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Measuring Instrument Product List and Ranking from 1162 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Apr 01, 2026~Apr 28, 2026
This ranking is based on the number of page views on our site.

Measuring Instrument Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Apr 01, 2026~Apr 28, 2026
This ranking is based on the number of page views on our site.

  1. null/null
  2. null/null
  3. 大栄無線電機 Tokyo//Trading company/Wholesale
  4. 4 トリイ Aichi//others
  5. 5 シロ産業 Osaka//Industrial Electrical Equipment

Measuring Instrument Product ranking

Last Updated: Aggregation Period:Apr 01, 2026~Apr 28, 2026
This ranking is based on the number of page views on our site.

  1. [OPIE'26 Exhibition] Lens Measurement: Optical 3D Surface Roughness Measurement Device
  2. VR-6000 Series One-Shot 3D Shape Measuring Machine
  3. MCS8A type 8-input multi-stop TDC (80 ps resolution) 大栄無線電機
  4. 4 全窒素・全りん/COD測定装置レンタルサービス『NP-Rent』 トリイ
  5. 5 Fully Automatic Image Dimension Measuring Instrument 'IM-X1000 Series'

Measuring Instrument Product List

3211~3240 item / All 3841 items

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Piezo Steering Mirror

P35 Piezo Deflector, Piezo Steering Mirror with 43mrad tilt

Designed for high large-angle deflection applications, P35 Piezo Tip/Tilt Platforms provide beam deflections up to 86mrad (approximately 4.9 degrees, 17700"), making them ideal for fast deflection applications with high precision and large angle.

  • Piezoelectric Devices
  • Measuring Instrument

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Precision Check Device "DEM-90"

The air pressure measurement standards for the maintenance workshop will be upgraded!

The "DEM-90" is a precision check device that simultaneously features a high-accuracy tire pressure measurement function and the ability to verify the accuracy of your tire gauge. It can measure tire pressure with high precision (from 0 to 970 kPa) and, using the TEST STEM, allows you to check the accuracy of other tire gauges. Additionally, it operates on dry batteries (2 AA batteries), making it portable and convenient. Please feel free to contact us if you have any inquiries. 【Three Functions】 ■ High-precision digital measurement ■ Gauge accuracy verification ■ Can be used as a master gauge *For more details, please download the PDF or contact us.

  • Pressure
  • Other measurement, recording and measuring instruments
  • Other inspection equipment and devices
  • Measuring Instrument

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Inspection technology

Conducting inspections that leverage the features of seven types of testing equipment! We are working hard to improve our inspection skills every day.

Based on the measurement data, process management, inspection, and testing are conducted, making it very important to ensure the reliability of the measurement data. Our company uses Measurement System Analysis (MSA) to improve measurement technology and provide highly reliable measurement data. We have established an inspection system capable of responding to short delivery times in motorsports. We conduct inspections based on 100% inspection of parts, utilizing the features of seven types of inspection equipment to achieve accurate inspections within short delivery times. We differentiate between non-contact measuring instruments for efficiency and contact measuring instruments for high-precision measurements depending on the situation. **Features of JHI's Inspections:** - Possesses measurement technology for irregular shapes that are difficult to standardize, such as piping and complex-shaped parts. - Not only guarantees accuracy through regular calibration of measuring instruments but also performs adjustments after each use of the measuring equipment. - Strives to improve inspection skills daily to maintain measurement accuracy standards. - Capable of accepting inspection contracts and can also handle the aggregation of process capability indices (CPK). *For more details, please refer to the PDF document or feel free to contact us.*

  • Other contract services
  • Other inspection equipment and devices
  • 3D measuring device
  • Measuring Instrument

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Crystallinity and density of polyethylene

It takes 25 minutes from taking out the sample to evaluating the results. Measurable at the line!

