Olympus OTV-S7PROH-HD-12E autoclavable HD camera head with 1080i imaging, 1.2× eyepiece, one-touch zoom and three programmable switches for endoscopic procedures.
The Olympus OTV-S7PROH-HD-12E is a high-definition camera head designed for Olympus surgical and endoscopic imaging systems. It provides HDTV 1080i image quality, delivering detailed and precise visualization of anatomical structures.
The camera provides detailed images through optimized color reproduction and contrast management. Integrated into a high-definition optical chain, it helps reduce image blur and optical limitations that can affect visualization quality.
When used with Olympus HD laparoscopes, it also helps reduce chromatic aberration to maintain a clear and consistent image, particularly during procedures requiring precise identification of anatomical structures.
The OTV-S7PROH-HD-12E integrates with the CV-180, providing consistent image transmission throughout the video chain. Its integrated video adapter with a locking connector facilitates installation and provides a secure connection during procedures.
The camera is designed to work with 10 mm Olympus HD laparoscopes available with different viewing angles: 0°, 30°, and 45°. This configuration allows the viewing angle to be adapted to the requirements of the procedure while maintaining consistent image quality.
The standard and angled camera head incorporates three control switches, providing quick access to available functions directly from the camera. This design facilitates control during procedures without interrupting the surgeon's workflow.
The OTV-S7PROH-HD-12E is autoclavable, facilitating applicable reprocessing and sterilization cycles. Its internal design is intended to maintain consistent performance, while its ergonomic shape provides comfortable handling, including during extended procedures.
The Olympus OTV-S7PROH-HD-12E combines HDTV 1080i imaging, compatibility with Olympus HD laparoscopes, integrated controls, and an autoclavable design. It provides a practical solution for surgical environments requiring precise visualization and reliable integration into an Olympus video system.
The Olympus OTV-S7PROH-HD-12E is a high-definition camera head designed for Olympus surgical and endoscopic imaging systems. It provides HDTV 1080i image quality, delivering detailed and precise visualization of anatomical structures.
The camera provides detailed images through optimized color reproduction and contrast management. Integrated into a high-definition optical chain, it helps reduce image blur and optical limitations that can affect visualization quality.
When used with Olympus HD laparoscopes, it also helps reduce chromatic aberration to maintain a clear and consistent image, particularly during procedures requiring precise identification of anatomical structures.
The OTV-S7PROH-HD-12E integrates with the CV-180, providing consistent image transmission throughout the video chain. Its integrated video adapter with a locking connector facilitates installation and provides a secure connection during procedures.
The camera is designed to work with 10 mm Olympus HD laparoscopes available with different viewing angles: 0°, 30°, and 45°. This configuration allows the viewing angle to be adapted to the requirements of the procedure while maintaining consistent image quality.
The standard and angled camera head incorporates three control switches, providing quick access to available functions directly from the camera. This design facilitates control during procedures without interrupting the surgeon's workflow.
The OTV-S7PROH-HD-12E is autoclavable, facilitating applicable reprocessing and sterilization cycles. Its internal design is intended to maintain consistent performance, while its ergonomic shape provides comfortable handling, including during extended procedures.
The Olympus OTV-S7PROH-HD-12E combines HDTV 1080i imaging, compatibility with Olympus HD laparoscopes, integrated controls, and an autoclavable design. It provides a practical solution for surgical environments requiring precise visualization and reliable integration into an Olympus video system.