Waveplate Selection Guide

Why Choose Meadowlark Waveplates?

Industry-Leading Metrology –
Our proprietary measurement techniques provide you with extremely accurate calibration measurements for every waveplate/retarder we ship, including each quarter wave retarder manufactured to precise specifications.

High Quality and Precision –
When selecting a waveplate, key performance features must be considered; examples of these include wavelength dependence, temperature sensitivity, acceptance angle, response time and aperture size. Our waveplate selection chart provides an at-a-glance view of our standard retarders; as always, Meadowlark solutions engineers are happy to assist you in the process of selecting a retarder that works best for your application.

Custom Solutions –
Space flight retarders, superachromatic retarders from 500 to 1200 nm, retarders attached to beamsplitter cubes, retarder coatings applied to lenses and mirrors, variable retarders with switching speeds in picoseconds, ferroelectric liquid crystal retarders switching at low voltages from 50 to 100 microseconds, and more.

Mounting
Size
Wavelength (nm)
Click component name to open its page
Filters Sort results
Reset Apply
Component
Mount
Size
Wavelength
*TWD
Clear Aperture
Retardance
Thickness
Lead Time
Mounted
⋅
Unmounted
0.500 in. (12.70 mm)
⋅
1.000 in. (25.40 mm)
1190-1660
⋅
395-465
⋅
412-475
⋅
475-590
⋅
500-650
⋅
600-840
⋅
600-900
⋅
690-2050
≤ λ/4
≥ 0.400 in. (10.16 mm) centered
λ/2
⋅
λ/4
Please inquire
Please Inquire
Mounted
⋅
Unmounted
Specify size
Custom
300 - 2500
Please inquire
>90%
Custom
Varies
Varies
Mounted
⋅
Unmounted
0.500 in. (12.70 mm)
⋅
1.000 in. (25.40 mm)
⋅
2.000 in. (50.80 mm)
1064
⋅
1550
⋅
532
⋅
633
⋅
670
⋅
780
⋅
850
⋅
Specify λ 400-1800 in Checkout
≤ λ/5
⋅
≦λ/3 (Typical @ 633 nm)
0.400 in. (10.1 mm)
⋅
0.700 in. (17.7 mm)
⋅
0.800 in. (20.3 mm)
⋅
1.200 in. (30.50 mm)
⋅
1.600 in. (40.64 mm)
Specify in Checkout
⋅
λ/2
⋅
λ/4
0.130 in. (3.30 mm)
⋅
0.250 in. (6.35 mm)
⋅
0.260 in. (6.60 mm)
⋅
0.350 in. (8.89 mm)
⋅
0.500 in. (12.70 mm)
⋅
0.510 in. (12.95 mm)
1 - 2 Days
Unmounted
0.500 in. (12.70 mm)
⋅
0.500 x 0.500 in. (12.70 x 12.70 mm)
⋅
1.000 in. (25.40 mm)
⋅
1.000 x 1.000 in. (25.40 x 25.40 mm)
⋅
1.500 in (38.10 mm)
⋅
1.500 x 1.500 in. (38.10 x 38.10 mm)
⋅
2.000 in. (50.80 mm)
⋅
2.000 x 2.000 in. (50.80 x 50.80 mm)
Specify λ 400-1800 in Checkout
Please inquire
0.450 in. (11.4 mm)
⋅
0.450 x 0.450 in. (11.4 x 11.4 mm)
⋅
0.90 x 0.90 in. (22.9 x 22.9 mm)
⋅
0.900 in. (22.9 mm)
⋅
1.35 x 1.35 in. (34.3 x 34.3 mm)
⋅
1.350 in. (34.3 mm)
⋅
1.80 x 1.80 in. (45.7 x 45.7 mm)
⋅
