average filter Search Results


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MEDTRON Software Intelligence Corporation 3-hz averaging filters da26
3 Hz Averaging Filters Da26, supplied by MEDTRON Software Intelligence Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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SSI Technologies Inc 3.2- mm-thick porous stainless steel filter with an average pore size of 20 microns
3.2 Mm Thick Porous Stainless Steel Filter With An Average Pore Size Of 20 Microns, supplied by SSI Technologies Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Tobii AB moving average noise reduction filter
Moving Average Noise Reduction Filter, supplied by Tobii AB, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Panametrics Inc spatial averaging filter panametrics 3.5 mhz
TRANSDUCERS
Spatial Averaging Filter Panametrics 3.5 Mhz, supplied by Panametrics Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Panametrics Inc spatial averaging filter panametrics 5 mhz
Theoretical and <t>experimental</t> <t>spatial</t> <t>averaging</t> <t>filters</t> for the Blatek 3.5 MHz resonant frequency source transducer for 3 hydrophones and 3 driving frequencies. The theoretical spatial averaging filters are based on (20) (SGaussian) and (30) (SQuadratic) in [11]. The vertical dotted lines denote the maximum frequencies of validity predicted by (33) in [11] for the spatial averaging filter derived from the quadratic model for harmonic radial profiles predicted by (30) in [11]. SGaussian and SQuadratic correspond to their counterparts in Fig.s 12 and 14 in [11].
Spatial Averaging Filter Panametrics 5 Mhz, supplied by Panametrics Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/spatial averaging filter panametrics 5 mhz/product/Panametrics Inc
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Altera Corp 8-tap moving average (ma) filter
Theoretical and <t>experimental</t> <t>spatial</t> <t>averaging</t> <t>filters</t> for the Blatek 3.5 MHz resonant frequency source transducer for 3 hydrophones and 3 driving frequencies. The theoretical spatial averaging filters are based on (20) (SGaussian) and (30) (SQuadratic) in [11]. The vertical dotted lines denote the maximum frequencies of validity predicted by (33) in [11] for the spatial averaging filter derived from the quadratic model for harmonic radial profiles predicted by (30) in [11]. SGaussian and SQuadratic correspond to their counterparts in Fig.s 12 and 14 in [11].
8 Tap Moving Average (Ma) Filter, supplied by Altera Corp, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Kemper GmbH moving average filter
Theoretical and <t>experimental</t> <t>spatial</t> <t>averaging</t> <t>filters</t> for the Blatek 3.5 MHz resonant frequency source transducer for 3 hydrophones and 3 driving frequencies. The theoretical spatial averaging filters are based on (20) (SGaussian) and (30) (SQuadratic) in [11]. The vertical dotted lines denote the maximum frequencies of validity predicted by (33) in [11] for the spatial averaging filter derived from the quadratic model for harmonic radial profiles predicted by (30) in [11]. SGaussian and SQuadratic correspond to their counterparts in Fig.s 12 and 14 in [11].
Moving Average Filter, supplied by Kemper GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Measurand Inc average spectral transmittance of each filter
Characteristics of the comparison filters
Average Spectral Transmittance Of Each Filter, supplied by Measurand Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Takeda moving average filter
Characteristics of the comparison filters
Moving Average Filter, supplied by Takeda, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Blackwell Science Ltd modern circuitry with filtering, automatic gain control and averaging
Characteristics of the comparison filters
Modern Circuitry With Filtering, Automatic Gain Control And Averaging, supplied by Blackwell Science Ltd, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Respiratory Motion adaptive averaging filter
Characteristics of the comparison filters
Adaptive Averaging Filter, supplied by Respiratory Motion, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Meso Scale Diagnostics LLC two-dimensional averaging filter
Characteristics of the comparison filters
Two Dimensional Averaging Filter, supplied by Meso Scale Diagnostics LLC, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


