Machining Technology · California
Machining Technology colleges in California
Machining Technology program coverage in California is being verified. Use the filter-first search at /results to find related programs offered in the state.
Machining Technology trains you to turn raw metal into precise parts on lathes, mills, and CNC machines, reading prints and holding tight tolerances to spec.
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What you'll study in a Machining Technology program
- Operating manual engine lathes and milling machines to turn, face, bore, and mill metal stock
- Setting up and running CNC mills and lathes, including workholding, tool offsets, and probing
- Writing and editing G-code and M-code and generating toolpaths with CAD/CAM software
- Reading engineering drawings and applying geometric dimensioning and tolerancing (GD&T)
- Precision measurement and inspection with micrometers, calipers, gauge blocks, and CMMs
- Selecting cutting tools, feeds, speeds, and coolants for steel, aluminum, titanium, and plastics
- Surface, cylindrical, and tool grinding to achieve close tolerances and fine finishes
- Shop mathematics and trigonometry for layout, bolt circles, tapers, and tooling calculations
- Machine-shop safety practices, chip and coolant handling, and routine machine maintenance
Where a Machining Technology degree can lead
- Machinist
- CNC Machinist
- CNC Programmer
- Tool and Die Maker
- Machine Setup Operator
- Quality Control / CMM Inspector
Typical pay: Early-career wages vary by employer, region, and experience (BLS, 2024 machinists median $56,150).
Machining Technology teaches you to produce metal and plastic parts to exact dimensions by cutting, shaping, and finishing stock on manual and computer-controlled equipment. Coursework covers engine and turret lathes, vertical and horizontal milling machines, surface and cylindrical grinders, and drill presses, along with selecting tooling, feeds, speeds, and coolants for materials like steel, aluminum, and titanium. You learn to read engineering drawings and apply geometric dimensioning and tolerancing, measure with micrometers, calipers, gauge blocks, and coordinate measuring machines, and write and edit G-code and M-code for CNC mills and lathes using CAD/CAM software. Where Welding Technology centers on joining and cutting metal with arc and oxyfuel processes, machining is about removing material to a print, and where Mechatronics builds automated systems from sensors and controls, this program focuses on making the parts themselves.
Most people enter machining through a community college certificate or associate program, an apprenticeship, or on-the-job training as a machine operator who advances toward setup and programming roles. The National Institute for Metalworking Skills (NIMS) offers credentials in areas such as measurement, turning, milling, and CNC operations that some employers recognize, and prospective students should verify which credentials a given shop or program values. Work settings range from job shops and tool-and-die operations to aerospace, medical-device, and automotive manufacturing, often with OSHA safety practices on the floor. Pay and demand vary by employer, region, industry, and the certifications and experience you bring, and unlike Mechanical Engineering Technology, which works alongside engineers on design and testing, this is a production trade. A program is preparation for that work, not a guarantee of a specific job or wage.
In federal data for the closely related occupation of machinists, the U.S. Bureau of Labor Statistics reports a 2024 median wage of $56,150 and projects employment to hold roughly steady (a change of about 0.0%) from 2024 to 2034; a high school diploma or equivalent is the typical entry-level education for that occupation. National figures are occupation-wide medians across all experience levels, not starting wages or graduate outcomes.
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