QHYCCD QHY600M Mono
- 61.17 Megapixel Full-Frame (36mm x 24mm) Sony IMX455 BSI Sensor
- 3.76µm Pixel Size
- Native 16-bit A/D Converter
- 1.0e- Minimum Read Noise
- 2GB DDR3 Image Buffer
- Zero Amplifier Glow
Simulate the exact field of view of the QHYCCD QHY600M Mono with your specific telescope.
Launch Imaging AssistantThe QHYCCD QHY600M Mono camera leverages the full-frame (36mm x 24mm) Sony IMX455 monochrome sensor to deliver a massive 61.17 MP resolution with 3.76µm pixels. Its native 16-bit A/D converter captures a full 65,535 grayscale levels, while the back-illuminated architecture and 1.0e- read noise ensure that even the faintest signals are resolved from the noise floor. A 2GB DDR3 image buffer guarantees stable data transfer at up to 2.5 FPS for 16-bit full-resolution frames, preventing dropped frames during critical imaging sequences.
The heart of the QHY600M is its 36mm x 24mm back-illuminated Sony IMX455 sensor, a component that fundamentally changes the landscape for amateur and professional imagers. With a resolution of 9576 x 6388, you can capture vast nebulae like the North American Nebula (NGC 7000) in a single frame with a wide-field refractor or create incredibly detailed mosaics of the lunar surface. The 3.76µm pixels are well-matched to a wide range of focal lengths, resolving fine detail without requiring extreme seeing conditions.
The camera's native 16-bit analog-to-digital converter provides the dynamic range necessary to capture both the faint, outer arms of a galaxy and its bright core without saturation. This capability, combined with a Super Full Well mode that expands capacity to over 80,000 electrons, gives you unprecedented flexibility in balancing exposure time and signal depth.
The QHY600M excels in photon-starved conditions like narrowband imaging thanks to its exceptionally low noise floor. At high gain, read noise drops to as low as 1.0e-, meaning the camera can achieve a high signal-to-noise ratio with just a handful of photons. This sensitivity is paired with an extremely low dark current of just 0.0022e-/p/s at -20°C, preserving faint signal during long exposures.
Critically, the QHY600M is engineered for Zero Amplifier Glow. This eliminates the bright gradients that often contaminate the corners of long exposures from other CMOS sensors, resulting in cleaner raw frames and simplifying your calibration workflow by making dark frames more effective and consistent.
A 61.17MP, 16-bit image file is enormous, and transferring this data reliably over USB 3.0 is a significant challenge. The QHY600M incorporates a 2GB DDR3 image buffer that acts as a high-speed cache, temporarily storing frames before they are sent to the host computer. This prevents data loss from USB bus interruptions or a slow computer CPU, ensuring smooth and stutter-free capture sessions.
This buffer is essential for maintaining the camera's full-resolution 16-bit frame rate of 2.5 FPS and is even more critical when using high-speed ROI modes, which can reach up to 160 FPS. While the large files demand significant storage and processing power, the 2GB buffer ensures the camera itself is never the bottleneck in your imaging chain.
Aggressive and stable cooling is vital for minimizing thermal noise. The QHY600M's dual-stage thermoelectric cooler can reduce the sensor temperature to -35°C below ambient for long exposures, keeping dark current to a minimum. For high-frame-rate planetary or solar work, the cooler maintains a delta of -30°C to ensure consistent sensor performance.
The camera body is available in configurations that support different back focus distances, including 17.5mm and 14.5mm. This mechanical flexibility is critical for correctly spacing complex imaging trains that include filter wheels, off-axis guiders, and other accessories, ensuring you can achieve perfect focus across the entire full-frame sensor.
Both the QHY600M and the ZWO ASI6200MM Pro are built around the exceptional Sony IMX455 sensor, but they differ in key design choices that may influence your decision.
To fully utilize the QHY600M's 36mm x 24mm sensor without vignetting, a telescope with a large, corrected image circle is required. High-end refractors with dedicated flatteners, Ritchey-Chrétien (RC) telescopes, and corrected Dall-Kirkhams (CDK) are ideal. Schmidt-Cassegrains (SCTs) equipped with a focal reducer/corrector can also perform well, but you should verify the corrected image circle size of your specific optical train.
The faint, wispy filaments of the Cygnus Loop are an extremely low-signal target, especially when shooting with narrowband filters like H-alpha and OIII. The QHY600M's ability to reach 1.0e- read noise means that the camera's own electronics contribute almost no noise to the image. This allows you to capture the faintest details of the nebula with shorter sub-exposures, preserving fine detail and star color without being overwhelmed by camera noise.
The 2GB DDR3 buffer acts as an internal, high-speed memory cache for the camera. A single 16-bit, 61.17MP frame from the QHY600M is very large. The buffer stores these frames temporarily, ensuring that data is not lost if your computer's USB connection is briefly interrupted or if the CPU cannot process the incoming data stream fast enough. This results in more reliable, stutter-free imaging sessions.
Yes. The combination of a large sensor, extremely low read noise (1.0e-), high sensitivity (from the BSI sensor), and native 16-bit depth makes the QHY600M a powerful tool for scientific work. It is well-suited for applications like time-domain astronomy, sky surveys, fluorescence imaging, and microscopy where capturing faint signals with high fidelity is critical.
These modes allow you to prioritize either dynamic range or sensitivity.
Amplifier glow is a common issue in CMOS sensors where the readout electronics create a faint glow in the corners of an image, which gets brighter with longer exposures. The QHY600M's "Zero Amp Glow" design means this artifact is completely absent. This simplifies image processing because your dark frames will be much cleaner and more effective at removing thermal noise without needing to subtract a complex, variable glow pattern.
| Sensor | SONY IMX455 BSI CMOS (Monochrome) |
| Sensor Format | Full Frame (36mm x 24mm) |
| Resolution | 61.17 Megapixels (9576 x 6388) |
| Pixel Size | 3.76µm |
| A/D Sample Depth | Native 16-bit |
| Full Well Capacity | Standard Mode: >51ke- | Super Full Well Mode: >80ke- |
| Readout Noise | 1.0e- to 3.7e- |
| Dark Current | 0.0022e-/p/s @ -20℃ |
| Frame Rate (16-bit) | 2.5 FPS @ 9576x6388 |
| Frame Rate (ROI) | Up to 160 FPS @ 9600x100 |
| Exposure Time Range | 40µs – 3600s |
| Amp Glow Control | Zero Amplifier Glow |
| Shutter Type | Electric Rolling Shutter |
| Image Buffer | 2GB DDR3 Memory |
| Computer Interface | USB 3.0 |
| Cooling System | Dual Stage TEC, -35°C below ambient (long exposure) |
| Anti-Dew Heater | Yes |
| Telescope Interface | M54 / M48 |
| Back Focal Length | QHY600PH: 17.5mm | QHY600SBFL: 14.5mm (±0.2) |
| Weight | Approx. 850g |
| Firmware Upgrade | Supported via USB port |
| Optic Window | AR+AR Multi-Layer Anti-Reflection Coating |
Box contents vary
This product is available as a camera-only package or in bundles with filter wheels and off-axis guiders. Please refer to the specific package option for a detailed list of included items.