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Microscopy Cameras/Microscope Cameras

E3CMOS01500KMA

E3CMOS01500KMA Microscopy Cameras/Microscope Cameras with IMX273 (M,GS) sensor, 1.5M (1440×1080) for professional imaging.

Sensor
IMX273 (M,GS)
Resolution
1.5M (1440×1080)
Pixel Size
3.45 µm × 3.45 µm
Frame Rate
228 fps @ 1440×1080; 530 fps @ 720×540
Interface
USB3.0
E3CMOS01500KMA

Application context

Why this design is used

Scientific imaging

E3CMOS01500KMA: The IMX273 (M,GS) sensor, 1.5M (1440×1080) resolution, and 3.45 µm × 3.45 µm pixels defines the sensitivity, sampling and field coverage available for Scientific imaging. The 228 fps @ 1440×1080; 530 fps @ 720×540 frame-rate listing also sets the fastest full-frame acquisition regime.

Instrument integration

E3CMOS01500KMA: The IMX273 (M,GS) sensor, 1.5M (1440×1080) resolution, and 3.45 µm × 3.45 µm pixels defines the sensitivity, sampling and field coverage available for Instrument integration. The 228 fps @ 1440×1080; 530 fps @ 720×540 frame-rate listing also sets the fastest full-frame acquisition regime.

Specifications

E3CMOS01500KMA

22 specification rows

The E3CMOS01500KMA is a microscopy camera in the E3CMOS series, built around a IMX273 (M,GS) sensor, 1.5M (1440×1080) resolution, 3.45 µm × 3.45 µm pixels, frame rates up to 228 fps @ 1440×1080; 530 fps @ 720×540, a USB3.0 interface. It suits microscopy cameras/microscope cameras where reliable imaging performance and interface compatibility matter.

Key Parameters

ModelE3CMOS01500KMA
SensorIMX273 (M,GS)
Effective Pixels / Resolution1.5M (1440×1080)
Frame Rate (Full Resolution)228 fps @ 1440×1080; 530 fps @ 720×540
Shutter TypeGlobal Shutter
Color TypeMonochrome

Imaging Performance

Pixel Size3.45 µm × 3.45 µm
Sensor Size4.968 mm × 3.726 mm
Diagonal1/2.5" (6.21 mm)
Dynamic RangeAvailable on request
Bit Depth8/12-bit
Sensitivity915 mV with 1/30s(F8.0); 0.15 mV with 1/30s

Interface & Mechanical

Data InterfaceUSB3.0
GPIOAvailable on request
Lens MountC-mount
DimensionsAvailable on request
WeightAvailable on request
Power SupplyUSB3.0 interface power

Environment & Certification

Operating Temperature / Humidity10 °C ~ +50 °C / 30%~80%RH
Storage Temperature / Humidity20 °C ~ +60 °C / 10%~60%RH
Operating SystemWindows/Linux/macOS/Android multi-platform SDK (native C/C++, C#/VB.NET, Python, Java, DirectShow, TWAIN, etc.)
CertificationCE, FCC

System integration

Integration and compatibility

Use these checks to connect E3CMOS01500KMA to the surrounding optical, mechanical and control system. Every value shown is taken from this model's own specification record.

Lens and microscope interface
Lens Mount: C-mount
Use a lens image circle that covers the sensor and check flange distance before adding C/CS, F-mount or M42 adapters.
Sensor and sampling
Sensor: IMX273 (M,GS) · Resolution: 1.5M (1440×1080)
Match pixel pitch to the diffraction-limited spot the optics deliver. Sampling finer than the optics resolve multiplies data volume without adding information; sampling coarser discards resolution you have paid for.
Interface and data rate
Frame Rate: 228 fps @ 1440×1080; 530 fps @ 720×540 · Interface: USB3.0
Confirm the host can sustain the interface bandwidth continuously, not in burst. A camera that outruns the write path stalls acquisition rather than dropping quietly to a lower rate.
Hardware synchronization
GPIO: Available on request
Confirm edge polarity, pulse-width limits and whether each line is opto-isolated before connecting TTL or GPIO signals. A software exposure command is not equivalent to a hardware trigger.
Cooling and noise floor
Dynamic Range: Available on request
Judge these figures at the exposure time you will actually use. Cooling matters where dark current accumulates over seconds; read noise dominates short exposures where it never does.

Technical FAQ

Integration questions for E3CMOS01500KMA

What lens mount is required for the E3CMOS01500KMA?

Lens Mount: C-mount. Use a lens image circle that covers the sensor and check flange distance before adding C/CS, F-mount or M42 adapters.

What sensor and pixel pitch does the E3CMOS01500KMA use?

Sensor: IMX273 (M,GS) · Resolution: 1.5M (1440×1080). Match pixel pitch to the diffraction-limited spot the optics deliver. Sampling finer than the optics resolve multiplies data volume without adding information; sampling coarser discards resolution you have paid for.

How does the E3CMOS01500KMA connect to the acquisition computer?

Frame Rate: 228 fps @ 1440×1080; 530 fps @ 720×540 · Interface: USB3.0. Confirm the host can sustain the interface bandwidth continuously, not in burst. A camera that outruns the write path stalls acquisition rather than dropping quietly to a lower rate.

Does the E3CMOS01500KMA support hardware triggering?

GPIO: Available on request. Confirm edge polarity, pulse-width limits and whether each line is opto-isolated before connecting TTL or GPIO signals. A software exposure command is not equivalent to a hardware trigger.

What is the noise performance of the E3CMOS01500KMA?

Dynamic Range: Available on request. Judge these figures at the exposure time you will actually use. Cooling matters where dark current accumulates over seconds; read noise dominates short exposures where it never does.

Need help choosing?

Tell us your sensor, resolution, spectral range, frame-rate, interface, and software requirements and we will confirm the matching configuration and lead time.

Open camera finder

Model selection

Nearby series comparison

Compare E3CMOS01500KMA with the closest available models in the E3CMOS family. Confirm option-dependent values on the final configuration before ordering.

Selection parameterE3CMOS01500KMA (current)E3CMOS01200KPAE3CMOS02300KMC
SensorIMX273 (M,GS)IMX224 (C)IMX174 (M,GS)
Resolution1.5M (1440×1080)1.2M (1280×960)2.3M (1920×1200)
Sensor size4.968 mm × 3.726 mm4.80 mm × 3.60 mm11.25 mm × 7.03 mm
Pixel size / frame rate3.45 µm × 3.45 µm3.75 µm × 3.75 µm5.86 µm × 5.86 µm

Other cameras on the IMX273 sensor

The IMX273 appears in 6 models across the catalogue, differing in cooling, shutter, interface and colour filter. Compare them side by side before settling on a variant.