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Dry Film Thickness Gauge LDFT-A10

Dry Film Thickness Gauge LDFT-A10

Dry Film Thickness Gauge LDFT-A10 offers a measuring range of 0 μm to 5000µm, accurately assessing coating thickness on both ferrous and non-ferrous substrates. The instrument has a digital LCD with a backlight for low-light working conditions. It features zero drift technology for maintaining long-term measurement stability with minimal recalibration. Our dry film thickness gauge includes selectable measurement modes, ensuring accurate evaluations across different surface types.

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Measuring Range 0.0 to 5000μm
Resolution 0.1μm (<100µm)
1μm (100µmto 999µm)
10µm(>1000µm)
Accuracy ≤± (3% reading+2µm)
Minimum Curvature Convex: 5mm / Concave: 25mm
Minimum Measuring Area 6 mm²
Minimum Substrate Thickness Fe: 0.2mm / NFe: 0.05mm
Display 128×48 dot matrix LCD
Probe Integrated probe
Substrate Metal materials
Power Supply 2pcs of 1.5V AAA alkaline battery
Dimension 101 mm × 62 mm × 28 mm
Weight 79 g
  • Dual Measurement Technology

  • Multi-Unit Display

  • Auto Power off Function

  • Automatic Substrate Detection

  • Advanced Calibration Mode

Dry Film Thickness Gauge LDFT-A10 measures the thickness of a dried coating layer. It is applied in automotive, marine, aerospace, oil, and gas sectors to measure the thickness of protective coatings against harsh environments.  

Models of Dry Film Thickness Gauge

Labtron Dry Film Thickness Gauge combines advanced Hall Effect and Eddy Current technologies to provide highly non-destructive coating thickness measurements on both ferrous and non-ferrous substrates. These thickness gauges feature fast response times, stable readings, and a robust design suitable for industrial environments. Their dual technology integration ensures precision across a wide range of applications. Our dry film thickness gauges offer a large display and user-friendly interface, making them ideal for field inspections and laboratory quality control.

Dry Film Thickness Gauge LDFT-A12

Dry Film Thickness Gauge LDFT-A12

  • Measuring Range : 0.0 to 5000μm
  • Resolution : 0.1μm (1000µm)
  • Accuracy : ≤± (2% reading+ 0.3µm)
  • Minimum Curvature : Convex: 1.5mm / Concave: 10 mm
Dry Film Thickness Gauge LDFT-A11

Dry Film Thickness Gauge LDFT-A11

  • Measuring Range : 0.0 to 5000μm
  • Resolution : 0.1μm (1000µm)
  • Accuracy : ≤± (3% reading+2µm)
  • Minimum Curvature : Convex: 5mm / Concave: 25mm

Dry Film Thickness Gauge LDFT-A10 FAQ's
  • Labtron’s dry film thickness gauges LDFT-A10 are essential tools for quality control during coating processes. They ensure coatings are applied within specified tolerances, preventing over- or under-coating issues. Accurate thickness measurements help maintain consistency in appearance, corrosion resistance, and overall performance of the product. By identifying coating defects early, these gauges reduce rework, waste, and downtime in manufacturing. Data logging and statistical analysis features enable process tracking and documentation for compliance with ISO, ASTM, or SSPC standards. Integration with software systems allows real-time monitoring and traceability. Their portability enables on-site checks across production lines or field installations. Overall, they enhance operational efficiency, product reliability, and customer satisfaction.

  • Labtron’s standard dry film thickness gauges LDFT-A10 using magnetic induction and eddy current are designed for metal substrates. However, coatings on non-metallic surfaces like plastics, wood, or composites require specialized ultrasonic thickness gauges. These devices emit high-frequency sound waves through the coating and measure the reflection from the substrate to calculate thickness. Some advanced models combine dry film and ultrasonic capabilities for broader applications. It's important to select the correct technology based on the substrate type. Manufacturers may offer accessory probes or dedicated models for non-metal surfaces. Always refer to product specifications to ensure compatibility. Using the right instrument ensures accurate, damage-free coating measurement across all substrate types.

