Piezoelectric Micropump 2LPM 5.3g Pneumatic Micropump BD-05T01PZ09 BODENFLO

BD-05T01PZ09 is a compact piezoelectric micro air pump for OEM airflow systems requiring low noise, small size, and flexible pressure/flow configuration, delivering up to 2 L/min flow in parallel connection or higher pressure output in series connection at 20V DC.

Additional information

Pump Driving Voltage

18–25V DC

Drive Frequency

19–23 kHz

Resonant Frequency

22.20 kHz

Flow Rate @ 20V DC

≥2 L/min in parallel; ≥0.8 L/min in series

Output Pressure @ 20V DC

≥15 kPa in parallel; ≥30 kPa in series

Ambient Temperature

1–45°C

Overview – BD-05T01PZ09 Piezoelectric Micro Pump

The BD-05T01PZ09 is a piezoelectric micropump designed for OEM pneumatic airflow systems where compact size, low noise, and motor-free operation are important. Instead of using a diaphragm motor structure, this pneumatic micropump generates airflow through ultrasonic vibration from a piezoelectric element, helping engineers reduce mechanical wear, oil contamination, and vibration in small embedded devices.

For applications requiring different output priorities, the pump supports parallel connection for higher flow and series connection for higher pressure. This makes it suitable for portable instruments, compact ventilation modules, and precision OEM airflow control where space, acoustic performance, and clean air delivery are key selection factors.

Key Features – Piezoelectric Disc Pump for OEM Airflow Control

  • Motor-Free Piezoelectric Drive – Uses ultrasonic vibration from a piezoelectric element to generate airflow, reducing mechanical wear, oil contamination, and motor-related vibration.
  • Flexible Flow or Pressure Configuration – Supports parallel connection for higher airflow and series connection for higher pressure, giving OEM engineers more freedom in pneumatic layout design.
  • Compact Low-Noise Air Pump – Small piezoelectric disc structure is suitable for space-limited instruments where acoustic performance and compact integration are important.
  • High-Frequency Operation – Works at 19–23 kHz with a 22.20 kHz resonant frequency, helping the pump reach efficient airflow performance when properly driven.
  • Clean Air Delivery Path – Designed for dry air transfer without liquid contact, making it suitable for sensitive pneumatic modules and clean embedded airflow systems.
  • Driver Options for Development and Integration – Available with an integrated round driver board for compact systems or an external driver module for testing and frequency optimization.

Technical Data – BD-05T01PZ09 Piezoelectric Disc Pump

The technical data below helps OEM engineers confirm technical compatibility before integrating this piezoelectric disc pump into compact pneumatic systems. Please focus on the pump driving voltage, resonant frequency, flow/pressure configuration, temperature limits, and connection method, as these factors directly affect output performance and long-term operation.

Parameter Value
Drive Frequency 19–23 kHz
Resonant Frequency 22.2 kHz
No-Load Flow Rate 2.0 L/min @ 20 VDC
Parallel Flow Rate ≥2 L/min
Series Flow Rate ≥0.8 L/min
Parallel Pressure ≥15 kPa
Series Pressure ≥30 kPa
Recommended Surface Temperature ≤60°C
Weight 5.3 g

Materials & Construction (Standard Configuration)

This piezoelectric pump configuration is designed for compact OEM devices requiring low power consumption, motor-free operation, and reliable airflow generation in space-constrained applications.

Component Material / Feature
Housing PC (Polycarbonate)
Piezoelectric Element Piezoelectric Ceramic
Pump Technology Ultrasonic Piezoelectric Airflow Generation
Motor Motor-Free Design
Driver Configuration Integrated Driver Board or External Driver
Operating Environment Clean, Dry Air
Waterproof Rating Not Waterproof

For applications involving continuous operation, higher voltage drive, or stricter environmental requirements, additional thermal design and system-level protection should be evaluated.

OEM Customization Options

If your system requires specific wiring or connection interfaces, selected items can be customized to simplify integration into your equipment.

