640×512-15B InGaAs Shortwave Infrared Imaging Camera     


The movement resolution is 640×512, the wavelength is 0.9~1.7μm, and the pixel spacing is 15μm. The movement performance is stable and has a high performance-to-noise ratio. The movement provides simple commands to set frame rate, data depth, exposure time, bad pixel correction, non-uniform correction and other functions,Provide customers with a dedicated control interface.

 Data output interface: GIGE Network port

● Support exposure time manual exposure and automatic exposure

● Support manual gain and automatic gain

● Support switching between internal and external triggers

● Support GIGE network port and CVBS (PAL/NTSC format can be set)

● Supports Gamma correction

● Smooth image, uniform detail and high resolution

● Hirose12Pin power interface +12V power supply




Product model


Name Model Price
640×512-15B InGaAs Shortwave Infrared Imaging Camera   [PDF]  [RFQ]

PL-640×512-15B
(Stock NO. Not entered)
[Please inquire]


Parameter



Features

● ROI window opening: The window can be opened freely;

● Frame rate: full frame, 1-60Hz configurable;

● Exposure time is adjustable: manual and automatic modes are optional, 100μs~1s can be set arbitrarily; 

● Image frame rate trigger optional: fixed frame rate, free frame rate, level trigger, edge trigger;

● Gain control: Manual and automatic modes are optional. Manual mode supports low gain, medium gain and high gain.; 

● Trigger mode selection: Free Run & external trigger;

● Image GIGE network port and CVBS (PAL/NTSC format can be set) output;

● Image Processing:

 Gamma transformation: enhance image brightness and improve contrast;

Dynamic blind element correction: real-time compensation for blind elements of the chip;

Non-uniformity correction

Detail enhancement

● Load and save movement working parameters;

● Reset;

Specifications

Serial number

Index

Index parameter

1

Sensor type

InGaAs

2

Pixel size

15μm

3

Spectral characteristics

0.9µm to 1.7µm

4

resolution

640×512

5

Linear dynamic range

≥50dB

6

Power interface

Hirose HR10- 10R- 12SA

7

Power interface

GIGE Network   port

8

Lens mount

1-inch C mount

9

Operating Voltage

Input range 10- 14V  TypDC+12V

10

Machine power consumption

<5W@12VTEC off

11

camera size

50mm×50mm×65mm

12

Camera weight

≤200g

13

Refrigeration method

TEC1 Refrigeration

Dimensions and Pin definitions

t2.png


Data and communication interface: GIGE network port and CVBS。

Power interface: Power the camera through a 12-pin Hirose connector, model: Hirose HR10- 10R-12SA. See the figure for the location of each interface on the rear panel.


Power interface model: Hirose HR10-10R-12SA


t3.png


Power is supplied to the camera via a 12-pin Hirose connector (a separate dedicated cable is required to use the external trigger function). Pin descriptions are shown in the table.

Pin

Definition

Note

pin 1

DGND

Digitally

pin 2

DGND

Digitally

pin 3

SYN_TTL_IN

Sync signal input

pin 4

DGND

Digitally

pin 5

SYN_LVDS_IN+

Non-inverting low voltage differential signal input

pin 6

SYN_LVDS_IN-

Reverse   low voltage differential signal input

pin 7

12VIN

12V power input

pin 8

12VIN

12V power input

pin 9

SYN_IN+

External sync input positive

pin 10

SYN_IN-

External sync input negative

pin 11

SYN_OUT+

External sync output positive

pin 12

SYN_OUT-

External sync output negative

The camera uses power input DC+12±1V for power supply, and the power supply current must be greater than or equal to 1A.

Note: Before powering on, you must check whether the power input voltage is correct. Unused wire harnesses and reserved wire harnesses in the power cord must be insulated to avoid short circuits.






Application

● Semiconductor testing industry: solar cell testing, silicon wafer crack detection, silicon wafer content testing, etc.;

● Color sorting and food sorting industry: detection of high-end agricultural products (tea, tobacco, export fruits), moisture content, and sugar content;

● Laser and communication: laser detection, laser spot measurement, adaptive optics, space optical communication, etc.;

● Drone aerial photography: through clouds, haze, smoke, water mist, all-weather monitoring in both day and night;



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