Λεπτομέρειες προϊόντων
Τόπος καταγωγής: Κίνα
Μάρκα: ZMSH
Πιστοποίηση: rohs
Αριθμό μοντέλου: Οπτικά παράθυρα από γυαλί κουαρτζού
Όροι πληρωμής και αποστολής
Ποσότητα παραγγελίας min: 10
Τιμή: by case
Συσκευασία λεπτομέρειες: Πακέτο στο δωμάτιο καθαρισμού 100 βαθμών
Χρόνος παράδοσης: 5-8weeks
Όροι πληρωμής: T/T
Δυνατότητα προσφοράς: 1000 κομμάτια το μήνα
Υλικό: |
Συσταμένο πυρίτιο |
Δάχος: |
8.2 χιλ., 8.3 χιλ. |
Διάμετρος/μέγεθος: |
Προσαρμόσιμη |
Εύρος μετάδοσης: |
190 nm ~ 2500 nm |
Παράλληλος: |
< 3 λεπτά τόξου |
Επιλογές επικάλυψης: |
Επίστρωση AR, ανακλαστική επίστρωση, κ.λπ. |
Υλικό: |
Συσταμένο πυρίτιο |
Δάχος: |
8.2 χιλ., 8.3 χιλ. |
Διάμετρος/μέγεθος: |
Προσαρμόσιμη |
Εύρος μετάδοσης: |
190 nm ~ 2500 nm |
Παράλληλος: |
< 3 λεπτά τόξου |
Επιλογές επικάλυψης: |
Επίστρωση AR, ανακλαστική επίστρωση, κ.λπ. |
Fused Silica Optical Windows Thickness 8.2mm & 8.3mm JGS1 JGS2
ZMSH specializes in providing high-precision fused silica optical windows manufactured from high-purity JGS1/JGS2-grade quartz material, ensuring exceptional transmission performance across the ultraviolet to near-infrared spectrum (190nm–2500nm). Our quartz windows feature stringent thickness control (8.2mm and 8.3mm, tolerance ±0.1mm), making them ideal for high-accuracy optical systems. Customizable in dimensions, coatings, and surface treatments, they meet rigorous demands in laser technology, spectroscopic analysis, semiconductor fabrication, and scientific research. With advanced machining technologies and a strict quality management system, every window guarantees high optical homogeneity, low thermal expansion coefficient, and superior high-temperature resistance, ensuring reliable performance in extreme environments.
Parameter | 8.2mm Window | 8.3mm Window |
Material | Fused Silica (JGS1/JGS2) | Fused Silica (JGS1/JGS2) |
Thickness Tolerance | ±0.1mm | ±0.1mm |
Transmittance | >93% (200nm–2500nm) | >93% (200nm–2500nm) |
Surface Quality | 60/40 (upgradable to 20/10) | 60/40 (upgradable to 20/10) |
Parallelism | <3 arcmin | <3 arcmin |
Coating Options | UV/Vis/NIR AR coatings | UV/Vis/NIR AR coatings |
Typical Applications | High-power lasers, spectrometers | Semiconductor lithography, vacuum viewports |
(Note: Additional parameters such as diameter, chamfering, etc., are customizable upon request.)
1. High Transmittance
· Broadband transmission from UV to NIR (190nm–2500nm), particularly optimized for deep ultraviolet (DUV) and infrared optical systems.
· Low absorption rate minimizes energy loss, enhancing system efficiency.
2. Exceptional Thermal Stability
· Ultra-low thermal expansion coefficient (5.5×10⁻⁷/°C) and high-temperature resistance (~1200°C), suitable for high-power lasers and extreme thermal conditions.
· Excellent thermal shock resistance withstands rapid temperature fluctuations without cracking.
3. Superior Chemical Inertness
· Resistant to strong acids, alkalis, and organic solvents, ideal for corrosive environments.
· Optional surface treatments (e.g., AR coatings, hydrophobic layers) for specialized applications.
4. High Laser Damage Threshold
· Compatible with high-energy laser systems (e.g., CO₂ lasers, UV lasers) due to exceptional laser-induced damage resistance.
· Custom optical coatings (e.g., AR, HR) available to optimize transmission/reflection at specific wavelengths.
5. Precision Optical Performance
· Surface flatness up to λ/4 (@632.8nm) and parallelism <3 arcmin, meeting stringent optical alignment requirements.
· Low bubble/impurity content ensures optical uniformity, minimizing scattering and wavefront distortion.
1. Laser Optical Systems
· Laser cavity windows, protective optics for high-power laser cutting/welding, and medical laser devices.
· Preferred for UV lasers (e.g., excimer lasers) due to excellent UV durability.
2. Spectroscopic Instrumentation
· Transmission windows for UV-Vis spectrophotometers and FTIR spectrometers, ensuring high signal-to-noise ratios.
· Vacuum ultraviolet (VUV) applications, including synchrotron radiation detection.
3. Semiconductor & Lithography
· Optical components for lithography machines and wafer inspection systems, resistant to DUV radiation and thermal deformation.
· Critical for mask protection and projection optics in advanced nodes.
4. Scientific Research & High-Energy Physics
· Observation windows for particle detectors and synchrotron facilities, combining radiation resistance with high transparency.
· Sealed viewports for vacuum/high-pressure environments (e.g., electron microscopes, plasma experiments).
5. Aerospace & Medical Devices
· Protective windows for aerospace optical sensors, enduring extreme temperatures and cosmic radiation.
· Biocompatible components for endoscopes and medical laser therapy systems.
ZMSH offers comprehensive customization services for fused silica prisms, including right-angle, pentagonal, and wedge prisms, tailored for laser alignment, beam steering, and spectroscopic applications. Utilizing high-purity JGS1/JGS2 material, our prisms deliver low absorption and high transmission (190nm–2500nm), with precision angle machining (±30 arcsec tolerance) and λ/10 surface polish. Clients may specify dimensions, angles, and coatings (e.g., UV AR, IR broadband). We support rapid prototyping, batch production, and ISO-compliant or shock-resistant packaging to ensure safe delivery. Equipped with CNC machining and Zygo interferometer testing, we guarantee fast turnaround and rigorous QC to meet the exacting standards of research, industrial, and defense sectors.
1. Q: What is the transmission range of 8.2mm/8.3mm fused silica windows?
A: Our 8.2mm/8.3mm fused silica windows provide excellent transmission from 190nm to 2500nm.
2. Q: What are the main applications of 8.3mm thick quartz windows?
A: The 8.3mm quartz windows are mainly used in laser systems, UV spectroscopy and semiconductor equipment.
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