| Specifications | |
|---|---|
Part Number |
|
Curve |
|
T>95%@415-800nm+R>99%@300-390nm,Longpass Dichroic Mirror(LPDM402)
SO3060470
Stock Availability
Custom Size & Mounting
Request Raw Data
Shipment & Delivery
Payment & Quotation
Import, Duties & Customs
This LPDM402 longpass dichroic mirror is designed to reflect ultraviolet (UV) light from 300–390 nm while transmitting a broad spectrum of visible and near-infrared light from 415–800 nm with high efficiency.
It is suitable for UV-induced fluorescence imaging, spectroscopy, and photolithography applications using UV LEDs or mercury lamps. It helps separate beams by wavelength, effectively reflecting shorter-wavelength UV excitation light while allowing the visible emission signal to pass through to the detector with minimal loss (T > 95%).
Key specifications:
- Wavelength / main spec: Reflects 300–390 nm; Transmits 415–800 nm
- Bandwidth / transition spec: Longpass dichroic transition between 390 nm and 415 nm
- Transmission / blocking: T >95% (415–800 nm); R >99% (300–390 nm)
- Format / custom option: Available in mounted (dia 12.5–25 mm) and unmounted (25x36 mm to 35x52 mm) formats
Similar Bandpass Filters
Product Faqs
What does a dichroic mirror do?
A dichroic mirror separates light by wavelength. It is designed to reflect one wavelength range while transmitting another wavelength range.
For example, a dichroic mirror may reflect a laser wavelength while transmitting a visible alignment beam, fluorescence signal, or another laser wavelength. The exact function depends on the reflection band, transmission band, and angle of incidence.
What angle of incidence should I use?
Most dichroic mirrors are designed for a specified angle of incidence, commonly 45°, unless otherwise stated.
Can this dichroic mirror be used to combine or separate laser beams?
Yes. Dichroic mirrors are commonly used for laser beam combining and beam separation when the wavelengths are different enough and the reflection/transmission bands match the system requirement.
For example, one wavelength may be reflected at 45°, while another wavelength passes through the mirror. Before ordering, please confirm the laser wavelengths, AOI, beam size, and required reflection/transmission performance.
Not sure if this product fits your setup?
Whether you are replacing an existing part or building a new system, send us:
- Original part number or target specification
- Required size and quantity
- Application or system goal
We will help check product fit or suggest a stock/custom alternative.