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OEF9120 SSD 0.65 1080P
 
   
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OEF9120 SSD 0.65 1080P

Super large capacity digital micromirror spatial light modulator

  • Product Code:OEF9120 SSD 0.65 1080P
  • Item:OEF9120 SSD 0.65 1080P
  • Brand:OELABS

     The ultra large capacity digital micromirror spatial light modulator is designed using Xilinx high-performance 

FPGA and multiple parallel solid-state hard disks. It can store massive image data and maximize the advantages 

of DMD's fast flipping speed, which can meet the application requirements in fields such as maskless lithography, 

LDI, computer direct imaging, computational imaging, digital lithography, and high-resolution microscopy. The ultra 

large capacity digital micromirror spatial light modulator uses TI advanced optical control chips, designed for industrial

and scientific research fields, supporting accurate internal and external synchronization signals, and being able to 

closely cooperate with cameras, motion platforms, etc.

Product Details

Chipset

DLPC910+DLP6500

DMDtype

DLP6500

DMDDiagonal Dimension

0.65 inch

DMDPhysical Resolution

1920*1080

DMDMicromirror Size

7.56um

Maximum Frame Rate (Binary)

10940.9Hz

Maximum Frame Rate (8-Bit Grayscale

508.54Hz

Maximum Frame Rate (16 Bit Grayscale)

3Hz

Number Of Stored Pictures

2TB723 10000 value (second value)

4TB1446 10000 Value(Second Value)

8TB2893 10000 Value(Second Value)

Band Range

VIS:400nm-700nm

PC Joggle

Gigabit or 10 Gigabit Ethernet or USB 3.0

Length Of Flexible Cable

31CM

Transition Angle

±12°

DMD Installation Method

0°or 45°

Gray Scale

1-16bit grayscale level can be set, and frame rate

can be set

Software Support

C++matlabLabviewPython

On-Board Memory

Multiple solid-state hard disks work in parallel, with

multiple capacities of 1TB, 2TB, 3TB, 4TB, 8TB,

10TB, 12TB, and so on

Trigger Interface

Two 5.0V output triggers and two 5.0V input triggers

Application Area

Digital imaging lithography, laser marking, computer

direct plate making printers, light field modulation,

 maskless lithography, computational imaging, LDI,

super resolution microscopy, etc

 

 


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