Review




Structured Review

Impinj Inc antenna 5 proposed
Design parameters of Antenna 1 and the miniaturized Antenna 5.
Antenna 5 Proposed, supplied by Impinj Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/antenna+5+proposed/pmc13165870-18-0-4?v=Impinj+Inc
Average 86 stars, based on 1 article reviews
antenna 5 proposed - by Bioz Stars, 2026-08
86/100 stars

Images

1) Product Images from "Flexible Meandered UHF RFID Tag Antenna on a Paper-Backed Substrate: Impact of Chip Placement and Material Proximity for Industrial Applications"

Article Title: Flexible Meandered UHF RFID Tag Antenna on a Paper-Backed Substrate: Impact of Chip Placement and Material Proximity for Industrial Applications

Journal: Sensors (Basel, Switzerland)

doi: 10.3390/s26092598

Design parameters of Antenna 1 and the miniaturized Antenna 5.
Figure Legend Snippet: Design parameters of Antenna 1 and the miniaturized Antenna 5.

Techniques Used:

Representative parametric sweep of the miniaturized Antenna 5, showing the effect of the parameters ( a ) W , ( b ) L c , ( c ) W 2 , and ( d ) L 2 on the imaginary part of the antenna input impedance around the operating frequency. The dashed vertical line indicates the design frequency at 866 MHz.
Figure Legend Snippet: Representative parametric sweep of the miniaturized Antenna 5, showing the effect of the parameters ( a ) W , ( b ) L c , ( c ) W 2 , and ( d ) L 2 on the imaginary part of the antenna input impedance around the operating frequency. The dashed vertical line indicates the design frequency at 866 MHz.

Techniques Used:

Simulated frequency-dependent antenna terminal impedance of the two final designs after removing the chip model from the excitation region: ( a ) real part of the antenna impedance for Antenna 1 and Antenna 5; ( b ) imaginary part of the antenna impedance for Antenna 1 and Antenna 5. The dashed vertical line indicates the design frequency at 866 MHz.
Figure Legend Snippet: Simulated frequency-dependent antenna terminal impedance of the two final designs after removing the chip model from the excitation region: ( a ) real part of the antenna impedance for Antenna 1 and Antenna 5; ( b ) imaginary part of the antenna impedance for Antenna 1 and Antenna 5. The dashed vertical line indicates the design frequency at 866 MHz.

Techniques Used:

Simulated power transmission coefficient τ ( f ) for Antenna 1 and Antenna 5, calculated from the simulated antenna impedance and the interpolated frequency-dependent impedance of the Impinj Monza 3 chip. The dashed vertical line indicates the design frequency at 866 MHz.
Figure Legend Snippet: Simulated power transmission coefficient τ ( f ) for Antenna 1 and Antenna 5, calculated from the simulated antenna impedance and the interpolated frequency-dependent impedance of the Impinj Monza 3 chip. The dashed vertical line indicates the design frequency at 866 MHz.

Techniques Used: Transmission Assay

Surface current distribution comparison between Antenna 1 and the miniaturized Antenna 5 at the operating frequency of 866 MHz. ( a ) Surface current distribution of Antenna 1 at 866 MHz. ( b ) Surface current distribution of the miniaturized Antenna 5 at 866 MHz.
Figure Legend Snippet: Surface current distribution comparison between Antenna 1 and the miniaturized Antenna 5 at the operating frequency of 866 MHz. ( a ) Surface current distribution of Antenna 1 at 866 MHz. ( b ) Surface current distribution of the miniaturized Antenna 5 at 866 MHz.

Techniques Used: Comparison

Theoretical read range of Antenna 5 under different material loading conditions.
Figure Legend Snippet: Theoretical read range of Antenna 5 under different material loading conditions.

Techniques Used:



Similar Products

86
Impinj Inc antenna 5 proposed
Design parameters of Antenna 1 and the miniaturized Antenna 5.
Antenna 5 Proposed, supplied by Impinj Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/antenna+5+proposed/pmc13165870-18-0-4?v=Impinj+Inc
Average 86 stars, based on 1 article reviews
antenna 5 proposed - by Bioz Stars, 2026-08
86/100 stars
  Buy from Supplier

Image Search Results


Design parameters of Antenna 1 and the miniaturized Antenna 5.

Journal: Sensors (Basel, Switzerland)

Article Title: Flexible Meandered UHF RFID Tag Antenna on a Paper-Backed Substrate: Impact of Chip Placement and Material Proximity for Industrial Applications

doi: 10.3390/s26092598

Figure Lengend Snippet: Design parameters of Antenna 1 and the miniaturized Antenna 5.

Article Snippet: Antenna 5 (proposed) , Impinj Monza 3 , 6.3 , 1.45 , 0.5 , 77.0/92.1.

