Compare Model Drawings, CAD & Specs Availability Price
Optical Breadboard, Double Density, 4.8 mm Skin, 24 x 24 x 2.3 in., 1/4-20
$1,612
Optical Breadboard, Double Density, 4.8 mm Skin, 24 x 36 x 2.3 in., 1/4-20
$1,922
Optical Breadboard, Double Density, 4.8 mm Skin, 24 x 36 x 4.3 in., 1/4-20
$2,495
Optical Breadboard, Double Density, 4.8 mm Skin, 24 x 48 x 2.3 in., 1/4-20
$2,275
Optical Breadboard, Double Density, 4.8 mm Skin, 24 x 48 x 4.3 in., 1/4-20
$2,882
Optical Breadboard, Double Density, 4.8 mm Skin, 36 x 60 x 2.3 in., 1/4-20
$3,380
Optical Breadboard, Double Density, 4.8 mm Skin, 36 x 60 x 4.3 in., 1/4-20
$4,098
Optical Breadboard, Double Density, 4.8 mm Skin, 36 x 72 x 2.3 in., 1/4-20
$3,955
Optical Breadboard, Double Density, 4.8 mm Skin, 36 x 72 x 4.3 in., 1/4-20
$4,815
Optical Breadboard, Double Density, 4.8 mm Skin, 600 x 600 x 59 mm, M6 Holes
$1,612
Optical Breadboard, Double Density, 4.8 mm Skin, 600 x 900 x 59 mm, M6 Holes
$1,922
Optical Breadboard, Double Density, 4.8 mm Skin, 600 x 900 x 110 mm, M6
$2,495
Optical Breadboard, Double Density, 4.8 mm Skin, 600 x 1200 x 59 mm, M6
$2,275
Optical Breadboard, Double Density, 4.8 mm Skin, 600 x 1200 x 110 mm, M6
$2,882
Optical Breadboard, Double Density, 4.8 mm Skin, 900 x 1500 x 59 mm, M6
$3,380
Optical Breadboard, Double Density, 4.8 mm Skin, 900 x 1500 x 110 mm, M6
$4,098
Optical Breadboard, Double Density, 4.8 mm Skin, 900 x 1800 x 59 mm, M6
$3,955
Optical Breadboard, Double Density, 4.8 mm Skin, 900 x 1800 x 110 mm, M6
$4,815

Specifications

  • Type
    Honeycomb Optical Breadboard
  • Modal Damping
    No
  • Broadband Damping
    Constrained layer core, damped working surface, and composite edge finish
  • Working Surface
    3/16 in. (4.8 mm) thick 430 ferromagnetic stainless steel
  • Surface Flatness
    ±0.004 in. (0.1 mm) over any 2 ft. (600 mm) square
  • Bottom Skin Material
    3.4 mm thick carbon steel
  • Microlocks
    No
  • Mounting Holes
    1/4-20
    M6 (M- Versions)
  • Mounting Hole Type
    Cut (not rolled) threads with countersink
  • Mounting Hole Pattern
    Two sets of 1.0 in. (25 mm for M- versions) grids with second grid centered on first grid
  • Mounting Hole Borders
    0.5 in.
    12.5 mm (M- Versions)
  • Hole Sealing Type
    Easy clean conical cup, 0.75 in. (19 mm) deep, non-corrosive high impact polymer material
  • Core Design
    Trussed hexagonal honeycomb, vertically bonded closed cell construction, 0.010 in. (0.25 mm) steel sheet materials, 0.030 in. (0.76 mm) triple core interface

Features

Double Density Mounting Hole Pattern

The unique double-density hole pattern on these optical breadboards provides twice the mounting locations as our standard 1 in. (25 mm) mounting hole grids.  The additional 1 in. (25 mm) mounting hole grid is located at the centers of the first hole grid (see right side of image). Double density breadboards are ideal for applications that require a dense mounting surface, such as laser cooling, atomic physics, quantum optics and spectroscopy.

Standard 1 inch (25 mm) hole grid shown on left.
Double density hole grid shown on right.

