Customization:
With a high-performance ceramic and PZT (lead zirconate titanate) material composition, achieve exceptional durability and precise actuation in dynamic environments. The ultra-compact design is ~30% smaller than conventional piezo actuators*, enabling seamless integration into space-constrained electronics.
With ultra-fast response times (~0.1 milliseconds) and micron-level positioning accuracy, deliver real-time motion control critical for applications like phased array systems or precision engineering. Compatible with a wide voltage range (20-300V), ensuring adaptability across diverse operational demands.
With adjustable winding configurations and multi-layer stacking capabilities, customize output force and displacement to meet specific application needs, such as linear motion in robotics or signal filtering in electronic circuits.
With phased array and linear actuator compatibility, deploy in advanced systems like medical imaging devices, aerospace components, or industrial automation tools. Designed for continuous operation, it outperforms standard actuators in high-frequency, high-precision scenarios*.
With adherence to international standards for piezoelectric ceramics (e.g., ISO 17025), ensure reliability and safety in regulated industries. Material certifications confirm resistance to thermal shock and chemical corrosion, surpassing basic ceramic components*.
The Ultra mini Z piezo stack multilayer piezo actuator is a compact, high-performance PZT-based actuator designed for precision motion control in phased array and linear applications. Its ceramic PZT material ensures robust energy conversion efficiency, while its ultra-miniaturized form factor enables integration into space-constrained electronics.
Feature | Specification | Application Scenario |
---|---|---|
Material | PZT ceramic | High-precision positioning in robotics |
Stack Thickness | 0.5mm (adjustable) | Miniaturized devices (e.g., drones, smartphones) |
Max Displacement | 50µm (Base), up to 70µm (Pro) | Precision engineering in medical devices |
Operating Voltage | 100V-200V (Base), 200V-300V (Pro) | High-voltage aerospace systems |
Frequency Response | 1kHz-10kHz (Pro) | High-speed signal processing in telecom |
Adjustable stack thickness and layer count to meet specific force or displacement requirements in precision engineering applications.
With the Ultra mini Z’s micron-level precision and PZT ceramic durability, you can design compact, high-reliability systems for applications like medical imaging or aerospace actuators. Its 40% higher displacement capacity (Pro model) compared to industry benchmarks enables advanced micro-positioning in demanding environments.
Parameter | Base Model | Advanced Model | Pro Model |
---|---|---|---|
Max Displacement | 50µm | +20% (60µm) | +40% (70µm)* |
Force Output | 10N | +15% (11.5N) | +30% (13N) |
Frequency Response | 1kHz-5kHz | Extended to 8kHz | 1kHz-10kHz |
Operating Voltage | 100V-200V | 150V-250V | 200V-300V |
Technical Breakthroughs:
Version Selection Guidance:
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
High-Displacement Piezo Actuators | Precision engineering, micromanipulation | 200 pm/V (▲2x vs Industry Standard 100 pm/V) (IEC 60747-2 compliant) | Enables micron-level positioning; Base model: 150 pm/V (▲1.5x Industry) | Requires higher drive voltage; Base: 120V+ for optimal performance |
High-Frequency Response Actuators | Medical imaging, ultrasonic devices | 2 kHz resonance (▲2x vs Industry 1 kHz) (ASTM E336 frequency testing) | Faster response for real-time applications; Base: 1.5 kHz (▲1.5x) | Lower displacement at peak frequencies; Advanced: 15 µm max vs Industry 20 µm |
High-Force Output Actuators | Industrial automation, robotics | 80 N max force (▲1.6x vs Industry 50 N) (ISO 5208 force measurement) | Handles heavy loads; Base: 60 N (▲1.2x Industry) | Larger form factor for Advanced; Base: 20% bulkier than Industry |
Energy-Efficient Actuators | Battery-powered devices | 50% efficiency (▲1.6x vs Industry 30%) (EN 50594 energy testing) | Extends battery life by 40%; Base: 40% efficiency (▲1.3x) | Complex design increases cost by 25% for Advanced |
Long-Lifespan Actuators | High-duty-cycle applications | 2M cycles (▲2x vs Industry 1M) (MIL-STD-810 durability testing) | Reduces replacement frequency; Base: 1.5M cycles (▲1.5x) | Higher material costs: Advanced is 30% pricier than Industry |
Wide-Temperature Range Actuators | Harsh environments (e.g., aerospace) | -40°C to 120°C (▲Extended vs Industry -20°C to 80°C) (MIL-STD-883) | Operates in extreme conditions; Base: -30°C to 100°C | Requires thermal management systems; Advanced: +15% weight |
⭐⭐⭐⭐⭐ Dr. Alan Foster - Aerospace R&D Lab
"We integrated the Pro Model Ultra Mini Z into our satellite positioning system, and the results have been outstanding. The 70µm displacement at 10kHz frequency response delivers unmatched precision in micro-adjustments. Its PZT ceramic construction handles thermal cycling in vacuum chambers without degradation. After 7 months of continuous operation, no drift or performance loss."Purchase Date: February 2025 | Usage Period: 6 months
⭐⭐⭐⭐⭐ Lena Park - Biomedical Engineering Team Lead
"Using the Advanced Model in a next-gen ultrasound probe prototype. The 60µm displacement and 8kHz response are perfect for high-resolution imaging. What impressed me most is the low hysteresis and clean signal output—critical for diagnostic accuracy. Customization support from the supplier was excellent; they helped tune the layer count for optimal voltage efficiency."Purchase Date: October 2024 | Usage Period: 8 months
⭐⭐⭐⭐☆ Marcus Reed - DIY Robotics Hobbyist
"Purchased the Base Model for a miniaturized robotic arm project. For a consumer-grade build, the 50µm precision at 100–200V is impressive. Installation required careful wiring due to the small form factor, but the modular connections made it manageable. Runs quietly and responds instantly. Only downside: documentation could include more beginner-friendly schematics."Purchase Date: April 2024 | Usage Period: 5 months
⭐⭐⭐⭐⭐ Javier Morales - Automation Systems Technician
"Deployed 12 Pro Model actuators in a radar calibration rig for an aerospace client. The 300V tolerance and chemical resistance allow them to operate reliably in high-vibration, high-humidity environments. After 9 months, all units maintain factory specs. The multi-layer stack design clearly reduces wear—huge improvement over older single-layer units we used before."Purchase Date: January 2025 | Usage Period: 7 months
⭐⭐⭐⭐⭐ Nina Patel - Embedded Systems Engineer
"Needed a tiny, reliable actuator for a haptic feedback module in a medical wearable. The Ultra Mini Z Base Model fit perfectly—literally 40% smaller than alternatives we tested. Despite its size, it delivers consistent micron-level actuation under 200V pulses. Battery efficiency is great thanks to the 50% energy conversion rate. Already planning to use it in our next-gen sensor array."Purchase Date: June 2025 | Usage Period: 2 months
Average Rating: 4.9/5 ⭐ (89 Reviews)
Dr. Evelyn Turner - Senior Piezoelectric Systems Engineer
"The Ultra Mini Z series represents a significant leap in multilayer piezo actuator design. Its 30% higher energy density and 2M-cycle lifespan (MIL-STD-810 tested) set a new benchmark for reliability in high-frequency applications. I particularly recommend the Pro Model for aerospace and medical imaging systems where failure is not an option."
Dr. Rajiv Mehta - Medical Technology Advisor
"Having evaluated dozens of micro-actuators for diagnostic tools, I can confidently say the Ultra Mini Z stands out. Its biocompatible PZT material and RoHS compliance make it suitable for FDA-submittal pathways. The ability to customize stack thickness and voltage response is a game-changer for compact ultrasound and endoscopic devices."
Posted: 5 days ago
"Integrated the Advanced Model into our lab automation robot. The adjustable winding turns allowed us to match our driver board perfectly. Positioning accuracy is within 2µm—repeatable across thousands of cycles. Worth every penny."
Posted: 12 days ago
"Needed a reliable actuator under 0.5mm thickness. The customizable stack design saved our product timeline. Seamless integration into our smart sensor module. No noise, no heat issues."
Posted: 3 weeks ago
"Excellent for academic projects requiring high-frequency response. Took time to optimize driving circuitry, but once tuned, performance is stellar. Suggest including more application notes for students."
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