="radio" name="lohm-solve-gas" id="lohm-gas-solve--lohms" value="lohms" checked="">
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    <div class="me-2">
      <input type="radio" name="lohm-solve-gas" id="lohm-gas-solve--flow-rate" value="flow-rate">
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      <label for="lohm-gas-solve--pressure">Pressure</label>
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  <div class="col d-flex justify-content-between align-items-end flex-sm-wrap mt-3 mb-1">
    <h6 class="text-uppercase mb-auto"><strong>Please Enter Values:</strong></h6>
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    <div class="col-lg-6">
      <label>Gas:</label>
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    <div class="col-lg-6">
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        <div class="col-12">
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            <div class="placeholder">Air</div>
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              <option value="argon">Argon (Ar)</option>
              <option value="carbon_dioxide">Carbon Dioxide (CO₂)</option>
              <option value="carbon_monoxide">Carbon Monoxide (CO)</option>
              <option value="ethane">Ethane (C₂H₆)</option>
              <option value="freon">Freon-12 (CCl₂F₂)</option>
              <option value="helium">Helium (He)</option>
              <option value="hydrogen">Hydrogen (H₂)</option>
              <option value="natgas">Natural Gas</option>
              <option value="neon">Neon (Ne)</option>
              <option value="nitrogen">Nitrogen (N₂)</option>
              <option value="nitrous_oxide">Nitrous Dioxide (N₂O)</option>
              <option value="oxygen">Oxygen (O₂)</option>
              <option value="sulfur_dioxide">Sulfur Dioxide (SO₂)</option>
              <option value="xenon">Xenon (Xe)</option>
            </select>
          </div>
        </div>
      </div>
    </div>
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    <div class="col-lg-6">
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        <div class="col-5 col-lg-6 ps-1">
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        </div>
      </div>
    </div>
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      <label>Upstream Pressure:</label>
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    <div class="col-lg-6">
      <div class="row">
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    <div class="col-lg-6">
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              <option value="bar">bar</option>
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              <option value="mm Hg">mm Hg</option>
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        </div>
      </div>
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      </div>
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      <label>Critical Pressure:</label>
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      <label>Critical Temperature:</label>
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<form class="py-3 p-lg-3" id="lohm_calculator_liquid">
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  <div class="col d-flex justify-content-between align-items-end flex-sm-wrap mt-3 mb-1">
    <h6 class="text-uppercase mb-auto"><strong>Please Enter Values:</strong></h6>
    <span class="required-fields">All fields required</span>
  </div>
  <fieldset class="row justify-content-center mb-2 align-items-center" data-convert-unit-wrapper="">
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      <label>Liquid:</label>
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    <div class="col-lg-6">
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        <div class="col-12">
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              <option value="#2 Diesel Oil">#2 Diesel Oil</option>
              <option value="Isopropyl Alcohol">Isopropyl Alcohol</option>
              <option value="MIL-PRF-7024">MIL-PRF-7024</option>
              <option value="MIL-PRF-5606">MIL-PRF-5606</option>
              <option value="MIL-PRF-83282">MIL-PRF-83282</option>
              <option value="MIL-PRF-23699">MIL-PRF-23699</option>
              <option value="MIL-PRF-7808">MIL-PRF-7808</option>
              <option value="MIL-PRF-5624 (JP-4)">MIL-PRF-5624 (JP-4)</option>
              <option value="MIL-PRF-5624 (JP-5)">MIL-PRF-5624 (JP-5)</option>
              <option value="SAE 10 Oil">SAE 10 Oil</option>
              <option value="Silicone (200 cS)">Silicone (200 cS)</option>
              <option value="Skydrol 500B-4">Skydrol 500B-4</option>
              <option value="Skydrol LD-4">Skydrol LD-4</option>
              <option value="Transaqua HT">Transaqua HT</option>
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          </div>
        </div>
      </div>
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  <fieldset class="row justify-content-center mb-2 align-items-center" data-convert-unit-wrapper="">
    <div class="col-lg-6">
      <label>Liquid Temperature:</label>
    </div>
    <div class="col-lg-6">
      <div class="row">
        <div class="col-7 col-lg-6 pe-1">
          <input type="number" value="" name="temperature" min="-450" step="any">
        </div>
        <div class="col-5 col-lg-6 ps-1">
          <div class="select-wrap">
            <div class="placeholder">°F</div>
            <select name="temperature_unit" data-convert-unit-unit="">
              <option value="F" selected="">°F</option>
              <option value="C">°C</option>
            </select>
          </div>
        </div>
      </div>
    </div>
    <!-- <input type="hidden" name="" value="" data-convert-unit-target=""> -->
  </fieldset>
  <fieldset class="row justify-content-center mb-2 align-items-center lohm-liquid-pressure" data-convert-unit-wrapper="">
    <div class="col-lg-6">
      <label>Upstream Pressure:</label>
    </div>
    <div class="col-lg-6">
      <div class="row">
        <div class="col-7 col-lg-6 pe-1">
          <!--onkeyup="if(this.value<0){this.value = this.value * -1}"-->
          <input type="number" value="" name="upstream_pressure" min="0" step="any">
