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1" x 1" (2500 lp/inch), Ronchi Ruling

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Stock #56-602 5-7 Days
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NT$10,710
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NT$10,710
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NT$10,196
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Specifications

概況

Type:
English

物理和機械特性

Dimensional Tolerance (inches):
±0.02
Dimensions (inches):
1 x 1
Thickness (mm):
1.50
Parallelism (arcmin):
±60
Dimensional Tolerance (mm):
± 0.02
Line to Line Parallelism (arcsec):
≤2
Parallelism of Pattern to Substrate (°):
±1

光學特性

Coating:
Vacuum Deposited Chrome, OD >3.0
Substrate: Many glass manufacturers offer the same material characteristics under different trade names. Learn More
Float Glass
Optical Density OD (Average):
3.00
Surface Quality:
60-40
Frequency (lp/inch):
2500.00
Surface Flatness (P-V):

Regulatory Compliance

RoHS 2015:
Certificate of Conformance:
Reach 240:

產品概覽

  • 在玻璃上鍍鉻
  • 高精度
  • 優於蝕刻與裝填刻線法
  • 線與邊緣平行
  • 提供英制與公制版本

High Precision Ronchi Rulings are excellent for evaluating resolution, field distortion, and parfocal stability. The glass targets are coated with vacuum-deposited chrome and have a float glass substrate. English and Metric version are available with various Linepairs Per Inch (LPI) and Linepairs Per Millimeter (lp/mm) measurements. High Precision Ronchi Rulings are offered in 0.5”, 1", 2", and 4" squares. 

Frequently Purchased Together

資源

Filter

Wavelength and f#

This demonstration exemplifies why wavelength and f/# can drastically affect the performance of imaging systems and should not be overlooked.

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What is a video micrometer?

What is the cycle length of a Metric Ronchi Ruling?

Lens Types, Resolution, and Sensor Coverage

No imaging lens is the ideal choice for every type of imaging sensor, as multiple tradeoffs must be weighed and prioritized for every application.

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Axial and Lateral Chromatic Aberration

Chromatic aberrations impact the performance of imaging systems in many different ways, as exemplified in this hands-on demonstration.

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Best Practice #6 There Can Be Only One

Join Nick Sischka, Director of Imaging, as he reviews some best practices to consider when designing an imaging system.

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測試板

在愛特蒙特光學了解不同類型的測試目標及其理想應用、優點、限制、方程式和範例。

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Choosing the Correct Test Target

Do you have a question about test targets? Find out how to choose the correct test target for your system along with application examples at Edmund Optics.

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Edmund Optics Imaging Lab 1.3: Resolution

Learn how to specify imaging system components.

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Edmund Optics Imaging Lab 1.6: Resolution In Depth

Learn how to specify imaging system components.

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Edmund Optics Imaging Lab 1.8: Depth of Field in Depth

Learn how to specify imaging system components.

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Edmund Optics Imaging Lab Module 2: Gauging and Measurement Accuracy Overview

Learn how to specify imaging system components.

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Edmund Optics Imaging Lab 2.1: Distortion

Learn how to specify imaging system components.

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Edmund Optics Imaging Lab 2.2: Telecentricity

Learn how to specify imaging system components.

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How I do select the correct testing target for my electronic imaging system (camera & lens)?

 
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