TRANSDUCERS

Journal: IEEE transactions on ultrasonics, ferroelectrics, and frequency control

Article Title: Considerations for Choosing Sensitive Element Size for Needle and Fiber-Optic Hydrophones II: Experimental Validation of Spatial Averaging Model

doi: 10.1109/TUFFC.2018.2886071

Figure Lengend Snippet: TRANSDUCERS

Article Snippet: The average root-mean-square differences (RMSD) between theoretical (S Gaussian ) and experimental spatial averaging filters were 6.0 ± 3.0% (Blatek), 5.7% ± 2.3% (Panametrics 3.5 MHz) and 5.7% ± 2.4% (Panametrics 5 MHz).

Techniques:

Theoretical and experimental spatial averaging filters for the Blatek 3.5 MHz resonant frequency source transducer for 3 hydrophones and 3 driving frequencies. The theoretical spatial averaging filters are based on (20) (SGaussian) and (30) (SQuadratic) in [11]. The vertical dotted lines denote the maximum frequencies of validity predicted by (33) in [11] for the spatial averaging filter derived from the quadratic model for harmonic radial profiles predicted by (30) in [11]. SGaussian and SQuadratic correspond to their counterparts in Fig.s 12 and 14 in [11].

Journal: IEEE transactions on ultrasonics, ferroelectrics, and frequency control

Article Title: Considerations for Choosing Sensitive Element Size for Needle and Fiber-Optic Hydrophones II: Experimental Validation of Spatial Averaging Model

doi: 10.1109/TUFFC.2018.2886071

Figure Lengend Snippet: Theoretical and experimental spatial averaging filters for the Blatek 3.5 MHz resonant frequency source transducer for 3 hydrophones and 3 driving frequencies. The theoretical spatial averaging filters are based on (20) (SGaussian) and (30) (SQuadratic) in [11]. The vertical dotted lines denote the maximum frequencies of validity predicted by (33) in [11] for the spatial averaging filter derived from the quadratic model for harmonic radial profiles predicted by (30) in [11]. SGaussian and SQuadratic correspond to their counterparts in Fig.s 12 and 14 in [11].

Article Snippet: The average root-mean-square differences (RMSD) between theoretical (S Gaussian ) and experimental spatial averaging filters were 6.0 ± 3.0% (Blatek), 5.7% ± 2.3% (Panametrics 3.5 MHz) and 5.7% ± 2.4% (Panametrics 5 MHz).

Techniques: Derivative Assay

Theoretical and experimental spatial averaging filters for the Blatek 3.5 MHz resonant frequency source transducer for 3 hydrophones and 3 driving frequencies. The theoretical spatial averaging filters are based on (20) (SGaussian) and (30) (SQuadratic) in [11]. The vertical dotted lines denote the maximum frequencies of validity predicted by (33) in [11] for the spatial averaging filter derived from the quadratic model for harmonic radial profiles predicted by (30) in [11]. SGaussian and SQuadratic correspond to their counterparts in Fig.s 12 and 14 in [11].

Journal: IEEE transactions on ultrasonics, ferroelectrics, and frequency control

Article Title: Considerations for Choosing Sensitive Element Size for Needle and Fiber-Optic Hydrophones II: Experimental Validation of Spatial Averaging Model

doi: 10.1109/TUFFC.2018.2886071

Figure Lengend Snippet: Theoretical and experimental spatial averaging filters for the Blatek 3.5 MHz resonant frequency source transducer for 3 hydrophones and 3 driving frequencies. The theoretical spatial averaging filters are based on (20) (SGaussian) and (30) (SQuadratic) in [11]. The vertical dotted lines denote the maximum frequencies of validity predicted by (33) in [11] for the spatial averaging filter derived from the quadratic model for harmonic radial profiles predicted by (30) in [11]. SGaussian and SQuadratic correspond to their counterparts in Fig.s 12 and 14 in [11].

