Product Specifications
Below are the key product attributes and specifications that provide detailed information about this item:
Product Overview
GE Healthcare - 2017911-500-244030 - eBike Comfort Ergometer for Ergometry/Stress Echo
The GE Healthcare eBike Comfort Ergometer is a high-quality stationary exercise bike designed for ergometry and stress echocardiography (stress echo) procedures. Engineered for precision and patient comfort, this ergometer delivers reliable performance in clinical settings, ensuring accurate workload measurements during diagnostic testing.
Features:
- Ergonomic Design: Adjustable seat and handlebars provide optimal patient positioning for comfort during testing.
- Precise Workload Control: Smooth, stepless resistance adjustment for accurate workload increments during stress tests.
- Quiet Operation: Minimizes noise interference during echocardiography procedures.
- Durable Construction: Built to withstand frequent clinical use with a stable, robust frame.
- Compatibility: Designed for seamless integration with GE Healthcare stress echo systems.
- Easy-to-Read Display: Clear metrics for monitoring workload, speed, and time.
Specifications:
- Model Number: 2017911-500-244030
- Type: Stationary ergometer for medical use
- Resistance: Electronically controlled, stepless adjustment
- Workload Range: Adjustable for varying stress test protocols
- Patient Weight Capacity: Supports standard clinical patient loads
- Dimensions: Compact footprint for efficient space utilization
- Power Supply: Standard electrical requirements for medical equipment
Suggested Use:
The eBike Comfort Ergometer is ideal for cardiology departments, stress labs, and echocardiography clinics. It is used for graded exercise testing during stress echocardiography, helping clinicians assess cardiovascular function under controlled physical exertion. Ensure proper patient positioning and calibration before each test for accurate results.
This ergometer is a trusted solution for healthcare professionals requiring dependable performance in diagnostic stress testing.