Snore Sensor Microphone for Grael PSG & Sleep Monitoring

  • High-Sensitivity Snore Detection: Accurately captures snoring and respiratory acoustic signals during PSG sleep studies.
  • Grael PSG Compatible: Plug-and-use design for Grael and mainstream polysomnography systems.
  • Stable Clinical Performance: Reliable signal output for sleep apnea and respiratory analysis.
  • Comfortable Overnight Use: Lightweight, patient-friendly for long-term sleep monitoring.

Snore Sensor Microphone for PSG Sleep Monitoring

This snore sensor microphone provides accurate snoring sound detection for polysomnography (PSG) sleep studies and sleep disorder diagnostics. It captures acoustic vibrations from snoring and respiratory activity, supporting clinicians in analyzing sleep-disordered breathing events during overnight monitoring.

Reliable Snoring & Respiratory Detection

The snore sensor converts acoustic signals into electrical outputs for PSG recording systems, ensuring clear and consistent data capture.

  • High-sensitivity snore sound detection
  • Stable respiratory acoustic signal monitoring
  • Consistent signal output for sleep study analysis
  • Precise identification of snoring and OSA-related events

Snore detection is a critical parameter in evaluating obstructive sleep apnea (OSA) and sleep-related breathing disorders in clinical sleep laboratories.

Compatible with Grael PSG & Sleep Systems

This snore sensor is engineered for seamless integration with PSG recording platforms used in hospitals and sleep research facilities.

  • Fully compatible with Grael PSG systems
  • Works with most standard polysomnography devices
  • Stable signal transmission for overnight studies
  • Flexible cable design for improved patient comfort

It is widely used in sleep labs, clinics, and research centers for routine diagnostic sleep testing.

Comfortable & Easy Placement

The snore microphone is designed for simple, non-invasive placement on the patient.

  • Lightweight and compact sensor housing
  • Comfortable for all-night sleep monitoring
  • Simple fixation with medical tape or adhesive
  • Stable positioning without shifting during recording

The ergonomic design reduces patient discomfort while maintaining high detection accuracy.

Clinical Applications

This snore sensor microphone supports a wide range of sleep diagnostic applications:

  • Polysomnography (PSG) sleep studies
  • Obstructive sleep apnea (OSA) diagnosis
  • Sleep laboratory clinical monitoring
  • Respiratory sound and snore analysis
  • Sleep research and clinical trials

Technical Specifications

Parameter Specification
Sensor Type Snore sensor microphone
Main Application PSG sleep monitoring & OSA diagnostics
Detection Range Snoring sounds & respiratory acoustic signals
Placement Position Throat / trachea area
System Compatibility Grael PSG and most polysomnography recorders

Request a Quote or Ask a Question

Looking for reliable snore sensors for PSG sleep studies and Grael systems? We provide high-quality, compatible sensors for sleep labs, hospitals and distributors worldwide.

  • Full compatibility with Grael and major PSG platforms
  • Stable performance for clinical sleep diagnostics
  • Bulk wholesale & OEM manufacturing available
  • Consistent supply for global partners

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Frequently Asked Questions (FAQ)

What is a snore sensor used for in sleep studies?

A snore sensor detects snoring sounds and respiratory acoustic signals during polysomnography (PSG), helping clinicians diagnose sleep apnea and sleep-disordered breathing.

Where is the snore sensor placed during a PSG study?

The snore sensor microphone is placed near the patient’s throat or trachea to accurately capture snoring vibrations and respiratory sounds.

Is this snore sensor compatible with Grael PSG systems?

Yes. This snore sensor is specifically designed for Grael PSG systems and works with most other standard polysomnography recorders.

Why is snore detection important in sleep diagnostics?

Snoring monitoring helps identify OSA, upper airway resistance, and other sleep-related breathing conditions for accurate clinical evaluation.

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