# SpotFindingSettings ## Properties Name | Type | Description | Notes ------------ | ------------- | ------------- | ------------- **enable** | **bool** | Enable spot finding. This is temporary setting, i.e. can be changed anytime during data collection. Even if disabled spot finding information will still be send and written, though always with zero spots. | [default to True] **indexing** | **bool** | Enable indexing. This is temporary setting, i.e. can be changed anytime during data collection. | [default to True] **signal_to_noise_threshold** | **float** | | **photon_count_threshold** | **int** | | **min_pix_per_spot** | **int** | | **max_pix_per_spot** | **int** | | **high_resolution_limit** | **float** | High resolution limit for spot finding [Angstrom]. Optional: if omitted, spot finding extends as far as the detector reaches, i.e. the detection is not clipped in resolution. | [optional] **low_resolution_limit** | **float** | Low resolution limit for spot finding [Angstrom]. Optional: if omitted, spot finding is not clipped at the low-resolution end. A value of 0 is accepted and means the same thing. | [optional] **high_resolution_limit_for_spot_count_low_res** | **float** | High resolution threshold to consider spot \"low resolution\" [Angstrom] | **quick_integration** | **bool** | Quick integration of Bragg spots in diffraction images. If enabled it will likely reduce performance of Jungfraujoch for datasets with a very high indexing rate. (experimental feature) | [default to False] **ice_ring_width_q_recip_a** | **float** | Half-width of the ice ring band in q (1/A). Matches the offline default in image_analysis/spot_finding/SpotFindingSettings.h, which was set from a measured ring FWHM of ~0.06; the two must agree or the same data gets a narrower ice band online. | [default to 0.03] **high_res_gap_q_recip_a** | **float** | This parameter is used to remove spurious spots at a very high resolution, that sometimes appear due to very low background close to the edge of the detector. If there is a gap in (1/d)-space between spots of at least this size, spots on the side of the gap with high resolution will be discarded. This is optional parameter. This option should be turned OFF for small molecule datasets or for crystals with very low mosaicity, when it is expected to see only few spots in any case. | [optional] [default to 1.5] **adaptive_threshold** | **bool** | Self-calibrating spot detection: replace the fixed photon_count_threshold by a per-resolution-ring threshold derived from each image's own noise, so the same setting works across datasets without per-dataset tuning. photon_count_threshold is then ignored and false_pixels_per_frame sets the operating point instead. Only available on detectors whose images are analysed in software (the DECTRIS/SIMPLON workflow). The JUNGFRAU and EIGER workflows find spots on the FPGA, which applies its own fixed threshold, so enabling this there is rejected rather than silently ignored. | [optional] [default to False] **false_pixels_per_frame** | **float** | Operating point of the adaptive threshold: the number of noise pixels tolerated per frame. About 100 suits a multi-megapixel detector. Ignored unless adaptive_threshold is set. | [optional] [default to 100.0] ## Example ```python from jfjoch_client.models.spot_finding_settings import SpotFindingSettings # TODO update the JSON string below json = "{}" # create an instance of SpotFindingSettings from a JSON string spot_finding_settings_instance = SpotFindingSettings.from_json(json) # print the JSON string representation of the object print(SpotFindingSettings.to_json()) # convert the object into a dict spot_finding_settings_dict = spot_finding_settings_instance.to_dict() # create an instance of SpotFindingSettings from a dict spot_finding_settings_from_dict = SpotFindingSettings.from_dict(spot_finding_settings_dict) ``` [[Back to Model list]](../README.md#documentation-for-models) [[Back to API list]](../README.md#documentation-for-api-endpoints) [[Back to README]](../README.md)