Customization Item Available Options
Wiring Length Custom wire length available
Connector Type OEM-specific connectors available

Typical Applications Of BD-05T01PZ09 Pneumatic Micropump

The BD-05T01PZ09 is suitable for OEM pneumatic systems that require compact airflow generation, clean dry-air transfer, and flexible pressure or flow configuration.

  • Air Displacement Pipetting Modules – Provides controlled pneumatic pressure for aspirating and dispensing small liquid volumes through an air-driven system.
  • Portable Analytical Instruments – Supplies compact airflow or pressure control for sample handling, microfluidic actuation, and small pneumatic modules.
  • Precision Pressure Control Systems – Supports fast airflow response in compact devices where pressure regulation is more important than high-volume pumping.
  • Microfluidic Test Equipment – Generates dry air movement for valve actuation, reservoir pressurization, or controlled gas displacement.
  • Compact Ventilation Modules – Delivers low-noise airflow for small embedded systems with limited installation space.
  • Battery-Powered OEM Devices – Works with compact driver configurations where small size, low vibration, and motor-free operation are required.

Why Choose BODENFLO for Your Piezoelectric Micropump Project

Developing a piezoelectric airflow system involves more than selecting a pump. Driver compatibility, connection methods, thermal management, and installation constraints all affect final system performance. BODENFLO helps OEM engineers simplify evaluation and integration.

  • Application-Based Selection Support: We help evaluate airflow, pressure, voltage, frequency, and installation requirements to determine whether a piezoelectric pump is suitable for your application.
  • Integrated and External Driver Options: Both integrated driver board and external driver module configurations are available to support rapid prototyping, laboratory testing, and OEM integration.
  • Series and Parallel Connection Guidance: Engineers can configure multiple pumps for higher pressure or higher airflow depending on system requirements, helping improve pneumatic performance in compact devices.
  • Compact Design for Space-Constrained Equipment: The motor-free structure, lightweight design, and low power consumption make piezoelectric pumps suitable for portable and miniature devices.
  • Thermal and Continuous-Operation Considerations: We provide recommendations for voltage selection, duty cycle, and heat management to help maintain stable long-term performance.
  • Flexible Alternative for OEM Development: For projects evaluating piezoelectric pump technologies, BODENFLO provides a practical and cost-effective option with engineering support, flexible configuration choices, and shorter development cycles.
  • OEM Integration Support: Custom wiring lengths and connector options are available to simplify installation and reduce development time.

Customer Feedback from OEM Applications

The following feedback reflects how customers may evaluate piezoelectric micropump solutions in OEM pneumatic systems, especially when compact size, dry-air control, and integration flexibility are important.

China | Analytical Instrument Engineer
Application: Microfluidic pressure control module
Feedback: The pump size is suitable for our compact instrument, and the external driver module helps us adjust the working frequency during early testing.

Germany | Laboratory Automation Developer
Application: Air displacement pipetting system
Feedback: The piezoelectric disc pump provides fast pneumatic response for small-volume liquid handling, making it a practical option for pressure-driven pipetting modules.

United States | OEM Product Manager
Application: Portable airflow control device
Feedback: The motor-free structure helps reduce vibration and simplifies integration in our small device, especially where quiet dry-air movement is required.

Installation & Usage Guide

For proper integration, this piezoelectric disc pump should be connected and driven according to the required airflow direction, pressure target, and driver configuration. Because this model uses four air nozzles and a dedicated driver board, engineers should confirm the tubing layout and electrical setup before testing.

Parallel Connection for Higher Flow
Connect air nozzles #1 and #4 together with a Y-connector as the outlet, and connect air nozzles #2 and #3 together with a Y-connector as the inlet. This layout is recommended when the system requires higher airflow output.

Series Connection for Higher Pressure
Connect air nozzle #1 to air nozzle #3 using tubing. Use air nozzle #2 as the inlet and air nozzle #4 as the outlet. This layout is recommended when the system requires higher pressure from the pneumatic micropump.

