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Dichroic Beam Splitters

Long/Short Wave Pass Filters/Combiners, Dichroic Beam Splitters

 

1. Substrate:

- Material: UV fused silica or BK-7
- Clear Aperture: Larger than 85%
- Surface Quality (Scratch-Dig):

:: 10-5 for regular plate windows
:: 60-40 for super thin plate windows

- Surface Flatness:

:: λ/10 @ 633nm for regular plate windows
:: λ/10 per mm @ 633nm for super thin plate windows

- Thickness:

:: 0.25" ±0.01" for regular plate windows

:: ~0.2mm for BK7 super thin plate windows

- Angular Deviation:

:: ±3 arcmin

- Bevel:

:: < 0.5mm @ 45° typical

 

2. Reflectance:

- 1st Surface: R ≥ 99.5% @0deg or Runp ≥ 99.0% (Unpol), Rs ≥ 99.95% (S-pol), Rp > 98.0% (P-pol) @45deg at user specified wavelength

- 2nd Surface: Anti-reflection coating, Rp ≤ 0.25%, Runp ≤ 0.75%, Rs ≤ 1.3% @ 45°

 

3. Transmittance:

- Long Wave Pass: Tave > 90%

- Short Wave Pass: Tave > 85%

 

4. Damage Threshold:

- 10 J/cm2, 20ns, 20Hz ; 1MW/cm2, CW @ 1064nm

 

Dichroic Plate Beamsplitters are used to separate or combine two different wavelength beams. They can be called Long Wave Pass or Short Wave Pass Filters (Combiner). When the transmittance for a longer wavelength range is maximized, it is called a "Long Wave Pass". The "Short Wave Pass" is when the transmittance for the shorter wavelength range is maximized. Dichroic Plate Beamsplitters are frequently used at (near) normal or 45° incidence. The region of high reflectivity or low transmission of a dichroic beamsplitter is similar to that of a mirror. The transmittance for a longer wavelength range is always higher than that for a shorter wavelength range. So it is strongly recommended to design the optical setup to use the Long Wave Pass for the applications where the light throughput is critical.

Please click "Contact Us" for our contact information, "Email Inquiry" to inquire about the details of the items on this page via email, or "Request for Quote" to request more items not only listed on the page. 

 

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[RPDBS]-[Tpol λ]-[Rpol λ]-[AOI]-[Size]-[Material]

RPDBS Tpol λ (nm) Rpol λ (nm) AOI Size Code Material Price ($ USD)
Standard Wavelengths:
248, 257, 266, 343,
355, 400, 515, 532,
633, 800, 1030,
1064, and 1550


Ts λ, for S-pol
Tp λ, for P-pol
Tunp λ, for unpol.

Ex, Tp1064:
Transmission P-pol
for 1064nm
Standard Wavelengths:
248, 257, 266, 343,
355, 400, 515, 532,
633, 800, 1030,
1064, and 1550


Rs λ, for S-pol
Rp λ, for P-pol
Runp λ, for unpol.

Ex, Rs633:
Reflection S-pol
for 633nm
0 or 45 [100]
(1.0")
[FS] $285 (<300nm)
$265 (<400nm)
$225 (≥400nm)
[BK] $210
[150]
(1.5")
[FS] $375 (<300nm)
$340 (<400nm)
$300 (≥400nm)
[BK] $245
[200]
(2.0")
[FS] $470 (<300nm)
$450 (<400nm)
$410 (≥400nm)
[BK] $350

Example: RPDBS-Tp532-Rs633-45-150-FS

Regular Plate Dichroic Beamsplitter + Transmitting P-pol 532nm + Reflecting S-pol 633nm + Angle of Incidence 45° + 1.50" + Fused silica glass.

 

[STDBS]-[Tpol λ]-[Rpol λ]-[AOI]-[Size]

STDBS Tpol λ (nm) Rpol λ (nm) AOI Size Code Price
(USD)
Standard Wavelengths:
355, 400, 515, 532, 633,
800, 1030, 1064, and 1550



Ts λ, for S-pol
Tp λ, for P-pol
Tunp λ, for unpol.

Ex, Tp532:
Transmission P-pol
for 532nm
Standard Wavelengths:
355, 400, 515, 532, 633,
800, 1030, 1064, and 1550


Rs λ, for S-pol
Rp λ, for P-pol
Runp λ, for unpol.

Ex, Rs1064:
Reflection S-pol
for 1064nm
0 or 45 [025]
(25mm)
$195

Example: STDBS-Tp532-Rs633-45-025

Super Thin Plate Dichroic Beamsplitter + Transmitting P-pol 532nm + Reflecting S-pol 633nm + Angle of Incidence 45° + 25mm dia BK7 glass.

 

 

NOTE

1. The wavelength described in the price section of UV fused silica (-FS) indicates the "Rλ".
2. Any wavelengths can be supplied on request. Please contact us for the pricing quote.
3. There could be some "minimum order quantity" in case of custom specifications. Please check it with us.
4. The Tλ and the Rλ shouldn't be too close. Please check this up with us.
5. Please describe your custom requirements on the RFQ form.

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