What is the main difference between the Artemis-M Pro's BIN1 and BIN2 modes?
These are two distinct hardware modes. BIN1 mode offers the full 47 MP resolution with 2.315µm pixels and 12-bit depth, best for high-detail shots. BIN2 mode provides 11.7 MP resolution with larger 4.63µm pixels, a deeper 14-bit ADC, a much larger full well (65.8Ke), and lower read noise. For most deep-sky imaging, BIN2 mode delivers superior dynamic range and sensitivity.
What kind of power supply do I need for the Artemis-M Pro?
To run the TEC cooling system, you need a separate 12V DC power supply with a 5.5x2.1mm center-positive plug, rated for at least 5 Amps. The power supply is not included. If you only connect the USB-C cable, the camera will function as an uncooled camera without TEC cooling.
How does the Artemis-M Pro perform on faint H-alpha targets like the North American Nebula (NGC 7000)?
The Artemis-M Pro is excellent for narrowband imaging. With its high peak QE of ≈90% and low read noise (down to 1.2e), it captures faint H-alpha signal efficiently. For a large target like NGC 7000, using BIN2 mode with an f/5 refractor would provide a large field of view, excellent sensitivity from the 4.63µm pixels, and deep 14-bit data.
Is the 8 FPS BIN1 mode on the Artemis-M Pro fast enough for lunar mosaics with a 10" SCT?
Yes. While not as fast as dedicated planetary cameras, 8 FPS at a massive 8288x5648 resolution is more than sufficient for "lucky imaging" of the Moon and Sun (with a safe solar filter). The large sensor is perfect for capturing large surface areas in a single frame, significantly reducing the number of panels needed for a full mosaic with a long focal length telescope like an f/10 SCT.
Does the Artemis-M Pro have amp glow?
Yes, the manufacturer states that the Artemis-M Pro exhibits some amp glow, which can be more noticeable in BIN2 mode or when using high gain. This is a normal characteristic for this sensor and is easily and completely removed by subtracting properly matched dark frames during your image calibration process.
How do I use the sensor tilt plate on the Artemis-M Pro?
The 4-point tilt plate is adjusted from the rear of the camera body. You would typically use software to analyze star shapes in the four corners of an image. Based on the elongation, you make small adjustments to the corresponding screws on the back of the camera until stars are round across the entire 23.2mm image circle.