  • When choosing dry film thickness gauge LDFT-A10, key features to consider include measurement range, accuracy, compatibility with substrates, and calibration options. Look for a device that supports both ferrous and non-ferrous materials if working with diverse surfaces. Display clarity, response time, and ease of operation are also important for efficient use. Memory capacity, data export functions, and software connectivity enhance productivity in quality control environments. Durability, especially IP-rated resistance to dust and moisture, is vital for field use. A replaceable probe system adds flexibility for different tasks. Lastly, certification and traceability of calibration standards ensure compliance with industry requirements. The right combination of features ensures precise, efficient, and reliable measurements.

  • Labtron’s dry film thickness gauge LDFT-A10 offers several advantages over destructive methods like cross-sectioning or scraping. It provides non-invasive measurements that preserve the integrity of the coated surface, which is especially important for final products. Dry film gauges allow for fast, repeatable, and reliable assessments directly on-site or during production. Destructive tests are time-consuming, require sample preparation, and can lead to material waste. Dry film gauges enable 100% inspection without damaging the product, improving quality control efficiency. They also minimize downtime and support in-line quality monitoring. Furthermore, modern gauges offer data storage and statistical functions, making them ideal for compliance documentation. Overall, non-destructive gauges reduce cost and improve operational workflow.

  • Labtron supplies premium dry film thickness gauge LDFT-A10. Environmental factors like temperature, humidity, dust, and vibration can influence the accuracy and reliability of a dry film thickness gauge. Extreme temperatures may affect the electronics or calibration stability of the device. High humidity or surface moisture can interfere with the probe’s contact, causing erroneous readings. Dust and dirt between the probe and coating can skew results or damage the sensor over time. Electromagnetic interference from surrounding equipment may also disrupt sensitive measurement circuits. To mitigate these effects, many gauges are built with IP-rated housings and environmental compensation features. Proper cleaning, regular recalibration, and appropriate usage protocols help maintain performance. Consistent environmental control during measurement ensures accurate and repeatable results.

  • Labtron’s drying time recorder uses hemispherical scribing needles that move across the film surface at selectable intervals. It identifies evaporative, gel, tack-free, and dry-hard stages by the needle’s ability to penetrate or lift the film. Track integrity, breaks, or adhesion cues mark transitions between drying phases. These readings align with ASTM?D5895 and ISO?9117 4 standards for chemical and performance evaluation. The recorder’s high-precision mechanics ensure consistency across repeats. This visual and mechanical method provides actionable insights beyond simple time-to-dry labels.

  • Yes, the drying time recorder offers both preset durations and user-defined timing to match diverse coating requirements. It supports common intervals and allows custom programs extending from minutes to full days. Adjustable timing ensures relevance for fast-curing coatings or long-drying formulations. The digital interface simplifies setup and execution without overloading operators. This adaptability makes the recorder ideal for diverse industries—from quick primers to slow-reacting adhesives. Customizable scheduling ensures precise tracking of pivotal drying markers.

  • Labtron’s Modern drying time recorders feature color LCD screens, backlit displays, and intuitive menus for easy navigation. Ergonomic control panels and soft-touch buttons streamline test initiation and parameter adjustments. Real-time status and visual cues enable users to track progression clearly. Heated and robust front panels ensure readability even in variable lab or site conditions. These design choices reduce training requirements and minimize user error. The result is a user-friendly system that enhances efficiency and operational confidence.

  • Labtron’s drying time recorder combines precise mechanics, microchip control, and calibrated needle contact pressure for reliable results. The stable needle movement and consistent sample tracking ensure accurate readings across tests. Lubricant-free drives and stiff stainless- steel frames maintain instrument integrity. Test accuracy is typically within a tight margin of error. Calibration and ISO-compliant validation rules ensure traceability. These features support rigorous quality control and compliance testing protocols.

  • Labtron’s drying time recorder accommodates multiple parallel tracks, enabling simultaneous monitoring of six different coating samples. This multi-track setup streamlines comparison between formulations, substrates, or environmental conditions. It enhances lab productivity and reduces test cycle times. Simultaneous data ensures consistent environmental exposure and meaningful results. This feature proves vital in formulation screening, batch QA, and comparative studies. As a result, users gain efficient and reliable insights into drying behavior across product lines.

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Email: info@labtron.com

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Labtron Equipment Ltd., Quatro House, Lyon Way, Camberley, Surrey GU16 7ER United Kingdom

Email: info@labtron.com Whatsapp: +44 73 4441 2688 Phone: +44 2080 043608

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