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In this video, Pinpoint Laser Systems provides a complete overview of bore alignment measurement using the Pinpoint Microgage laser alignment system — covering multiple methods, components, and real-world applications for aligning bores of all different diameters and depths in industrial machinery and equipment. Components covered in this video: Standard Microgage Laser: Hard anodized aluminum construction built for rugged work environments, with a 10 arcsecond bubble level for leveling to gravity. Cylindrical Laser: Attaches directly to equipment for bore alignment measurement, with a standard three inch long, one inch diameter removable shank that can be swapped for different configurations. Microgage 2D Receiver: Detects bore position in both X and Y axes with a full range of approximately half an inch, fits directly into bore mounts and adapters for spindle and bore alignment applications. Disc Receiver: A compact, low-profile receiver option well suited for tighter spaces and shorter bore distances. 4D Receiver: Measures angular alignment including pitch and yaw in addition to X and Y positional measurements for full bore alignment analysis. Pinpoint Bore Mounts: Precision tooling balls and spring-loaded ball plungers provide a tight, secure, on-center mechanical fit while accommodating bore tolerances. PRO Display: Color touchscreen with real-time measurement display, onboard applications including the bucking-in program, connectivity for up to four wired and four wireless receivers, and USB output for direct connection to Pinpoint Capture software. Four Axis Mount: Provides pitch, yaw, vertical, and horizontal adjustment for precise laser aiming and can be mounted on a tripod for flexible positioning. Bore alignment methods demonstrated in this video: Gravity Reference Method: The laser is leveled to gravity using the built-in bubble level, establishing a reference line parallel to gravity. The receiver is moved from bore to bore and each bore is adjusted until all are aligned to the common reference line. Bucking-In Method: The laser is aimed straight through two reference bores — typically the front and back bores — using the PRO display's built-in bucking-in program. The operator inputs bore distances and the display calculates the exact pitch and yaw adjustments needed to aim the laser through both reference bores. Once bucked in, all intermediate bores can be zeroed and measured from this established reference line. Cylindrical Laser Averaging Method: The cylindrical laser is attached directly to a bore and rotated while measurements are averaged, canceling out mechanical and fixturing errors to calculate the true center of rotation. Interpolation Method Using Capture Software: Readings are recorded directly into Pinpoint Capture without bucking in. Capture's built-in math calculates the straightness of the bores automatically, saving significant setup time on the factory floor. Bore Straightness Profiling: The full straightness profile of a long bore can be measured using either the bucking-in method or Capture's interpolation calculation to determine bore centerline deviation along its full length. This method is ideal for: Bore alignment and centerline verification Extruder and injection molding bore alignment Engine block and cylinder bore alignment Gearbox and housing bore alignment Pump and compressor bore alignment Any application requiring precise alignment of single or multiple bores in industrial machinery and equipment Made in the USA | Free Technical Support | Custom Mounting Solutions Available Speak with an Alignment Engineer: (978) 532-8001 Learn More: https://pinpointlaser.com/application... Request a Free Alignment Report: https://pinpointlaser.com/resources/a... Schedule a Free Demo: https://pinpointlaser.com/resources/a... #BoreAlignment #LaserAlignment #PrecisionMeasurement #MachineAlignment #PinpointLaser #BoreMeasurement #CylindricalLaser #IndustrialAlignment #ExtruderAlignment #MachineToolAlignment