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        <div class="col-5 col-lg-6 ps-1">
          <div class="select-wrap">
            <div class="placeholder">psi</div>
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              <option value="bar">bar</option>
              <option value="kPa">kPa</option>
              <option value="kg/sq. cm">kg/sq. cm</option>
              <option value="mm Hg">mm Hg</option>
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          </div>
        </div>
      </div>
    </div>
    <!-- <input type="hidden" name="" value="" data-convert-unit-target=""> -->
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  <fieldset class="row justify-content-center mb-2 align-items-center" data-convert-unit-wrapper="">
    <div class="col-lg-6">
      <label>Downstream Pressure:</label>
    </div>
    <div class="col-lg-6">
      <div class="row">
        <div class="col-7 col-lg-6 pe-1">
          <!-- onkeyup="if(this.value<0){this.value = this.value * -1}" -->
          <input type="number" value="" name="downstream_pressure" min="0" step="any">
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        <div class="col-5 col-lg-6 ps-1">
          <div class="select-wrap">
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              <option value="kg/sq. cm">kg/sq. cm</option>
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          </div>
        </div>
      </div>
    </div>
    <!-- <input type="hidden" name="" value="" data-convert-unit-target=""> -->
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  <fieldset class="row justify-content-center mb-2 align-items-center lohm-liquid-flow-rate" data-convert-unit-wrapper="">
    <div class="col-lg-6">
      <label>Flow Rate:</label>
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    <div class="col-lg-6">
      <div class="row">
        <div class="col-7 col-lg-6 pe-1 flow-rate-value">
          <!-- onkeyup="if(this.value<0){this.value = this.value * -1}" -->
          <input type="number" value="" name="flow_rate" min="0" step="any">
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        <div class="col-5 col-lg-6 ps-1 flow-rate-unit">
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            <div class="placeholder">gpm</div>
            <!-- causing error data-convert-unit-unit=""  -->
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              <option value="L/min">L/min</option>
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              <option value="in3/min">in³/min</option>
              <option value="PPH">PPH</option>
              <option value="gm/min">gm/min</option>
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          </div>
        </div>
      </div>
    </div>
    <!-- <input type="hidden" name="" value="" data-convert-unit-target=""> -->
  </fieldset>
  <fieldset class="row justify-content-center mb-2 align-items-center hidden lohm-liquid-lohms" data-convert-unit-wrapper="">
    <div class="col-lg-6">
      <label>Lohms:</label>
    </div>
    <div class="col-lg-6">
      <div class="row">
        <div class="col-12">
          <input type="number" value="" name="lohms_user_value" min="0" step="any">
        </div>
      </div>
    </div>
    <input type="hidden" name="" value="" data-convert-unit-target="">
  </fieldset>
  <fieldset class="row justify-content-center mb-2 align-items-center" data-convert-unit-wrapper="">
    <div class="col-lg-6">
      <label>Viscosity:</label>
    </div>
    <div class="col-lg-6">
      <div class="row">
        <div class="col-7 col-lg-6 pe-1">
          <input class="hidden" type="number" value="" name="viscosity" min="0" step="any">
          <div class="col-7 col-lg-6 pe-1 lohm-parameter-display" data-lohm-parameter-viscosity="">
          </div>
        </div>
        <div class="col-5 col-lg-6 ps-1">
          <div class="unit-display">cS</div>
        </div>
      </div>
    </div>
    <!-- <input type="hidden" name="" value="" data-convert-unit-target=""> -->
  </fieldset>
  <fieldset class="row justify-content-center mb-2 align-items-center" data-convert-unit-wrapper="">
    <div class="col-lg-6">
      <label>Specific Gravity:</label>
    </div>
    <div class="col-lg-6">
      <div class="row">
        <div class="col-12">
          <input class="hidden" type="number" value="" name="specific_gravity" min="0" step="any">
          <div class="lohm-parameter-display" data-lohm-parameter-specific-gravity="">
          </div>
        </div>
      </div>
    </div>
  </fieldset>
  <fieldset class="row justify-content-center mb-2 align-items-center" data-convert-unit-wrapper="">
    <div class="col-lg-6">
      <div><label>V-Factor<sup>*</sup>:</label></div>
      <div class="manual-enter">
        <input class="checkbox-lg" type="checkbox" name="manual-enter-v-factor" id="manual-enter-v-factor-liquid">
        <label class="small-label" for="manual-enter-v-factor-liquid">Manually Enter</label>
      </div>
    </div>
    <div class="col-lg-6">
      <div class="row">
        <div class="col-12">
          <input class="hidden" type="number" value="" name="v_factor" min="0" step="any">
          <div class="lohm-parameter-display" data-lohm-parameter-v-factor="">
          </div>
        </div>
      </div>
    </div>
    <!-- <input type="hidden" name="" value="" data-convert-unit-target=""> -->
  </fieldset>
  <fieldset class="submit-fieldset mt-4">
    <div class="row align-items-center">
      <div class="col-6">
        <button class="btn calculate-lohms-standalone" type="button" data-fluid="liquid">Calculate</button>
      </div>
      <div class="col-6 text-end">
        <h5 class="mb-0"><strong><span id="lohms_liquid"></span></strong></h5>
      </div>
    </div>
  </fieldset>
  <div class="d-block d-md-none py-1">
    <div class="vfactor-text mt-2">
      <p><sup>*</sup>There are many parameters to consider when determining V-Factor.
        <strong><a href="https://www.theleeco.com/support-resources/engineering-tools/lohm-laws-working-with-liquids/viscosity-compensation-factor-v-for-a-single-orifice/">Click here</a></strong> for more information.</p>
    </div>
  </div>
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PIEZOELECTRIC DISC PUMP EVALUATION KIT



