Type
XCP® and BAI Replacement Parts | Aiming Rings
XCP® and BAI Replacement Aiming Rings are precision-engineered, color-coded rings designed to securely align X-ray sensors (film, PSP plates, or digital sensors) with the X-ray beam, ensuring accurate positioning and image consistency. These rings are available individually in various anatomical orientations—Anterior, Bitewing, Endodontic, and Posterior—and are fully compatible with modular XCP-DS systems
- Each aiming ring is assigned a distinct color for quick identification and hassle-free assembly:
-
Modular & Autoclavable
Designed as standalone components, these rings easily attach to replacement arms and bitepieces, then undergo fully autoclave-safe sterilization. -
Enhanced Imaging Accuracy
Ensures proper alignment between the X-ray source and sensor, minimizing cone cutting and positioning errors, while improving diagnostic reliability. -
Durable & Reusable Construction
Built from high-quality materials, the rings withstand frequent reuse in clinical settings without compromising performance.
XCP® and BAI Replacement Aiming Rings are precision-engineered, color-coded rings designed to securely align X-ray sensors (film, PSP plates, or digital sensors) with the X-ray beam, ensuring accurate positioning and image consistency. These rings are available individually in various anatomical orientations—Anterior, Bitewing, Endodontic, and Posterior—and are fully compatible with modular XCP-DS systems
- Each aiming ring is assigned a distinct color for quick identification and hassle-free assembly:
-
Modular & Autoclavable
Designed as standalone components, these rings easily attach to replacement arms and bitepieces, then undergo fully autoclave-safe sterilization. -
Enhanced Imaging Accuracy
Ensures proper alignment between the X-ray source and sensor, minimizing cone cutting and positioning errors, while improving diagnostic reliability. -
Durable & Reusable Construction
Built from high-quality materials, the rings withstand frequent reuse in clinical settings without compromising performance.