The crystallinity of polyethylene (PE) is determined by factors such as hardness, compressive strength, tensile strength, transparency, and the material's electrical resistance. Measuring crystallinity is an important measurement related to the specifications of PE grades, and commonly used methods are very time-consuming and require complicated sample preparation. Our method for measuring the crystallinity of PE can be performed at line without the need for special training and is not dependent on laboratory conditions. 【Features】 ■ Quality control of product specifications ■ Measurement at line ■ Minimal sample preparation (can be measured directly in pellet or powder form) ■ 25 minutes from sample extraction to result evaluation ■ Equipment validation through daily check functionality *For more details, please refer to the PDF document or feel free to contact us.

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  • Other polymer materials
  • Measuring Instrument

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[Measurement Example] Quantifying Lot Differences

Calculated from BET specific surface area and relaxation time! Introducing the differences in wettability of powders with different lots.

We would like to introduce a case study conducted by Majerika Japan Co., Ltd., where six types of powders with different lots were dispersed in distilled water, and relaxation time measurements were performed. The six types of powders were dispersed in water at the same concentration (10 wt%) and subjected to ultrasonic dispersion for 10 minutes, followed by relaxation time measurements. When the relationship between the BET specific surface area and the calculated specific surface area from the relaxation time was graphed, it was represented by two straight lines rather than a single correlation line. This suggests the presence of two types of powders with different chemical properties. 【Case Summary】 ■ Experiment - Six types of powders were dispersed in water at the same concentration (10 wt%). - Ultrasonic dispersion was performed for 10 minutes, followed by relaxation time measurements. ■ Results - The presence of two types of powders with different chemical properties was suggested. *For more details, please refer to the PDF document or feel free to contact us.

  • Contract measurement
  • Measuring Instrument

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[Measurement Example] Quantifying Surface Treatment

I will introduce a case regarding the wettability of alumina surface treatment presence or absence.

We would like to introduce a case study by Majelica Japan Co., Ltd. that compares the wettability using powders with significantly different interfacial properties. Water droplets were dropped on the powders before and after surface treatment to compare their wettability. Additionally, the relaxation times were measured when each was dispersed in distilled water and hexane. It was suggested that the wettability worsened in distilled water due to a decrease in Rsp from surface treatment, while the wettability improved in hexane due to an increase in Rsp from surface treatment. [Case Summary] ■ Experiment - Dropped water droplets on powders before and after surface treatment - Measured relaxation times when dispersed in distilled water and hexane ■ Results - Distilled Water: Suggested that wettability worsened due to a decrease in Rsp - Hexane: Suggested that wettability improved due to an increase in Rsp *For more details, please refer to the PDF document or feel free to contact us.

  • Contract measurement
  • Measuring Instrument

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Complex Permittivity Meter 'FPOR'

For measuring the complex permittivity of millimeter-wave band compatible materials! Seamless and highly accurate measurements can be performed in a short time.

The "FPOR" is a complex permittivity measurement device that applies the Fabry-Pérot resonator, which has been widely known in the field of optics. It can be used for measuring the complex permittivity of materials compatible with millimeter-wave bands, which have seen intense development in recent years for applications such as 5G/6G and automotive radar. Additionally, because it uses coaxial ports, it can measure seamlessly and with high precision over a range of 15GHz to 130GHz in short time intervals, with a step of 1.5GHz. 【Features】 ■ The measurement system consists of the FPOR main unit, a VNA (Vector Network Analyzer), and a PC with dedicated software installed. ■ It has coaxial connectors for input and output, allowing for a simple setup by connecting to the two ports of the VNA. *For more details, please refer to the related links or feel free to contact us.

  • Other measurement, recording and measuring instruments
  • Measuring Instrument

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Measurement of large products is now possible! Dimensional measurement inspection [Contract inspection]

We will measure large-sized products!

Our company has introduced a large three-dimensional measuring machine that can measure products of various sizes. The maximum work size it can accommodate is 1200×2400×1000. You can trust us with anything from small products to large ones. *For more details, please feel free to contact us.*

  • Contract Inspection
  • Measuring Instrument

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【Equipment Introduction】Contact-type 3D Measuring Machine "CARL ZEISS"

High-level measurement equipment! Regular calibrations traceable to national standards are conducted.