SG Optical Breadboard Broadband Damping Performance

The 4.8 mm thick working surface on SG optical breadboards is bonded to a polymeric material that serves to seal the honeycomb core and damp the working surface. The trussed honeycomb is vertically bonded enabling a rigid triple core interface. Although the adhesive is rigid, its broadband damping factor is much higher than that of steel and introduces substantial damping into the core. The side panels are made of a highly damped, epoxy sealed wood composite. Compared to the metal sides used by other breadboard manufacturers, the composite wood sides offer significant damping to the structure and eliminate another source of resonance. The damping performance is evaluated and represented by a compliance curve. For better damping performance, check out our precision grade optical breadboards with patented modal damping.

Trussed Honeycomb Core with Unmatched Stiffness

Our trussed honeycomb core design maximizes an optical breadboard's rigidity to weight ratio by using an additional steel member to bridge across the center of the honeycomb cells. This design enables a triple core interface at each hexagonal honeycomb cell that is vertically bonded along the height of the core. Most manufacturers use 0.010 in. thick steel sheet for a 0.02 in. core interface, while our trussed design provides a 0.03 in. thick triple core interface for a 50% increase in local rigidity. To manufacture a honeycomb core with these advanced features, each piece of corrugated honeycomb steel sheet is emerged in proprietary elastomeric vibration absorbing materials and bonded vertically throughout the height of the core. This labor intensive procedure allows our optical breadboards to offer the highest static and dynamic rigidity, while also increasing point load carrying ability.

Hexagonal Honeycomb Core Advantages

A typical optical breadboard features a sandwich structure consisting of two faceplates and a lightweight honeycomb core for a high stiffness-to-weight ratio. Most manufacturers use a traditional open cell construction that can't match the static rigidity of a Newport optical breadboard. Our honeycomb core design is different than our competitors. We use a high-performance trussed hexagonal shape honeycomb core which offers several advantages over ordinary small-cell round core designs. The hexagonal shape allows for a much greater surface area for bonding together adjacent cores vs. traditional designs that use corrugated wavy steel sheet with minimal contact between adjacent cores. The additional bonding area also improves the strength of our truss design that bisects each hexagonal core.

Grid of Individually Sealed Threaded Mounting Holes

All of our optical breadboards are designed with a grid individually sealed 1/4-20 or M6 threaded mounting holes. Those mounting holes feature 19 mm screw depth. In contrast to some of the other products in the market that has channel for a row of holes or just a polymeric film, our individually sealed holes are more reliable and easier to clean. This is because we believe in the integrity of the product - especially the core. When dust and liquids go into your optical breadboard and table, it may have a long term effect on the damping performance of the product and make the product degrade over time. A good quality breadboard and table lasts long time - tens of years and more. It's a good investment for a product with sealed mounting holes.

Custom Optical Breadboard Options

Newport has a dedicated custom design team for your custom needs. This team has been working with various types of materials, shapes, structures, hole patterns (and many more) for over 40 years, and has served customers across the world in research, aerospace, semiconductor and medical related fields. We are committed to providing an accurate and timely quoting response, professional communications of custom design review and changes, optimum turnaround time, and the highest quality end product. Contact Newport Sales for more information.

Selection Guide

Optical Breadboard Selection Guide

Optical breadboards are selected based on performance criteria like damping and stiffness based on the application. Once the type of breadboard required is determined you can choose the surface size that will support your application.

Precision Grade Scientific Grade Industrial Grade Manufacturing Grade Solid Aluminum
Applications Interferometry and critical high resolution experiments Electro-optical experiments & processes Industrial equipment platforms and less critical experiments Telecom device manufacturing requiring a low cost, high-quality mounting surface Classroom demonstrations and equipment setups
Damping Performance ★★★★★ ★★★★ ★★★ ★★
Stiffness ★★★★★ ★★★★★ ★★★ ★★
Cost $$$$$ $$$$ $$$ $$ $
Working Surface 4.8 mm Thick 430 Stainless Steel 3.4 mm Thick 430 Stainless Steel Anodized Aluminum
Bottom Skin 3.4 mm thick Carbon Steel N/A
Core Design Vertically Bonded Trussed Honeycomb Formed Composite N/A
Side Panels Modal Dampers Highly Damped Composite Wood N/A
Ferromagnetism Magnetic Non-Magnetic
Mounting Holes Tapped and Individually Sealed Tapped Through
Mounting Threads 1/4-20 (M6) on 1 in. (25 mm) Grid
Standard Version PG SG IG TD SA2
Microlock Version PG-ML SG-ML IG-ML N/A N/A
Double Density Hole Version N/A SGD N/A N/A SA2-D
LaserClean Version N/A LC N/A N/A N/A