Integrated Round Driver Board
The driver board can be mounted directly on the pump for compact installation. This option is powered by 3.7V DC and includes automatic frequency tracking, so no manual frequency adjustment is required.

Separated External Driver Module
The external driver module is separated from the pump and supports adjustable driving frequency. This option is more suitable for sample testing, performance comparison, and frequency optimization during OEM development.

Operating Precautions
Avoid liquid entering the pump, and do not use it in dusty, corrosive gas, smoke, condensation, or high-humidity environments. For continuous operation, additional heat dissipation is recommended, and the surface temperature should remain below 60°C.

User Guide Download
[BD-05T01PZ09 Piezoelectric Micro Air Pump User Guide Specification Download (PDF)]

Downloads – Datasheet

[BD-05T01PZ09 Piezoelectric Micropump Datasheet (PDF)]

FAQ – BD-05T01PZ09 Piezoelectric Micropump

Q1: Why does the airflow or pressure of a piezoelectric micropump change during continuous operation?

Airflow and pressure may decrease when a piezoelectric micropump operates at high voltage for extended periods because heat buildup can affect vibration efficiency. For continuous operation, keep the pump surface temperature below 60°C and provide adequate heat dissipation to maintain stable airflow performance.

Q2: Should I use parallel or series connection for a piezoelectric air pump?

Use parallel connection when higher airflow is required, and use series connection when higher pressure is the priority. This piezoelectric air pump supports both configurations, allowing engineers to optimize performance for different pneumatic system requirements.

Q3: Why is resonant frequency important for a piezoelectric disc pump?

A piezoelectric disc pump achieves its best performance near its resonant frequency. Operating close to the resonant frequency can improve airflow and pressure output, which is why adjustable external driver modules are often used during testing and system optimization.

Q4: Can BODENFLO ship piezoelectric air pumps internationally?

Yes. BODENFLO supplies piezoelectric air pumps to OEM customers worldwide. Samples are typically shipped via FedEx or DHL, while bulk orders can be arranged by air freight or sea freight depending on project requirements.

Q5: Is there another piezo pump option if I need different airflow or pressure performance?

Yes. BODENFLO offers multiple piezoelectric pump models with different airflow, pressure, voltage, and frequency specifications. If your application requires a different performance range, our engineering team can recommend a more suitable model based on your system requirements.

  • BD-05T01PZ06/BD-05T01PZ07 (150mL/min,+40kPa)
  • BD-05T01PZ20/BD-05T01PZ08 (0.8L/min, +20kPa, -15kPa)
  • BD-05T01PZ05 (1L/min,+1.42kPa)

Q6: Does this piezoelectric micropump require a motor?

No. This motor-free piezoelectric micropump generates airflow through high-frequency vibration of a piezoelectric ceramic element. Without traditional motors, brushes, or gears, it offers low noise, compact size, and reduced mechanical wear.

Q7: Can this micro piezo pump be used in battery-powered devices?

Yes. This Microblower is designed for applications where low power consumption and compact size are important. It is suitable for portable and battery-powered devices such as wearable medical products, handheld analyzers, and environmental monitoring equipment.

Contact BODENFLO – OEM Piezoelectric Micropump Solutions

If you are developing compact pneumatic devices, microfluidic modules, or OEM airflow control systems, BODENFLO provides piezoelectric micropump solutions with support for selection, driver configuration, tubing layout, and sample validation.

What We Can Provide

  • Pump selection support based on airflow, pressure, voltage, frequency, and installation requirements
  • Guidance for parallel or series connection according to flow or pressure targets
  • Driver configuration support, including integrated driver board and external driver module options
  • OEM integration support for wiring, connectors, tubing layout, and mounting structure
  • Sample supply for early-stage testing, performance comparison, and system validation
  • Long-term supply support for OEM production projects

📧 Email: info@bodenpump.com
🌐 Website: https://bodenpump.com/

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