Article Snippet: The average root-mean-square differences (RMSD) between theoretical (S Gaussian ) and experimental spatial averaging filters were 6.0 ± 3.0% (Blatek), 5.7% ± 2.3% (Panametrics 3.5 MHz) and 5.7% ± 2.4% (Panametrics 5 MHz).

Techniques: Derivative Assay

Theoretical and experimental spatial averaging filters for the Panametrics 5 MHz resonant frequency source transducer for 3 hydrophones and 2 driving frequencies. The theoretical spatial averaging filters are based on (20) (SGaussian) and (30) (SQuadratic) in [11]. The vertical dotted lines denote the maximum frequencies of validity predicted by (33) in [11] for the spatial averaging filter derived from the quadratic model for harmonic radial profiles predicted by (30) in [11]. SGaussian and SQuadratic correspond to their counterparts in Fig.s 12 and 14 in [11].

Journal: IEEE transactions on ultrasonics, ferroelectrics, and frequency control

Article Title: Considerations for Choosing Sensitive Element Size for Needle and Fiber-Optic Hydrophones II: Experimental Validation of Spatial Averaging Model

doi: 10.1109/TUFFC.2018.2886071

Figure Lengend Snippet: Theoretical and experimental spatial averaging filters for the Panametrics 5 MHz resonant frequency source transducer for 3 hydrophones and 2 driving frequencies. The theoretical spatial averaging filters are based on (20) (SGaussian) and (30) (SQuadratic) in [11]. The vertical dotted lines denote the maximum frequencies of validity predicted by (33) in [11] for the spatial averaging filter derived from the quadratic model for harmonic radial profiles predicted by (30) in [11]. SGaussian and SQuadratic correspond to their counterparts in Fig.s 12 and 14 in [11].

Article Snippet: The average root-mean-square differences (RMSD) between theoretical (S Gaussian ) and experimental spatial averaging filters were 6.0 ± 3.0% (Blatek), 5.7% ± 2.3% (Panametrics 3.5 MHz) and 5.7% ± 2.4% (Panametrics 5 MHz).

Techniques: Derivative Assay

Theoretical and experimental spatial averaging filters for the Panametrics 3.5 MHz resonant frequency source transducer for 3 hydrophones and 2 driving frequencies. The theoretical spatial averaging filters are based on (20) (SGaussian) and (30) (SQuadratic) in [11]. The vertical dotted lines denote the maximum frequencies of validity predicted by (33) in [11] for the spatial averaging filter derived from the quadratic model for harmonic radial profiles predicted by (30) in [11]. SGaussian and SQuadratic correspond to their counterparts in Fig.s 12 and 14 in [11].

Journal: IEEE transactions on ultrasonics, ferroelectrics, and frequency control

Article Title: Considerations for Choosing Sensitive Element Size for Needle and Fiber-Optic Hydrophones II: Experimental Validation of Spatial Averaging Model

doi: 10.1109/TUFFC.2018.2886071

Figure Lengend Snippet: Theoretical and experimental spatial averaging filters for the Panametrics 3.5 MHz resonant frequency source transducer for 3 hydrophones and 2 driving frequencies. The theoretical spatial averaging filters are based on (20) (SGaussian) and (30) (SQuadratic) in [11]. The vertical dotted lines denote the maximum frequencies of validity predicted by (33) in [11] for the spatial averaging filter derived from the quadratic model for harmonic radial profiles predicted by (30) in [11]. SGaussian and SQuadratic correspond to their counterparts in Fig.s 12 and 14 in [11].

Article Snippet: The average root-mean-square differences (RMSD) between theoretical (S Gaussian ) and experimental spatial averaging filters were 6.0 ± 3.0% (Blatek), 5.7% ± 2.3% (Panametrics 3.5 MHz) and 5.7% ± 2.4% (Panametrics 5 MHz).