Techniques:

Representative parametric sweep of the miniaturized Antenna 5, showing the effect of the parameters ( a ) W , ( b ) L c , ( c ) W 2 , and ( d ) L 2 on the imaginary part of the antenna input impedance around the operating frequency. The dashed vertical line indicates the design frequency at 866 MHz.

Journal: Sensors (Basel, Switzerland)

Article Title: Flexible Meandered UHF RFID Tag Antenna on a Paper-Backed Substrate: Impact of Chip Placement and Material Proximity for Industrial Applications

doi: 10.3390/s26092598

Figure Lengend Snippet: Representative parametric sweep of the miniaturized Antenna 5, showing the effect of the parameters ( a ) W , ( b ) L c , ( c ) W 2 , and ( d ) L 2 on the imaginary part of the antenna input impedance around the operating frequency. The dashed vertical line indicates the design frequency at 866 MHz.

Article Snippet: Antenna 5 (proposed) , Impinj Monza 3 , 6.3 , 1.45 , 0.5 , 77.0/92.1.

Techniques:

Simulated frequency-dependent antenna terminal impedance of the two final designs after removing the chip model from the excitation region: ( a ) real part of the antenna impedance for Antenna 1 and Antenna 5; ( b ) imaginary part of the antenna impedance for Antenna 1 and Antenna 5. The dashed vertical line indicates the design frequency at 866 MHz.

Journal: Sensors (Basel, Switzerland)

Article Title: Flexible Meandered UHF RFID Tag Antenna on a Paper-Backed Substrate: Impact of Chip Placement and Material Proximity for Industrial Applications

doi: 10.3390/s26092598

Figure Lengend Snippet: Simulated frequency-dependent antenna terminal impedance of the two final designs after removing the chip model from the excitation region: ( a ) real part of the antenna impedance for Antenna 1 and Antenna 5; ( b ) imaginary part of the antenna impedance for Antenna 1 and Antenna 5. The dashed vertical line indicates the design frequency at 866 MHz.

Article Snippet: Antenna 5 (proposed) , Impinj Monza 3 , 6.3 , 1.45 , 0.5 , 77.0/92.1.

Techniques:

Simulated power transmission coefficient τ ( f ) for Antenna 1 and Antenna 5, calculated from the simulated antenna impedance and the interpolated frequency-dependent impedance of the Impinj Monza 3 chip. The dashed vertical line indicates the design frequency at 866 MHz.

Journal: Sensors (Basel, Switzerland)

Article Title: Flexible Meandered UHF RFID Tag Antenna on a Paper-Backed Substrate: Impact of Chip Placement and Material Proximity for Industrial Applications

doi: 10.3390/s26092598

Figure Lengend Snippet: Simulated power transmission coefficient τ ( f ) for Antenna 1 and Antenna 5, calculated from the simulated antenna impedance and the interpolated frequency-dependent impedance of the Impinj Monza 3 chip. The dashed vertical line indicates the design frequency at 866 MHz.

Article Snippet: Antenna 5 (proposed) , Impinj Monza 3 , 6.3 , 1.45 , 0.5 , 77.0/92.1.

Techniques: Transmission Assay

Surface current distribution comparison between Antenna 1 and the miniaturized Antenna 5 at the operating frequency of 866 MHz. ( a ) Surface current distribution of Antenna 1 at 866 MHz. ( b ) Surface current distribution of the miniaturized Antenna 5 at 866 MHz.

Journal: Sensors (Basel, Switzerland)

Article Title: Flexible Meandered UHF RFID Tag Antenna on a Paper-Backed Substrate: Impact of Chip Placement and Material Proximity for Industrial Applications

doi: 10.3390/s26092598

Figure Lengend Snippet: Surface current distribution comparison between Antenna 1 and the miniaturized Antenna 5 at the operating frequency of 866 MHz. ( a ) Surface current distribution of Antenna 1 at 866 MHz. ( b ) Surface current distribution of the miniaturized Antenna 5 at 866 MHz.

Article Snippet: Antenna 5 (proposed) , Impinj Monza 3 , 6.3 , 1.45 , 0.5 , 77.0/92.1.

Techniques: Comparison

Theoretical read range of Antenna 5 under different material loading conditions.

Journal: Sensors (Basel, Switzerland)

Article Title: Flexible Meandered UHF RFID Tag Antenna on a Paper-Backed Substrate: Impact of Chip Placement and Material Proximity for Industrial Applications

doi: 10.3390/s26092598

Figure Lengend Snippet: Theoretical read range of Antenna 5 under different material loading conditions.

Article Snippet: Antenna 5 (proposed) , Impinj Monza 3 , 6.3 , 1.45 , 0.5 , 77.0/92.1.

Techniques: