مجموعة من 6 وسادات مضادة للاهتزاز من Pangda لتركيب التلسكوب وحامل ثلاثي القوائم للكاميرا، وسادات قمع الاهتزاز لتلسكوب علم الفلك ملحقات مراقبة التصوير الفوتوغرافي الطبيعي
6 Pad for Complete Support: sold as 6 pack 2.95 inches individual pads, these anti-vibration pads provide comprehensive stability; They accommodate most standard tripod feet sizes and work effectively on various surfaces including concrete, grass, and indoor flooring
Significant Vibration Reduction Performance: engineered to decrease vibration amplitude and reduce stabilization time by absorbing energy from external sources; This minimizes image shake caused by wind, ground vibrations, or accidental contact with equipment during observation or photography sessions
Multi-surface Compatibility and Protection: prevents tripod feet from sinking into soft ground like soil or sand while also protecting hard surfaces from scratches; The pads create a stable base on uneven terrain and prevent dirty tripod feet from contacting clean surfaces
Portable and Durable Construction: compact design allows for easy transportation in camera bags or equipment cases; Made from weather-resistant materials that withstand outdoor conditions including moisture, UV exposure, and temperature variations without degradation
Application Across Multiple Disciplines: suitable for astronomical observation, nature photography, telescopic viewing, and precision imaging work; The pads enhance stability for various equipment including telescope mounts, camera tripods, and surveying instruments
وصف
Features:
Enhanced Anti-Slip and Shock Absorption
The concentric circular pattern design provides excellent grip on smooth surfaces while the rubber composition absorbs vibrations. This combination prevents equipment movement while effectively damping external vibrations
Practical Design for Various Tripod Types
Center groove accommodates different tripod foot sizes and shapes. The orange rubber buffer strip provides additional vibration damping while the overall design maintains equipment stability during extended use periods