4 Inch LiNbO3 Wafer Polished 0.25mol% Er Dope Or 5mol% MgO Dope For Optical Applications

Brand Name:CSIMC
Certification:ISO:9001, ISO:14001
Model Number:Lithium Niobate (LiNbO3)
Minimum Order Quantity:5 pcs
Delivery Time:1-4 weeks
Payment Terms:T/T
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Location: Hangzhou Shanghai China
Address: Room 1106, CIBC, No.198 Wuxing Rd, Hangzhou, P.R.China
Supplier`s last login times: within 30 hours
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4 Inch LiNbO3 Wafer Polished 0.25mol% Er Dope Or 5mol% MgO Dope For Optical Applications


Doped LN Wafers: Er:LN, MgO:LN, and Fe:LN

Doping lithium niobate (LN) wafers with specific elements unlocks a world of possibilities in optoelectronics and photonics. Among our cutting-edge offerings are Er:LN, MgO:LN, and Fe:LN wafers, each tailored to meet the unique needs of various applications.

Er:LN wafers, doped with erbium, exhibit exceptional optical properties, making them ideal for optical amplifiers and lasers. Their ability to enhance light emission and absorption opens new avenues in telecommunications and spectroscopy.

MgO:LN wafers, on the other hand, are doped with magnesium oxide, enhancing their ferroelectric and piezoelectric properties. This makes them indispensable in sensors, actuators, and frequency control devices, where precision and reliability are paramount.

Lastly, Fe:LN wafers, doped with iron, offer unique magnetic properties that are crucial in magnetic storage devices and spintronics.

With our range of doped LN wafers, you can choose the perfect fit for your project, whether it's improving optical performance, enhancing ferroelectric behavior, or exploring magnetic applications. Embrace the versatility and performance of doped LN wafers and take your technology to the next level.



Material

3" 4" 6" 8" LN wafer (Saw/Optical grade)

Orientation Cut

Y64°, Y128°, YZ or Customized

Surface finish

single or double sides polish (DLP/SLP/ SSP/DSP all available )

Thickness

0.18/0.25/0.35/0.50/1.00 + mm

TTV

< 1~5µm

BOW

± (25µm ~40um )

Warp

<= 35µm

LTV (5mmx5mm)

<1.5 um

PLTV(<0.5um)

≥98% (5mm*5mm) with 2mm edge excluded

Curie Temp

1142°C±3°C

Edge Rouding

Compl't with SEMI M1.2@with GC800# .regular at C typed

Orientation flats

available, per request

Polished side Ra

Roughness Ra<=5A

Back Side Criteria

Roughness Ra:0.5-1.0µm GC#1000

Cracks, saw marks, stains

None

Single Domain

Completed Polarization/Reduced




FAQs:


  1. Q: Can you accept product customization?

A: Yes, of course. We can fabricate as per your request. In addition, we are so experienced with piezo wafers that we can provide you relevant suggestions if you are not 100% sure about your choice. Besides, we do have some standard wafers in stock, please check with us.


  1. Q: Can you deliver the goods via our courier agent?

A: Yes, we would suggest you go with the courier agent you are most familiar with (DHL, FedEX, UPS etc.). We can ship via your account. And, of course, we will pack the products safely in acceptable size to help you save the shipping cost. If you need us to take care of the freight, it’s also not a problem. We also have good discount with the international courier companies.


Acceptance Check


  • The product is fragile. We have adequately packed it and labeled it fragile. We deliver through excellent domestic and international express companies to ensure transportation quality.

  • After receiving the goods, please handle with care and check whether the outer carton is in good condition. Carefully open the outer carton and check whether the packing boxes are in alignment. Take a picture before you take them out.

  • Please open the vacuum package in a clean room when the products are to be applied.

  • If the products are found damaged during courier, please take a picture or record a video immediately. DO NOT take the damaged products out of the packaging box! Contact us immediately and we will solve the problem well.
China 4 Inch LiNbO3 Wafer Polished 0.25mol% Er Dope Or 5mol% MgO Dope For Optical Applications supplier

4 Inch LiNbO3 Wafer Polished 0.25mol% Er Dope Or 5mol% MgO Dope For Optical Applications

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