Jumpstart your next project with the Piezoelectric Disc Pump Evaluation Kit and
start exploring the unique feature set of our ultrasonic micropumps. No set up
required: just plug in the power supply and start testing – and with the
versatile functionality and control options, the kit significantly reduces
development effort and time, enabling designers to focus on creating great
products.

 * No set up required: plug-and-play operation.
 * Includes everything necessary to start testing: two pumps, electronics, PC
   app for configuration, control and datalogging, fixtures, fittings, and
   design resources.
 * Versatile system suitable for laboratory testing, prototyping, and product
   development.
 * Create high-performance products with exceptional pressure, vacuum, and flow
   capacity.





TECHNICAL DETAILS



Kit Contents 2 Disc Pumps
Driver Board
Mains PSU
Accessories Kit
USB drive with PC app for control, configuration, and documentation Control
Interfaces PC Application
Rotary Dial
0-2.5 V analog input
0 / 2.5 V GPIO digital enable / gating control line
USB-Serial interface for control via PC
2.5 V UART for control via host embedded system Control Modes Power Control
Closed-loop pressure/vacuum control
Bang-bang pressure control





DISC PUMP CAPABILITIES



The Disc Pump Control App is packed with features and offers flexible
configuration and control of the Evaluation Kit.

 * Three control modes:
   * Open-loop control of pump drive power.
   * Closed-loop control of pressure or vacuum, enabling a wide range of
     applications out of the box (e.g. inkjet meniscus pressure control and
     ‘pressure-driven flow’ microfluidics). Alternatively, connect your own
     sensor for PID control of other variables.
   * “Bang-bang” pressure/vacuum control, enabling cyclic pressure control as
     used in intermittent compression therapy.
 * Analog control sources can be mapped with range and offset variables,
   enabling fine-tune control over the set point. The analog control sources
   include:
   * A physical potentiometer/dial on the Evaluation Kit motherboard, providing
     a quick-to-adjust setpoint control.
   * A 0-2.5 V analog input, enabling connection with a control signal or
     pressure/flow external sensor.
 * Configurable live graph display of pressure, power, and other electrical
   parameters.
 * Datalogging to CSV file of pressure, power, and other parameters.
 * Ability to save the configuration for use each time the Evaluation Kit is
   powered up, so that the kit can be operated independently of the PC app
   without the need to configure over the serial interface.





RESOURCES

The Lee Company also offers drive electronics for applications beyond the
initial pump testing phase. For more information on driver options, please visit
our Drive Electronics and Accessories page.

The Evaluation Kit User Guide provides a detailed overview of the kit, outlining
the system components, safety considerations, system operation and support.



