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MotionPro: X Series Intensified



Each model in the X series is available as an intensified camera.

CMOS image sensor
The X3 delivers a great combination of frame rate and resolution. 1.3 million pixels capture the smallest details in the largest fields of view.

The X4 delivers the ultimate combination of frame rate and resolution with 512x512 array and 10,000 frames per second.

The X5 delivers 4 million, 7µ pixels to capture the smallest details in the largest fields of view.

Short-interframe time
Double-exposure mode utilizes a 100 nanosecond interframe time making this the perfect Particle Image Velocimetry (PIV) camera.

USB2 communication interface
Standard communication between the computer and camera is done via USB2.

Configurable ROI
By reducing the number of horizontal lines in the Region of Interest, the X3 camera is capable of increasing the frame rate to over 10,000 fps in gated mode of operation; 30,000 fps for the X4; 5,000 fps for the X5.

Software Compatibility
MotionPro X Studio includes National Instruments Labview VIs, Matlab plugins, TWAIN, and a C++ SDK.

Live Preview
Full time, live preview on a monitor lets you see what the camera sees.

Flexible triggering
Frame-Sync, Trigger-In, and Sync-In connectors onboard camera.

X3 X4 X5

TECHNICAL SPECIFICATIONS:

Photocathode Sensitivity

Luminous Sensitivity

795 µA/lm (minimum)

Quantum Efficiency

35-40%

Wavelength for Peak Sensitivity

500-550 nm

Spectral response

450-900 nm

Photocathode

Window material

7052 Glass

Photocathode material

GaAs

Phosphor material

P-46

Effective output size

18 mm

Stage of MCP

Single

Luminous Gain

20,000 FL/FC

EBI

2.2x10-11 lm/cm2

Limiting resolution

50 line pairs/mm

Image magnification

1

Gate Signal Characteristics

Gate repetition rate

5 KHz single pulse mode, 2.5 KHz dual pulse mode

Level

TTL

Impedance

50 Ω

Minimum separation between consecutive gate events

2 μsecond

Minimum Gate duration

50 nanosecond

Delay ON time

100 nanosecond

ON rise time

40 nanosecond

Delay OFF time

100 nanosecond

OFF fall time

40 nanosecond