1.800 in. (45.7 mm)
Custom
⋅
λ/2
⋅
λ/4
Please inquire
1 - 2 Days
⋅
2 weeks
Mounted
⋅
Unmounted
0.500 in. (12.70 mm)
⋅
1.000 in. (25.40 mm)
1064
⋅
1550
⋅
532
⋅
633
⋅
670
⋅
780
⋅
850
⋅
Specify λ 400-1800 in Checkout
≤ λ/2
0.400 in. (10.16 mm)
⋅
0.700 in. (17.78 mm)
⋅
0.800 in. (20.3 mm)
λ/2
⋅
λ/4
0.140 in. (3.56 mm)
⋅
0.250 in. (6.35 mm)
⋅
0.280 in. (7.11 mm)
⋅
0.350 in. (8.9 mm)
6 weeks
Mounted
⋅
Unmounted
0.500 in. (12.70 mm)
⋅
1.000 in. (25.40 mm)
⋅
2.000 in. (50.80 mm)
1060
⋅
1400
⋅
545
⋅
630
⋅
720
⋅
840
⋅
Specify λ 400-1800 in Checkout
1200-1650
⋅
485-630
⋅
555-700
⋅
630-835
⋅
735-985
⋅
920-1240
⋅
Design Dependent
Please inquire
0.400 in. (10.1 mm)
⋅
0.700 in. (17.7 mm)
⋅
0.800 in. (20.3 mm)
⋅
1.200 in. (30.50 mm)
⋅
1.600 in. (40.64 mm)
Custom
⋅
λ/2
⋅
λ/4
0.130 in. (3.30 mm)
⋅
0.140 in. (3.56 mm)
⋅
0.250 in. (6.35 mm)
⋅
0.260 in. (6.60 mm)
⋅
0.280 in. (7.11 mm)
⋅
0.350 in. (8.89 mm)
⋅
0.500 in. (12.70 mm)
1 - 2 Days
Mounted
⋅
Unmounted
0.500 in. (12.70 mm)
⋅
1.000 in. (25.40 mm)
Specify Both Wavelengths in Checkout
Please inquire
0.400 in. (10.1 mm)
⋅
0.700 in. (17.7 mm)
⋅
0.800 in. (20.3 mm)
Please inquire
0.140 in. (3.56 mm)
⋅
0.270 in. (6.90 mm)
6 weeks
Mounted
⋅
Unmounted
1.000 in. (25.40 mm)
⋅
2.000 in. (50.80 mm)
420-1100
⋅
800-1700
≤λ (PV)
⋅
≤λ/2 (PV)
0.700 in. (17.78 mm)
⋅
0.800 in. (20.3 mm)
⋅
1.200 in. (30.50 mm)
⋅
1.600 in. (40.64 mm)
λ/2
⋅
λ/4
0.270 in. (6.90 mm)
⋅
0.360 in. (9.10 mm)
⋅
0.500 in. (12.70 mm)
⋅
0.510 in. (12.95 mm)
2-3 weeks

request a custom quote or get technical answers

kelly@meadowlark.com

Recent Posts

Meadowlark Optics invests in CU Boulder’s Quantum Scholars

Meadowlark Optics invests in CU Boulder’s Quantum Scholars   In a recent gift to the…

8 months ago

Spatial Light Modulation Principles

Download Principles Meadowlark Optics' award-winning spatial light modulators (SLMs) provide precision retardance control for spatially…

1 year ago

Optogenetics Application Note

SummaryOverview: Despite extensive research, brain function and neurological diseases like Huntington disease are still poorly…

1 year ago

Pulse Shaping Application Note

SummaryPulse ShapingOverview: By modulating the phase and/or amplitude of the spectral components of broadband femtosecond…

1 year ago

[NEW] Ultra-High Power SLM

Meadowlark Optics has demonstrated a liquid crystal on silicon (LCoS) spatial light modulator (SLM) operating…

1 year ago

Waveplate Retardance Metrology: The Basics and Beyond

Understanding Waveplate RetardanceA waveplate is an essential optical component used to control and measure the…

2 years ago

This website uses cookies.