QHYCCD QHY550P Polarized Camera
- 5 Megapixel Sony IMX250 Polarized Monochrome Sensor
- 3.45µm Pixel Size
- Electronic Global Shutter
- Dual-Stage TEC Cooling to -35°C Below Ambient
- 68 FPS at Full Resolution (8-bit)
- 128MB DDR2 Image Buffer
Simulate the exact field of view of the QHYCCD QHY550P Polarized Camera with your specific telescope.
Launch Imaging AssistantThe QHY550P Polarized Camera integrates a specialized 5 Megapixel Sony IMX250 sensor capable of measuring the polarization of light directly at the chip. With 3.45µm pixels, an electronic global shutter, and a dual-stage TEC that cools the sensor to -35°C below ambient, this camera is engineered for scientific applications. It achieves a full-frame rate of 68 FPS over USB 3.0, while its 128MB DDR2 buffer ensures stable data transfer during high-speed captures.
The core of the QHY550P is its 2/3-inch Sony IMX250 sensor, which features an on-chip polarizing filter array. This design places four different polarization angle filters (0°, 45°, 90°, and 135°) over a 2x2 block of pixels, allowing the camera to capture the degree and angle of polarization in a single exposure. With 5 megapixels of resolution and 3.45µm pixels, it resolves fine details in applications ranging from analyzing stress in materials to studying the scattered light from reflection nebulae or planetary atmospheres.
Unlike rolling shutters that can distort fast-moving objects, the QHY550P's electronic global shutter exposes all 5 million pixels simultaneously. This eliminates motion artifacts, making it essential for accurate measurement in life sciences, industrial inspection, or astronomical "lucky imaging" of the Sun and planets. The USB 3.0 interface and a 128MB DDR2 memory buffer sustain a high data rate, delivering up to 68 frames per second at full resolution in 8-bit mode, and over 263 FPS with a reduced region of interest.
Detecting subtle variations in polarized light requires exceptionally low noise. The QHY550P uses a regulated, dual-stage thermoelectric cooler to reduce the sensor temperature to -35°C below ambient. This dramatically suppresses thermal noise, lowering the dark current to just 0.047e-/pixel/sec at -10°C. Combined with a read noise as low as 2e-, the deep cooling ensures that faint signals are not lost, providing the clean data necessary for precise scientific analysis.
The QHY550 series includes both this polarized (P) model and a standard monochrome (M) version. The choice depends entirely on your application's requirements.
The QHY550P excels at imaging objects where light has been scattered or affected by magnetic fields. Prime targets include reflection nebulae like the area around Merope in the Pleiades (M45), planetary atmospheres to study cloud and haze properties, supernova remnants, and detailed solar imaging to analyze magnetic structures in the photosphere.
During planetary imaging, atmospheric turbulence ("seeing") causes the image to warp and shimmer. High-speed video is used to "freeze" moments of steady air. A global shutter, like the one in the QHY550P, exposes the entire planet instantly for each frame. This prevents the distortion seen with rolling shutters, where different parts of the planet are recorded at slightly different times, leading to a more accurate final stacked image.
The 128MB DDR2 image buffer acts as a temporary, high-speed storage for frames coming off the sensor before they are sent to the computer via USB 3.0. This prevents data loss or dropped frames, especially during high-speed recording or when the host computer's CPU is busy. It ensures a smooth, stable data stream, which is critical for scientific measurements and video astronomy.
Yes, you can. The QHY550P is fundamentally a monochrome sensor, so using filters is possible. However, be aware that the on-chip polarizing filters will interact with any external filters. This setup is useful for "spectropolarimetry"—studying polarization at specific wavelengths—but for standard deep-sky imaging, a non-polarized monochrome camera is more efficient.
Cooling the sensor with the dual-stage TEC to -35°C below ambient drastically reduces thermal noise, also known as dark current. This is the noise that accumulates in an image even in total darkness. By suppressing this noise source, the QHY550P can take longer exposures and detect fainter signals with much higher fidelity, which is essential for accurate polarimetric measurements.
The QHY550P's on-chip polarizer array captures four polarization angles (0°, 45°, 90°, 135°) in a single shot. To get the same data with an external filter, you would need a filter wheel and have to take four separate images, rotating the filter between each. This is slow, mechanically complex, and impossible for capturing rapidly changing phenomena.
| Image Sensor | Sony IMX250, Polarized Monochrome CMOS |
| Sensor Format | 2/3 inch (8.50mm x 7.09mm) |
| Resolution | 5 Megapixels (2460 x 2070) |
| Pixel Size | 3.45µm x 3.45µm |
| A/D Conversion | 12-bit (output as 16-bit or 8-bit) |
| Shutter Type | Electronic Global Shutter |
| Full Well Capacity | 11,000 e- |
| Read Noise | 2e- to 2.5e- |
| Dark Current | 0.047e-/pixel/sec @ -10℃ |
| Exposure Range | 20µs to 600sec |
| Frame Rate (Full) | 68 FPS @ 8-bit, 34 FPS @ 16-bit |
| Frame Rate (ROI) | Up to 263 FPS @ 8-bit (480 lines) |
| Image Buffer | 128MB DDR2 Memory |
| Cooling System | Dual-Stage TEC, -35°C below ambient |
| Anti-Dew Heater | Yes |
| Computer Interface | USB 3.0 |
| Filter Wheel Port | 4-pin QHYCCD CFW Port |
| Trigger Port | Opto-isolated Hardware Trigger-In (RCA) |
| Optical Window | AR+AR Multi-Coated |
| Back Focus | 17.5mm |
| Adapters | Supports M42x0.75 and 2-inch barrels |
| Weight | 460g |
| Power Consumption | 27W (100% TEC), 12W (50% TEC), 2W (TEC off) |