Model Name/Number 7-Lead GE Holter Cable
Usage/Application Cardiac Monitoring
Country of Origin Made in India
Number of Lead Wires 7
Material Thermoplastic Polyurethane (TPU)
Voltage Support 150V
Compatibility GE Holter Monitors
Description of 7-Lead GE Holter Cable
The 7-Lead GE Holter Cable is a high-quality medical accessory designed for use with GE Holter monitoring systems. It enables the accurate and continuous recording of ECG signals over an extended period, making it ideal for diagnosing and monitoring heart conditions. Its robust construction and patient-friendly design ensure reliable performance and comfort during use.
Key Features:
Intermediate Monitoring Capability:
Features 7 lead wires for multi-channel ECG signal acquisition, providing a balance between detailed monitoring and simplicity.
Ideal for patients requiring more detailed data than a 5-lead system but less extensive than a 10-lead setup.
High-Quality Material:
Made from TPU (Thermoplastic Polyurethane) for flexibility and durability.
Resistant to frequent use, bending, and chemical exposure, ensuring long service life.
Secure Connection:
Snap or clip-type connectors ensure stable electrode attachment, reducing the likelihood of signal interruption.
Seamless Compatibility:
Specifically designed for GE Holter systems, ensuring reliable performance and easy integration.
Ergonomic and Lightweight Design:
Designed to minimize patient discomfort during prolonged monitoring.
Lightweight and flexible wires improve mobility during ambulatory monitoring.
Medical-Grade Voltage Tolerance:
Supports up to 150V, adhering to safety standards for medical devices.
Reusable and Easy to Maintain:
The cable is easy to clean and disinfect, maintaining hygiene and making it suitable for repeated use.
Made in India:
Manufactured under stringent quality control measures to meet global standards.
Applications:
Ambulatory ECG monitoring in diagnostic centers and hospitals.
Detection and monitoring of arrhythmias, ischemia, and other cardiac abnormalities.
Suitable for use during stress tests and recovery monitoring.