KILT uses only highly reliable measuring machines from "CARL ZEISS." We support high-precision measurements for samples ranging from small to large. Regular calibrations traceable to national standards are conducted, maintaining the highest levels not only in accuracy but also in the reliability of measurement results. In our dimensional inspections, we are confident not only in the reliability of measurement results but also in the timing of their delivery. Our specialized inspectors listen to your requests and propose suitable methods and measuring instruments from three measurement methods. 【Overview】 ■ Measuring Machines - CARL ZEISS Accura 2 units / Accura II 1 unit / PRISMO 1 unit / CenterMax 1 unit ■ Maximum Sample Size: 1200x2400x1000mm ■ Measurement Accuracy (Maximum Allowable Length Measurement Error): 1.8±L/350μm ■ Resolution (Maximum Allowable Length Measurement Error): 0.2μm *For more details, please refer to the PDF document or feel free to contact us.

  • Contract Inspection
  • Measuring Instrument

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[Equipment Introduction] Optical 3D Measuring Machine

Ideal for material inspection of freeform surfaces! You can instantly create intricate 3D models.

Our optical 3D measuring machine "Steinbichler COMET L3D 2 5M" can instantly create intricate 3D models by projecting patterns onto the sample and capturing them with a camera. By comparing the 3D model of materials with freeform surfaces to the 3D model for manufacturing, it is possible to visually confirm the differences in surface irregularities. In our dimensional inspections, we are confident not only in the reliability of the measurement results but also in the timing of their delivery. Our specialized inspectors listen to your requests and propose the most suitable method and measuring equipment from three measurement options. 【Specifications】 ■ Maximum sample size: Unlimited ■ Measurement accuracy: 40μm ■ 3D model formats: .STP, .IGS, etc. (to be confirmed) *For more details, please refer to the PDF document or feel free to contact us.

  • Contract Inspection
  • Measuring Instrument

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For those struggling with inspection and measurement tools in the production site.

We propose and manufacture suitable measuring instruments from product drawings! A lineup of inner diameter gauges and runout gauges is available.

Our company focuses on measurements on the production line and offers a range of simple and easy-to-use measuring instruments. We have a lineup that includes inner diameter gauges, outer diameter gauges, runout gauges, and pitch gauges. We have received feedback from customers stating that "business support has led to a reduction in man-hours, allowing for more time." We can propose and manufacture the appropriate measuring instruments based on product drawings, so please feel free to contact us when you need gauge production. 【Products We Handle】 ■ Inner Diameter Gauges ■ Outer Diameter Gauges ■ Runout Gauges ■ Pitch Gauges ■ Squareness Gauges *For more details, please refer to the PDF materials or contact us through our website mentioning "Ipros was seen."

  • Other measurement, recording and measuring instruments
  • Measuring Instrument

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Comparative measuring instrument (inner diameter, outer diameter, height, chamfering, limit gauge)

Measurements with a comparator are easy and measurement errors can be kept small! Especially when measuring repeatedly.

The "Comparative Measuring Instrument" is a product that measures dimensions such as inner diameter, outer diameter, and height by comparing them with reference gauges (master gauges) such as ring masters or block masters that are prepared in advance to match the dimensions of the measurement area, and calculates the difference from the reference gauge. When comparing, a dial gauge is used to obtain the difference from the reference gauge in numerical form, and it is classified into measuring instruments (such as "inner diameter measuring instrument," "outer diameter measuring instrument," "height measuring instrument (flat stand)," and "chamfer measuring instrument") that determine through comparison and "limit gauges" that determine through go/no-go. Measurements with comparative measuring instruments are easy and the measurement error can be kept small, making them commonly used in cases of mass-produced items where repeated measurements are necessary. 【Lineup (partial)】 <Inner Diameter Measuring Instruments> ■ASQA-ID-01 ■ASQA-ID-02 ■ASQA-ID-03 ■ASQA-ID-BMD <Outer Diameter Measuring Instruments> ■ASQA-OD-01 ■ASQA-OD-02 *For more details, please refer to the PDF document or feel free to contact us.

  • Other measurement, recording and measuring instruments
  • Measuring Instrument

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Geometric characteristics measured by instruments (runout, wall thickness, concentricity, perpendicularity, roundness, pitch, etc.)

Characteristics that regulate shape, posture, position, and vibration! Classified into shape, posture, position, and vibration characteristics.

The "Geometric Characteristics Measurement Device" is a product designed to measure geometric characteristics. The device uses a dial gauge for measurements and includes a pitch gauge for measuring positional accuracy, eliminating the need for a reference master required for comparative measurements. Geometric characteristics refer to the properties that regulate "shape, posture, position, and runout" (according to JIS Z8114 "Drafting - Drafting Terms"). Geometric characteristics are classified into shape characteristics, posture characteristics, position characteristics, and runout characteristics. 【Classification of Geometric Characteristics】 ■ Shape Characteristics: Roundness, Flatness, Cylindricity, etc. ■ Posture Characteristics: Parallelism, Perpendicularity, etc. ■ Position Characteristics: Positional Accuracy, Concentricity (Uneven Thickness), Coaxiality, etc. ■ Runout Characteristics: Circular Runout, Total Runout *For more details, please refer to the PDF document or feel free to contact us.

  • Other measurement, recording and measuring instruments
  • Measuring Instrument

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Inline Measurement Device Delivery Record for KT Company

Introduction of delivery results to forging manufacturers, including outer diameter gauges, pitch gauges, and screw gauges!

We received an order for a complete set of inline measuring instruments specified by KT Company, a manufacturer of forged products. The products to be measured are forged items (material: iron), and we will supply a complete set of inline measuring instruments, including a concentricity measuring instrument for inner and outer diameters and a gauge for confirming the position of TAP holes. If you have any questions or inquiries, please feel free to contact us. 【Overview】 ■ Name of measuring instrument: Complete set of inline measuring instruments - Concentricity measuring instrument for inner and outer diameters: 1 unit (ASQA-KK-04) - TAP hole position confirmation gauge: 1 set (including screw gauge, ASQA-KK-07) - TAP hole chamfer gauge: 1 unit (including master ring, ASQA-CF-01) - Outer diameter measuring instrument: 1 unit (ASQA-OD-02M) - Height measuring instrument: 1 unit (including master block, measured from below the base, similar to ASQA-KK-02 (2)) - Pilot hole pitch measuring instrument: 1 unit *For more details, please refer to the PDF document or feel free to contact us.

  • Other measurement, recording and measuring instruments
  • Measuring Instrument

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"Measurement Equipment for Automotive Engine Parts Delivery Record" for In-house Line

Measuring instruments such as inner diameter gauges and depth gauges! Measuring automotive engine parts and die-cast products.

We have installed a complete set of inline measuring instruments on our processing line, and we would like to introduce them. The set includes an inner diameter gauge, depth gauges, limit gauges, and other inline measuring instruments. The products being measured are automotive engine parts and die-cast products (material: aluminum). We have also adopted options such as a wireless communication system and inspection tables. 【Overview】 ■ Name of measuring instruments: Complete set of inline measuring instruments - Inner diameter gauges: 4 units (ASQA-ID-BMD) - Depth gauges: 2 units (custom-designed) - Limit gauges (inner diameter plug gauges): 4 units - Total gauge set: 1 set (including 6 plug gauges) - Dedicated gauges: 3 units (for perpendicularity, coaxiality, and surface position) *For more details, please refer to the PDF document or feel free to contact us.

  • Other measurement, recording and measuring instruments
  • Measuring Instrument

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Delivery record of inner diameter measuring instruments for Company N.

Inspection tools and measuring instruments used in manufacturing sites for monozukuri! Introducing our delivery achievements to press manufacturers.

We received an order from Company N, a press manufacturer, specifying the measurement target product. The measurement target is a ring shape, and we will supply an inner diameter measuring instrument (dial gauge direct contact type). As an option, a dial gauge (0.001) and a master ring have been adopted. 【Overview】 ■ Measuring instrument name: Inner diameter measuring instrument (dial gauge direct contact type) 1 unit ■ Measurement target product: Details unknown (press product? automotive parts?), ring shape (material unknown) ■ Measurement dimension tolerance: Inner diameter Φ124±0.015 ■ Options: Dial gauge (0.001) included, master ring included ■ Special note: Equipped with multi-turn prevention function *For more details, please refer to the PDF document or feel free to contact us.

  • Other measurement, recording and measuring instruments
  • Measuring Instrument

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Discussion on Inspection and Measurement: Roundness and Roundness Measuring Instruments

Introduction to inspection and measurement, including 2-point and 3-point measurements for elliptical shapes and rice ball shapes (triangular)!

Roundness is one of the geometric tolerances applied to a single shape, referring to "the magnitude of deviation from the geometric circle of the circular part." Methods for measuring roundness include roundness measuring machines (such as Roncom), reading methods using center support, and three-dimensional measuring machines. A practical measurement method involves measuring the diameter with a dial gauge, and the Kensatools roundness measuring device falls into this category. [Contents] ■ About Roundness 1) Definition and illustrated examples 2) Tolerance zone (allowable range) 3) Measurement methods ■ Two-point and three-point measurements for elliptical shapes and onigiri shapes (triangular) *For detailed content of the article, please refer to the related links. For more information, feel free to contact us.

  • Other measurement, recording and measuring instruments
  • Other inspection equipment and devices
  • Measuring Instrument

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[Inspection and Measurement Discussion] Measuring Instruments for Geometric Characteristics

Introducing an article on correctly evaluating the "geometric characteristics" and "geometric tolerances" specified in product drawings!

"Geometric characteristics" are classified in ISO/JIS according to the applicable shapes and types of geometric tolerances. A "datum" can be simply defined as "the dimension that serves as a reference during measurement." When specifying the geometric tolerances of related shapes in a drawing, the reference axes, surfaces, and dimensions are designated with letters of the alphabet, and these letters are referred to as datums. To correctly evaluate the "geometric characteristics" and "geometric tolerances" listed on product drawings, it is necessary to understand their meanings accurately and choose appropriate measurement methods accordingly. [Contents] ■ Types of geometric characteristics ■ Measuring instruments for geometric characteristics *For detailed content of the article, please refer to the related links. For more information, feel free to contact us.

  • Other measurement, recording and measuring instruments
  • Other inspection equipment and devices
  • Measuring Instrument

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[Discussion on Inspection and Measurement] Comparative Measuring Instruments 1: What is a Comparative Measuring Instrument?

Measure the characteristics and properties of the subject being tested by comparing it with reference values and standard substances! Introducing the topic of inspection and measurement.

"Comparative measurement" refers to measuring the characteristics or properties of a subject by comparing it with a reference value or standard material. For example, in the measurement of "length," one might measure both a reference piece, such as a block gauge, and the subject simultaneously using a dial gauge, and determine the length of the subject from the difference. In general, measuring instruments used for "comparative measurement" are referred to as "comparative measuring instruments." Our company primarily handles measuring instruments for measuring "length," particularly those for measuring "inner diameter," "outer diameter," "height (width)," "chamfering," and limit gauges. 【Contents】 ■ What is a comparative measuring instrument? ■ Features of comparative measuring instruments *For detailed content of the article, please refer to the related links. For more information, feel free to contact us.

  • Other measurement, recording and measuring instruments
  • Other inspection equipment and devices
  • Measuring Instrument

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[Discussion on Inspection and Measurement] Selection of Measuring Instruments

To select the appropriate measuring instrument from a wide variety of measuring devices, here are some key points to consider!

When measuring a product, the measuring instrument is selected based on the dimensions and tolerances specified in the product drawing. However, there are many types of measuring instruments available in the world. For example, even when considering instruments for measuring "length," there are various types such as scales, calipers, micrometers, comparative measuring instruments using dial gauges, three-dimensional measuring machines, projectors, and more, making careful selection necessary. Therefore, I would like to explain the points to consider when selecting the appropriate measuring instrument from the wide variety available. [Excerpt of Content] ■ Points to consider when selecting a measuring instrument - Choose a measuring instrument according to the required accuracy for the measurement. - Consider the characteristics of the object being measured (shape and material). - Take into account the ease of measurement and the acceptable measurement error. - Consider cost performance. - Consider the ease of maintenance. *For more detailed information, please refer to the related links. For further inquiries, feel free to contact us.

  • Other measurement, recording and measuring instruments
  • Other inspection equipment and devices
  • Measuring Instrument

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Coaxial and Concentricity Measuring Instrument 'ASQA-KK-04'

Measuring the concentricity and coaxiality of the outer diameter/internal diameter based on the inner/outer diameter standards! For medium to large-sized workpieces.

The "ASQA-KK-04" is a measuring instrument for geometric characteristics used for coaxiality and concentricity. It is a type where the instrument is fixed and the workpiece is moved for measurement. It is capable of measuring concentricity and coaxiality (outer diameter, inner diameter). No master is required, and the dial gauge accuracy supports 1/100 and 1/1000. 【Features】 ■ Measuring instrument for geometric characteristics for coaxiality and concentricity ■ Suitable for medium to large workpieces ■ A type where the instrument is fixed and the workpiece is moved for measurement *For more details, please refer to the related links or feel free to contact us.

  • Other measurement, recording and measuring instruments
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Inner Diameter Measuring Device "ASQA-ID-02"

For large workpieces (approximately Φ150 to Φ200)! Contact type dial gauge for large inner diameter rings.

The "ASQA-ID-02" is a comparative measuring instrument for inner diameters. It is a type where the measuring instrument is fixed and the workpiece is moved for measurement. It can measure inner diameters and roundness. It is a contact-type dial gauge designed for large inner diameter rings. Please feel free to contact us when you need it. 【Features】 ■ Comparative measuring instrument for inner diameters ■ For large workpieces (approximately Φ150 to Φ200) ■ A type where the measuring instrument is fixed and the workpiece is moved for measurement *For more details, please refer to the related links or feel free to contact us.

  • Other measurement, recording and measuring instruments
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Inner Diameter Measuring Device 'ASQA-ID-03'

For large workpieces (approximately Φ150 to Φ300)! A type that measures by moving the measuring device while securing the workpiece.

The "ASQA-ID-03" is a comparative measuring instrument for inner diameters. It is a dial gauge contact type designed for large workpieces (workpiece fixed). It can measure inner diameters and roundness. The dial gauge accuracy corresponds to 1/100 and 1/1000. The master type uses a ring. 【Features】 ■ Comparative measuring instrument for inner diameters ■ For large workpieces (approximately Φ150 to Φ300) ■ A type where the measuring instrument is moved while the workpiece is fixed for measurement *For more details, please refer to the related links or feel free to contact us.

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Inner Diameter Measuring Device 'ASQA-ID-BMD'

For small item sizes (hole diameter Φ2.98 and above)! Non-contact dial gauge made by Daiatest.

The "ASQA-ID-BMD" is a comparative measuring instrument for hole diameter and small inner diameter. It is a type where the measuring instrument is moved while the workpiece is fixed. It is capable of measuring inner diameter (hole diameter) and roundness. Manufactured by Daiatest, it is a non-contact dial gauge type, designed for small inner diameter (hole diameter). 【Features】 ■ Comparative measuring instrument for hole diameter and small inner diameter ■ For hole diameters of small sizes (Φ2.98 and above) ■ A type where the measuring instrument is moved while the workpiece is fixed *For more details, please refer to the related links or feel free to contact us.

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【Equipment Introduction】Keyence Image Dimension Measurement Device IM-8000

Resin processing × High-precision measurement Achieve stable quality with the IM-8000!

Our company has introduced Keyence's image dimension measuring device "IM-8000" to strengthen quality assurance, allowing us to conduct precise dimension measurements in a short time. This enables us to guarantee stable quality and dimensional tolerances, providing our customers with high-quality products. ● Companies looking for a processing contractor that can consistently handle precision machining and measurement inspection of resin products. ● Companies seeking high-quality resin parts utilizing precision measurement. We provide stable quality resin products through high-precision measurements with the IM-8000! Please feel free to consult with us first! We also accommodate prototype and small lot requests.

  • Resin processing machine
  • Processing Contract
  • Measuring Instrument

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Balance-type calorimetry method

It is possible to measure the required supply amount for indoor thermal equilibrium and the total amount of heat for outdoor thermal equilibrium!

The "Balanced Room Type Calorimetry Method" is a testing chamber that simultaneously measures the capacity of both the indoor and outdoor sides with high precision. The indoor side automatically heats and humidifies the cooling and dehumidification provided by the test room air conditioner to achieve thermal equilibrium under JIS conditions, measuring the necessary supply amount to maintain that equilibrium. The outdoor side automatically achieves thermal equilibrium corresponding to the heat dissipation from the test air conditioner condenser, measuring the total heat amount in that state. This device is equipped with the aforementioned calorimeter for both indoor and outdoor measurements, allowing simultaneous measurement. 【Specifications】 ■ Indoor/Outdoor Balance Ratio: 2% or less ■ Reproducibility Accuracy: 1% or less ■ Testing Standards: JIS B8615-1/ISO 5151 *For more details, please download the PDF or feel free to contact us.

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  • Testing Equipment and Devices
  • Measuring Instrument

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Compressor calorimeter

The measurement methods include the secondary refrigerant calorimeter method, gas refrigerant flow meter method, and liquid refrigerant flow meter method!

The "Compressor Calorimeter" is a testing device used to measure the refrigeration capacity of various compressor units for room air conditioners, car air conditioners, refrigerators, and more. It mainly employs a system that combines the secondary refrigerant calorimeter method and liquid refrigerant flow meter, as well as a system using refrigerant vapor flow meter method. An optional circuit for controlling the oil circulation rate (OCR) can be added. 【Specifications】 ■ Reproducibility accuracy: 1% or less ■ Testing standard: JIS B8606 Testing methods for refrigerant compressors ■ Measurement range: 30W to 120,000W (production record) ■ Refrigerants: R32, R290, R448A, R449A, R744, R1234yf, etc. ■ Stabilization time: within 60 minutes (standard) *For more details, please download the PDF or feel free to contact us.

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  • Testing Equipment and Devices
  • Measuring Instrument

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3D Coordinate Measuring Machine Measurement Contracting

We accept dimensional measurements using a three-dimensional measuring machine.

With a three-dimensional measuring machine, it is possible to measure not only the top surface but also the side shape. [Simple Example] If there are non-through holes (cylindrical shapes) on the front and back of a flat product and you want to know how much the centers of the holes are misaligned, you can measure them by standing the plate upright and fixing it, allowing the machine to touch both the front and back.

  • 3D measuring device
  • Measuring Instrument

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3D Shape Measuring Machine (VR-5200) Measurement Contracting

We accept dimensional measurements using the 3D shape measuring machine (VR-5200).

We will measure the dimensions of rubber, plastic (resin), and metal products. By scanning the product and creating a 3D shape on the PC, you can check the cross-sectional shape without cutting the product. Additionally, warping and waviness in flat areas can also be checked using a color chart.

  • Other microscopes
  • Contract measurement
  • Measuring Instrument

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High-precision image dimension measurement device (LM-1100) measurement outsourcing

We accept dimensional measurements using the high-precision image dimension measurement device (LM-1100).

We measure the dimensions of rubber, plastic (resin), and metal products. By combining high-performance lenses with various types of lighting, we can clearly see areas that were previously difficult to observe, such as the base of burrs on rubber products, the edges of product end faces, and woven fibers. Additionally, by programming, continuous measurements can also be performed. By taking the time to create detailed programs, measurements can be conducted with minimal variation, regardless of the operator.

  • Contract measurement
  • Other measurement, recording and measuring instruments
  • Measuring Instrument

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