PIEZOELECTRIC DISC PUMP EVALUATION KIT USER MANUAL

The Disc Pump Control App provides configuration, control and data logging for
the Evaluation Kit.



DISC PUMP CONTROL APP

Our GitHub code snippet library provides examples of how to control the Disc
Pump Evaluation Kit independently of the Disc Pump Control App. The initial
examples provided cover a range of functions, including turning the pump on and
off, setting drive power, closed loop control of pressure and reading back and
plotting data.



The code snippet library, which is hosted on GitHub, is intended to support
customers after their initial evaluation of our pump technology, as they move on
to developing prototypes and products. We welcome suggestions for how we can
improve and build upon this repository; please feel free to share your ideas,
feature requests and any bugs you identify with us.

GITHUB CODE SNIPPET LIBRARY

A CAD model of the Evaluation Kit motherboard.



EVALUATION KIT CAD MODEL

An overview of open source software and licenses used in disc pump electronics
and software products.



LEE VENTUS SOFTWARE LICENSE

A package containing PCB and firmware reference designs together with supporting
technical guides is available upon request. This provides everything necessary
for customers to design their own drive electronics.



ELECTRONICS REFERENCE DESIGN PACKAGE

User manual providing information to aid the integration of the Disc Pump Drive
PCB with your system.



DISC PUMP DRIVE PCB USER MANUAL

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 * Applications
   * Sealing Solutions
   * Flow Metering
   * Flow Targeting & Spray
   * Pressure Control
   * Fluid Pumping
   * Solenoid Operated Control
   * Filtration
   * Dispensing
 * Industries
   * Aerospace & Defense
   * Automotive
   * Diagnostics
   * Industrial & Off-Highway
   * Medical Equipment
   * Motorsports
   * Oil & Gas
   * Power Generation
   * Scientific Instruments
   * Space
   * Other
 * Products
   * Plugs
   * Check Valves
   * Pressure Relief Valves
   * Shuttle Valves
   * Flow Restrictors
   * Flow Metering Valves
   * Shut-Off Valves
   * Solenoid Valves
   * Nozzles
   * Safety Screen Filters
   * Pumps
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 * About
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   * Careers
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CALCULATE GAS LOHMS

Always verify flow calculations by experiment.

Calculate Liquid LOHMS

CALCULATE GAS LOHMS

Calculate Liquid LOHMS

SOLVE FOR:

LOHMs
Flow Rate
Pressure

PLEASE ENTER VALUES:

All fields required
Gas:
Air
Air Argon (Ar) Carbon Dioxide (CO₂) Carbon Monoxide (CO) Ethane (C₂H₆) Freon-12
(CCl₂F₂) Helium (He) Hydrogen (H₂) Natural Gas Neon (Ne) Nitrogen (N₂) Nitrous
Dioxide (N₂O) Oxygen (O₂) Sulfur Dioxide (SO₂) Xenon (Xe)
Gas Temperature:
°F
°F °C
Upstream Pressure:
psia
psia psig bar kPa mm Hg
Downstream Pressure:
psia
psia psig bar kPa mm Hg
Flow Rate:
SLPM
SLPM SCFM in³/min mL/min PPH lbm/s kg/min gm/min
Lohms:

Critical Pressure:

Critical Temperature:

Units Constant "K":

Calculate



CALCULATE LIQUID LOHMS

Always verify flow calculations by experiment.

 

Calculate Gas LOHMS

*There are many parameters to consider when determining V-Factor. Click here for
more information.

CALCULATE LIQUID LOHMS

Calculate Gas LOHMS

SOLVE FOR:

LOHMs
Flow Rate
Pressure

PLEASE ENTER VALUES:

All fields required
Liquid:
Water
#2 Diesel Oil Isopropyl Alcohol MIL-PRF-7024 MIL-PRF-5606 MIL-PRF-83282
MIL-PRF-23699 MIL-PRF-7808 MIL-PRF-5624 (JP-4) MIL-PRF-5624 (JP-5) SAE 10 Oil
Silicone (200 cS) Skydrol 500B-4 Skydrol LD-4 Transaqua HT Water Other
Liquid Temperature:
°F
°F °C
Upstream Pressure:
psi
psi bar kPa kg/sq. cm mm Hg
Downstream Pressure:
psi
psi bar kPa kg/sq. cm mm Hg
Flow Rate:
gpm
gpm L/min mL/min in³/min PPH gm/min
Lohms:

Viscosity:
cS
Specific Gravity:

V-Factor*:
Manually Enter

Calculate



*There are many parameters to consider when determining V-Factor. Click here for
more information.

Email*

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