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When two or more atoms come together to form a molecule, their atomic orbitals combine and molecular orbitals of distinct energies result. In a solid, there are a large number of atoms, and therefore a large number of atomic orbitals that may be combined into molecular orbitals. These groups of molecular orbitals are so closely placed together to form continuous regions of energies, known as the bands.
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Related Experiment Video

Updated: Jan 29, 2026

Construction of a Wireless-Enabled Endoscopically Implantable Sensor for pH Monitoring with Zero-Bias Schottky Diode-based Receiver
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Construction of a Wireless-Enabled Endoscopically Implantable Sensor for pH Monitoring with Zero-Bias Schottky Diode-based Receiver

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Electronically switchable dual-band capsule antenna for wireless endoscopic applications.

Nayab Gogosh1,2, Sohail Khalid3, Bilal Tariq Malik2

  • 1Electrical and Computer Engineering Department, Riphah International University, Islamabad, Pakistan.

Scientific Reports
|January 27, 2026
PubMed
Summary

A new compact antenna for wireless capsule endoscopy enables dual-band Wi-Fi communication in the small intestine. This design enhances data transmission and conserves power for improved safety and extended operation.

Keywords:
Biomedical telemetryDual-band antennaIngestible antennaSwitchable antenna

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Area of Science:

  • Electrical Engineering
  • Biomedical Engineering
  • Wireless Communications

Background:

  • Capsule endoscopy is crucial for examining the small intestine, a challenging area for conventional wired endoscopes.
  • Existing capsule endoscopy systems require compact, efficient antennas for reliable data transmission.
  • Dual-band operation is desirable for managing different data types and conserving power.

Purpose of the Study:

  • To design and evaluate a compact, linearly polarized planar dual annular ring antenna for wireless capsule endoscopy.
  • To achieve dual-band operation at Wi-Fi frequencies (2.45 GHz and 5.8 GHz) within a minimal footprint.
  • To enable electronic switching for efficient power management and enhanced safety.

Main Methods:

  • A planar dual annular ring antenna was designed and derived from a conventional annular ring structure.
  • The antenna was optimized for a radius of 4.7 mm to fit within the capsule dimensions.
  • In-vitro testing was performed to measure antenna performance, including gain, bandwidth, and specific absorption rate (SAR).

Main Results:

  • The antenna achieved dual-band operation at 2.45 GHz and 5.8 GHz with bandwidths of 20.8% and 6.7%, respectively.
  • Electronic switching capability for the higher band was implemented for efficient power management.
  • Measured gains were -17.3 dBi and -18 dBi, with SAR values of 21.5 W/kg and 24.7 W/kg, ensuring safe operation within IEEE and ECC standards.

Conclusions:

  • The developed compact antenna is suitable for wireless capsule endoscopy, offering dual-band Wi-Fi communication.
  • The electronic switching feature allows for efficient power management and reduced SAR levels, enhancing safety.
  • The antenna provides reliable link margins, ensuring effective data transmission for gastrointestinal examinations.