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Model
|
LDTGJ2-50
|
LDTGJ2-76
|
LDTGJ2-102
|
L
|
50
|
76
|
102
|
Net Weight
|
0.025kg
|
0.1kg
|
0.12kg
|
The 360° Rotatable Optical Rod Holder offers unparalleled precision and versatility for your optical setups. Designed to provide stable, adjustable support, this holder allows the optical rods to rotate around their axis without altering other positioning parameters, ensuring accurate and reliable performance in various applications.
Key features of this product include:
360° Rotation: The holder allows the support rod to rotate around its axis freely without affecting other positioning, enabling dynamic adjustments without disrupting the setup.
Precision Bearings: The rotating section is connected to the fixed part using high-quality precision bearings, ensuring smooth rotation with minimal friction and high accuracy.
12mm Center Hole: The holder features a 12mm center hole designed to work seamlessly with a series of optical support rods, offering compatibility and flexibility for different optical systems.
V-Shaped Groove for Height Adjustment: The center hole is equipped with a precisely machined V-shaped groove, ensuring that the rod height can be adjusted without shifting other positional parameters. This ensures stable and reliable alignment during adjustments.
Elastic Steel Ball Design: The steel ball mechanism provides additional support and stability, allowing the optical rod to remain securely in the V-shaped groove even when not fully tightened.
Secure Locking Mechanism: Both the support rod and the rotating section can be securely locked in place, preventing unwanted movement or misalignment.
M6 Threaded Base: The bottom of the holder features M6 threaded holes, making it easy to connect with other optical components, such as optical benches, holders, or stages, offering more flexibility in assembling complex optical systems.
This optical rod holder is ideal for optical research, system integration, and precision experiments, where adjustable positioning and smooth, accurate movement are crucial. It is perfect for use in laboratory settings, research facilities, and industrial applications, providing stability and ease of use when building and adjusting intricate optical systems.