ElectraStim Silicone Noir Flexible Sound 5mm – Advanced Bi-Polar Urethral Probe
Discover the innovative ElectraStim Silicone Noir Flexible Sound 5mm, a precision-engineered bi-polar urethral probe designed for use with all ElectraStim electro-stimulation systems. Crafted from premium medical-grade conductive silicone, this model seamlessly adapts to the user's unique anatomy, offering flexibility and comfort during use. Its advanced bi-polar design allows the probe to operate independently, eliminating the need for an additional accessory to complete the circuit—an ideal solution for those seeking an efficient, streamlined experience.
- Constructed from proprietary, body-safe conductive silicone for optimal durability and hygiene.
- Features a 5mm diameter and nearly 15 cm (6 inches) of insertable length, accommodating a wide range of users.
- Measurement notches are incorporated at 2.5 cm (1 inch) intervals, enabling precise control and easy monitoring of depth during application.
- Super flexible shaft ensures comfort and adaptability for various anatomical shapes.
- Bi-polar configuration allows for solo use without the need for a secondary electrode, simplifying setup and operation.
- Compatible with all ElectraStim stimulators, offering versatile integration into your existing system.
- Can be used independently of electro-stimulation if desired.
Key Features:
- Brand: ElectraStim
- Model: Silicone Noir Flexible Sound
- Diameter: 5 mm
- Insertable length: approx. 15 cm (5.9 inches)
- Material: Medical-grade conductive silicone
- Design: Bi-polar (no secondary accessory required)
- Measurement notches: Yes, every 2.5 cm (1 inch)
- Color: Noir (Black)
- System compatibility: All ElectraStim stimulators
- Cleaning: Easy to sanitize with standard toy cleaners or mild soap and water
Advantages:
- High flexibility for a personalized anatomical fit
- Bi-polar system enables standalone use
- Clear measurement notches for safe, precise control
- Medical-grade silicone for superior safety and comfort
- Seamless compatibility with a wide range of stimulation systems