Techniques: Derivative Assay

Characteristics of the comparison filters

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Characteristics of the comparison filters

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques: Comparison

Nominal transmittance spectra of the comparison filters

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Nominal transmittance spectra of the comparison filters

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques: Comparison

Final results for degree of equivalence (DoE) and its expanded ( k = 2) uncertainty for SIM.PR-K6.2010 for Filter A

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Final results for degree of equivalence (DoE) and its expanded ( k = 2) uncertainty for SIM.PR-K6.2010 for Filter A

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Final results for degree of equivalence (DoE) and its expanded ( k = 2) uncertainty for SIM.PR-K6.2010 for Filter E

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Final results for degree of equivalence (DoE) and its expanded ( k = 2) uncertainty for SIM.PR-K6.2010 for Filter E

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Schematic diagram of INMETRO’s transmittance measurement system.

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Schematic diagram of INMETRO’s transmittance measurement system.

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Final results for degree of equivalence (DoE) and its expanded ( k = 2) uncertainty for SIM.PR-K6.2010 for Filter B

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Final results for degree of equivalence (DoE) and its expanded ( k = 2) uncertainty for SIM.PR-K6.2010 for Filter B

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Final results for degree of equivalence (DoE) and its expanded ( k = 2) uncertainty for SIM.PR-K6.2010 for Filter C

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Final results for degree of equivalence (DoE) and its expanded ( k = 2) uncertainty for SIM.PR-K6.2010 for Filter C

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Final results for degree of equivalence (DoE) and its expanded ( k = 2) uncertainty for SIM.PR-K6.2010 for Filter D

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Final results for degree of equivalence (DoE) and its expanded ( k = 2) uncertainty for SIM.PR-K6.2010 for Filter D

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet:

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Measurement Results

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Measurement Results

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for CENAM

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for CENAM

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for INM

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for INM

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for INMETRO

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for INMETRO

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for CMS/ITRI

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for CMS/ITRI

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for NIM

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for NIM

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for NIMT

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for NIMT

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for NRC

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for NRC

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for NIST, CENAM filter set, Round 1

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for NIST, CENAM filter set, Round 1

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for NIST, INM filter set, Round 1

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for NIST, INM filter set, Round 1

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for NIST, INMETRO filter set, Round 1

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for NIST, INMETRO filter set, Round 1

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for NIST, CMS/ITRI filter set, Round 1

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for NIST, CMS/ITRI filter set, Round 1

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for NIST, NIM filter set, Round 1

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for NIST, NIM filter set, Round 1

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for NIST, NIMT filter set, Round 1

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for NIST, NIMT filter set, Round 1

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for NIST, NRC filter set, Round 1

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for NIST, NRC filter set, Round 1

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for NIST, CENAM filter set, Round 3

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for NIST, CENAM filter set, Round 3

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for NIST, INM filter set, Round 3

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for NIST, INM filter set, Round 3

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for NIST, INMETRO filter set, Round 3

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for NIST, INMETRO filter set, Round 3

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for NIST, CMS/ITRI filter set, Round 3

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for NIST, CMS/ITRI filter set, Round 3

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for NIST, NIM filter set, Round 3

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for NIST, NIM filter set, Round 3

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for NIST, NIMT filter set, Round 3

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for NIST, NIMT filter set, Round 3

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques:

Reported  spectral transmittance  for NIST, NRC filter set, Round 3

Journal: Metrologia

Article Title: Report on the SIM Photometry and Radiometry Key Comparison of Spectral Regular Transmittance (SIM.PR-K6.2010)

doi: 10.1088/0026-1394/58/1a/02004

Figure Lengend Snippet: Reported spectral transmittance for NIST, NRC filter set, Round 3

Article Snippet: Measurand The measurand is the average spectral transmittance of each filter. over a circular area of approximately 17 mm diameter centred on the middle of the filter. over a bandwidth of 1 nm centred on the wavelengths (380, 400, 500, 600, 700, 800, 900 and 1000) nm. for a parallel beam with normal angle of incidence. at a temperature of 23 °C. and at a relative humidity not exceeding 60 %. . 4.3.

Techniques: