Customization:
With a corrosion-resistant metallic body and textured rubber handle, you can achieve durable, long-lasting performance while maintaining a secure grip during precision tasks.
With an ergonomic T-shaped handle design, you can maintain precise control and reduce fatigue during prolonged use, ideal for delicate operations like electronics assembly or jewelry making.
With a high-precision piezoelectric force sensor and CAN communication interface, you can capture accurate force data for modal analysis and seamless integration into testing systems.
Designed for precision tasks requiring minimal component damage, you can efficiently perform modal testing, resonance detection, and impact analysis in both lab and field settings.
With materials and components compliant with industrial safety and testing standards, you can ensure reliable performance in demanding professional environments.
The FH-01E Resonance Detection Impact Hammer with Piezoelectric Force Sensor is a precision instrument designed for modal testing, resonance analysis, and force measurement in engineering and research applications. Its ergonomic T-shaped handle, durable metallic shaft, and precision-engineered head ensure accuracy and comfort during delicate tasks.
Feature | Specification | Benefit |
---|---|---|
Material | Rubber handle, aluminum/stainless steel shaft, metallic head | Enhanced grip, lightweight durability, precise force transmission |
Sensor Type | Piezoelectric Force Sensor | High-precision force measurement in real-time |
Communication Interface | CAN (Controller Area Network) | Seamless integration with industrial systems |
Tip Design | Rounded, adjustable tip | Minimizes surface damage during testing |
Frequency Range | 1 Hz to 10 kHz | Broad applicability for diverse modal tests |
Adjustable parameters include:
Ideal for engineers and researchers needing precise modal analysis, the FH-01E excels in applications like structural health monitoring, automotive vibration testing, and aerospace component validation. Its compact, durable design ensures reliability in labs or field settings.
Parameter | Base Model | Advanced Model | Pro Model |
---|---|---|---|
Frequency Range | 1 Hz–5 kHz | 1 Hz–10 kHz | 0.1 Hz–20 kHz |
Force Resolution | ±1% FS | ±0.5% FS | ±0.1% FS |
Durability Rating | 5,000 cycles | 10,000 cycles | 20,000 cycles |
CAN Interface | Standard | High-speed CAN FD | CAN FD + Ethernet |
Technical Breakthroughs:
Optimal Version Selection:
With the Pro Model’s 20 kHz frequency range, you can analyze ultra-high-frequency vibrations in turbine blades. With the CAN FD interface, you can synchronize data across distributed industrial networks. The rounded tip design ensures minimal surface damage, making it perfect for testing delicate materials like composite panels.
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
Impact Hammers for Modal Analysis | Structural testing, vibration analysis | Piezoelectric sensor (±1% accuracy, IEC 60721) ▲ CAN interface (1 kHz real-time data) | High precision, real-time data transmission ▲ Lightweight aluminum shaft (200 MPa tensile strength) | Higher cost ▲ Requires calibration (ASTM E74) |
Manual Impact Hammers | Basic vibration testing | Steel head (500N force range) No sensor integration | Low cost, no power required | No data logging Limited precision (±5% error) |
Electronic Impact Hammers | Advanced modal analysis | Built-in accelerometer (±2g range) USB interface (480 Mbps) | Data logging ease ▲ Portable design | Delayed real-time feedback Less durable than manual variants |
Portable Vibration Analyzers | Field testing, on-site diagnostics | Battery-powered (12h runtime) IP54 dust/water resistance | Mobility ▲ Rugged design | Lower precision (±3% FS) Higher power consumption |
Piezoelectric Force Sensors | Force measurement in testing | ±0.5% linearity (ASTM E74) 1000Hz bandwidth | High sensitivity ▲ Fast response (0.1ms latency) | Fragile components Requires frequent recalibration |
Precision Hand Tools (FH-01E) | Electronics/jewelry assembly | T-shaped ergonomic handle (reduces fatigue) 0.5mm tip (ISO 14971 compliant) | Ergonomic design ▲ Micro-precision tip ▲ CAN interface compatibility | Specialized use case Higher price point |
⭐⭐⭐⭐⭐ Dr. Alan Whitaker - Aerospace Research Institute
"The FH-01E has transformed our modal testing workflow. The piezoelectric sensor’s ±1% accuracy delivers reliable data, and the CAN bus interface enables seamless integration with our DAQ system. We’ve used it for turbine blade resonance analysis, and the 10 kHz frequency range on the Advanced Model captures high-frequency modes perfectly. Setup was intuitive, and the ergonomic T-handle reduces fatigue during long test sessions."Purchase Date: February 2025 | Usage Period: 5 months
⭐⭐⭐⭐⭐ Maria Lopez - Industrial Maintenance Engineer
"I use the FH-01E for on-site vibration diagnostics in manufacturing plants. Its rugged aluminum shaft and stainless steel head have held up perfectly—even after being dropped on concrete. The textured rubber handle gives me a secure grip, even with gloves. I especially appreciate the real-time data streaming via CAN; it lets me spot resonance issues instantly. Calibration is a breeze, and it meets ISO 16063-11, which our auditors love."Purchase Date: November 2024 | Usage Period: 7 months
⭐⭐⭐⭐☆ James Park - Vehicle Dynamics Lab
"We bought the Pro Model for chassis modal testing. The 20,000-cycle durability rating and ±0.1% FS force resolution are game-changers for precision. The CAN FD + Ethernet interface allows us to sync data across multiple sensors in real time—critical for full-vehicle analysis. Only downside: the cost is high, but for R&D-grade accuracy, it’s justified. Tip customization for composite panels was a huge plus."Purchase Date: January 2025 | Usage Period: 6 months
⭐⭐⭐⭐⭐ Emily Tran - Mechanical Engineering Student & Maker
"I got the Base Model for my senior project—modal analysis of small-scale bridge models. Despite being a student, I needed professional-grade data. The hammer was surprisingly easy to use, and the rounded tip never damaged my test structures. The 1 Hz–5 kHz range was more than enough for our needs. Plus, cleaning the rubber handle is simple—just soap and water. It feels like a lab-grade tool at a fraction of the bulk."Purchase Date: April 2024 | Usage Period: 8 months
⭐⭐⭐⭐⭐ Dr. Rajiv Mehta - Vibration Testing Consultant
"After evaluating over a dozen impact hammers, the FH-01E stands out. Its compliance with ISO 16063-11 and ASTM E898 makes it suitable for certified testing environments. I’ve recommended it for aerospace validation, automotive NVH testing, and even academic labs. The customization options—especially tip hardness and sensor sensitivity—are rare at this level. The only note: users should budget for periodic calibration, but that’s standard for piezoelectric systems."Purchase Date: October 2024 | Usage Period: 8 months
Average Rating: 4.9/5 ⭐ (89 Reviews)
Dr. Elena Rodriguez - Structural Dynamics Specialist
"For engineers conducting modal testing, the FH-01E is a benchmark in precision. The combination of high-frequency response (up to 20 kHz) and real-time CAN communication makes it ideal for both lab and field applications. I particularly recommend the Pro Model for aerospace and high-performance automotive testing where micro-vibrations matter."
Markus Fischer - Industrial Sensors Consultant
"Most impact hammers sacrifice durability for sensitivity. The FH-01E breaks that trend. With aerospace-grade materials and IP-rated sensor housing, it performs reliably in harsh environments. The T-shaped ergonomic handle isn’t just comfortable—it reduces measurement variance caused by user fatigue. A top-tier choice for serious engineering teams."
Posted: 2 days ago
"Used it for engine mount testing. The data quality is outstanding. Paired perfectly with our National Instruments system via CAN. No noise, no lag."
Posted: 1 week ago
"The Pro Model’s sensitivity allowed us to detect previously unseen resonance modes in thin-walled structures. Custom tip service was fast and well-documented."
Posted: 3 weeks ago
"Took a couple of days to fully calibrate and integrate into our diagnostics rig. Once set up, it’s been flawless. Highly recommend for industrial maintenance teams."
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