Key Features
* TV Connectivity
* M-DISC Support
* Silent Play
* Super Multi Compatibility
* Win 10 & MAC OS Compatible
* 8x Writing Speed
* Slimmer to Slimmest
* Lighter to Lightest
Tech Specs
* Max Speed -
DVD 8x DVD+/-R Write 6x DVD+/-R DL Write 5x DVD-RAM Write
CD 24x CD-R Write
* Host interface - USB 2.0 (3.0 compatible)
* Dimentions (W x H x D) - 141 mm x 14 mm x 136.5 mm
* Net Weight - 200 g
* MTTF(Mean Time To Failure) - 60,000 POH (Power On Hours)
Key Features
* Android Connectivity
* TV Connectivity
* M-DISC Support
* Silent Play
* Super Multi Compatibility
* Win 10 & MAC OS Compatible
* 8x Writing Speed
* Slimmer to Slimmest
* Lighter to Lightest
Tech Specs
* Max Speed -
DVD 8x DVD+/-R Write 6x DVD+/-R DL Write 5x DVD-RAM Write
CD 24x CD-R Write
* Host interface - USB 2.0 (3.0 compatible)
* Dimentions (W x H x D) - 141 mm x 14 mm x 136.5 mm
* Net Weight - 200 g
* MTTF(Mean Time To Failure) - 60,000 POH (Power On Hours)
Key Features
* 15W fast charging
* Android iPhone Fast charging
* 3 Ways charging method (Portrait / Land scape / Pad)
* Intelligent F.O detection
* USB C type
Key Features
* 15W fast charging
* Android iPhone Fast charging
* Intelligent *F.O detection
* USB C type Connector (Horizontal)
* F.O : Foreign Object
Key Features
* 15W fast charging
* Android iPhone Fast charging
* Intelligent *F.O detection
* USB C type Connector (Vertical)
* Built in type
* F.O : Foreign Object
INDIUM PHOSPHIDE (InP) WAFERS are semiconductor materials made of indium phosphide, a compound semiconductor that is widely used in high-frequency and optoelectronic applications. Due to its efficient electron mobility and direct bandgap properties, InP is favored for devices such as:
High-speed electronics
Laser diodes
Photodetectors
Telecommunications applications, including optical fiber communication
We offer the following InP Wafers:
Undoped InP Wafers: These are pure InP with no intentional doping, used in various applications where intrinsic properties are required.
N-type InP Wafers: Doped with donor impurities (such as tellurium) to increase electron concentration, useful in transistors and high-speed electronics.
P-type InP Wafers: Doped with acceptor impurities (such as zinc) to create holes in the semiconductor, used in light-emitting devices and other optoelectronics.
InP Substrates: Used as a base for growing other semiconductor materials in heterostructures for various applications.
InP Membrane Wafers: Thin layers of InP used for specific applications, including applications in flexible electronics and advanced photonic devices.
InP-based Quantum Dot Wafers: Engineered to create quantum dots that can be used in photonic and optoelectronic devices for enhanced performance.