Spur Gears

Straight-tooth cylindrical gears transmitting motion and power between parallel shafts with high efficiency, simple design, and reliable performance in moderate-speed applications.

Inch Crossed Gears - 14 1/2° Pressure Angle

Inch Crossed Gears - 14 1/2° Pressure Angle

Imperial crossed-axis gears with 14.5° pressure angle for precise motion transfer between skewed shafts.

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Metric Crossed Gears - 20° Pressure Angle

Metric Crossed Gears - 20° Pressure Angle

Gears designed to transmit motion between non-parallel, non-intersecting shafts with 20° pressure angle.

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Metric Parallel Gears - 20° Pressure Angle

Metric Parallel Gears - 20° Pressure Angle

Parallel-axis gears with 20° pressure angle, transmitting torque and motion efficiently between parallel shafts.

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Plastic Gears - 14 1/2° Pressure Angle

Plastic Gears - 14 1/2° Pressure Angle

Plastic gears with a 14 1/2° pressure angle are designed for precise and smooth motion transfer, featuring dimensions that provide efficient gear engagement and are often used in applications requiring quiet and lightweight components.

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Plastic Inch Gears - 20° Pressure Angle

Plastic Inch Gears - 20° Pressure Angle

Plastic inch gears with a 20° pressure angle are designed to mesh smoothly and efficiently, providing reliable motion transfer in mechanical systems, with dimensions and specifications based on inch units.

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Plastic Metric Gears - 20° Pressure Angle

Plastic Metric Gears - 20° Pressure Angle

Plastic metric gears with a 20° pressure angle are designed for precise and efficient motion transfer in mechanical systems, with dimensions and specifications adhering to metric standards.

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Metal Inch Gears - 20° Pressure Angle

Metal Inch Gears - 20° Pressure Angle

These gears are designed and measured in inch-based units (as opposed to metric gears) and are commonly made from metals like steel, brass, bronze, or aluminum.

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Drawn Pinion Wire

Drawn Pinion Wire

Continuous gear-toothed wire stock, cold-drawn for strength and precision, easily cut into multiple identical pinions for manufacturing.

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Gear Rack

Gear Rack

Linear gear with straight teeth designed to mesh with a spur gear, converting rotary motion into linear motion or vice versa, widely used in automation and positioning systems.

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Internal Gears

Internal Gears

Gears with teeth cut on the inner surface, meshing with external gears for compact power transmission in enclosed systems.

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Standard Spur Gears

Standard Spur Gears

Spur gears are one of the simplest and most widely used types of gears. They are characterized by their straight teeth that are parallel to the axis of rotation.

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Stem Pinions

Stem Pinions

Small precision pinions cut directly on shafts, widely used in compact mechanical assemblies and precision drives.

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Change Gears

Change Gears

Interchangeable gears used in machine tools to alter speed or feed rates, enabling flexible and precise operational adjustments.

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Metal Metric Gears - 20° Pressure Angle

Metal Metric Gears - 20° Pressure Angle

These gears are widely used in mechanical systems to transmit rotary motion and power between shafts. Just like inch-based gears, metal metric gears come in various types and materials.

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Metal Inch Internal Gears - 20° Pressure Angle

Metal Inch Internal Gears - 20° Pressure Angle

These gears mesh with external gears and are typically used in applications where compact design and space efficiency are important.

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Metal Metric Internal Gears - 20° Pressure Angle

Metal Metric Internal Gears - 20° Pressure Angle

These gears are primarily used in applications requiring compact design, such as planetary gear systems, where space efficiency and high torque transmission are essential.

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Metal Gears - 14 1/2° Pressure Angle

Metal Gears - 14 1/2° Pressure Angle

These gears are designed for precision applications where smooth and efficient gear meshing is required. The pressure angle is the angle between the line of action (the direction in which force is transmitted) and the line perpendicular to the gear tooth's surface.

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