mpylab.limits.conducted_emission.en_55011 module

Conducted emission limit lines according to DIN EN 55011:2022-05.

mpylab.limits.conducted_emission.en_55011.CISPR11

alias of LIMIT

mpylab.limits.conducted_emission.en_55011.EN55011

alias of LIMIT

class mpylab.limits.conducted_emission.en_55011.LIMIT(group=None, classification=None, detector=None, port=None)

Bases: Limit

EN 55011 conducted-emission limit model with selectable variants.

description_Classification = {'A': '\n                                        ## Class A (higher emission limits, industrial) \n                                        \n                                        **Class A** devices are devices that are suitable for use in all areas other than \n                                        residential and such areas, and they are connected to the public mains.\n                                        \n                                        Devices must have emissions which are below the limits of Class A, \n                                        but the emissions may exceed the limits of Class B.\n                                        \n                                        For Class A equipment, the instructions for use accompanying the product shall \n                                        contain the following text: \n                                        \n                                        *Caution: This equipment is not intended for use in residential environments \n                                        and may not provide adequate protection to radio reception in such environments.*', 'B': '\n                                        ## Class B (lower emission limits, residential): \n                                        \n                                        **Class B** devices are devices that are suitable for use in residential areas \n                                        and such areas, and they are connected to the public mains.'}
description_Group = {'1': '\n                            ## Group 1: (general purpose applications)\n                            \n                            All equipment in the scope of EN 55011 (CISPR 11) which is not classified as Group 2 equipment. \n                            \n                            Examples of **Group 1** equipment:\n                            \n                            - Laboratory equipment\n                            - Medical electrical equipment\n                            - Scientific equipment\n                            - Semiconductor-converters\n                            - Industrial electric heating equipment with operating frequencies less than or equal to 9 kHz\n                            - Machine tools\n                            - Industrial process measurement and control equipment\n                            - Semiconductor manufacturing equipment\n                            - Switch mode power supplies', '2': '\n                             ## Group 2 (ISM RF applications): \n                             \n                             All ISM RF equipment in which radio-frequency energy in the frequency \n                             range 9kHz to 400GHz is intentionally generated and used or only used locally, in the form \n                             of electromagnetic radiation, inductive and/or capacitive coupling, for the treatment \n                             of material, for inspection/analysis purposes, or for transfer of electromagnetic energy. \n                             \n                             Examples of **Group 2** equipment:\n                             \n                             - Microwave-powered UV irradiating apparatus\n                             - Microwave lighting apparatus\n                             - Industrial induction heating equipment operating at frequencies above 9 kHz\n                             - Dielectric heating equipment Industrial microwave heating equipment\n                             - Arc Welding equipment\n                             - Microwave ovens\n                             - Medical electrical equipment\n                             - Electric welding equipment\n                             - Electro-discharge machining (EDM) equipment\n                             - Demonstration models for education and training\n                             - Battery chargers and power supplies wireless power transfer (WPT) mode'}
description_TestSetup = {'A': '\n                                ## Test Setup:\n                                \n                                **Class A** equipment may be measured either on a test site or in situ \n                                (at installation site) as preferred by the manufacturer. Due to size, complexity or \n                                operating conditions some equipment may have to be measured in situ in order to \n                                show compliance with disturbance limits.\n                                ', 'B': '\n                                ## Test Setup: \n                                \n                                **Class B** equipment shall be measured on a test site.'}
description_title = 'DIN EN 55011:2022-05 (CISPR-11), conducted'
fmax = 30000000.0
fmin = 150000.0
limit_G1_CA_AC_less_20_kVA_AV(f)

Return Group 1/Class A AC <=20 kVA average limit values.

limit_G1_CA_AC_less_20_kVA_QP(f)

Return Group 1/Class A AC <=20 kVA quasi-peak limit values.

limit_G1_CA_AC_less_75_kVA_AV(f)

Return Group 1/Class A AC <=75 kVA average limit values.

limit_G1_CA_AC_less_75_kVA_QP(f)

Return Group 1/Class A AC <=75 kVA quasi-peak limit values.

limit_G1_CA_AC_over_75_kVA_AV(f)

Return Group 1/Class A AC >75 kVA average limit values.

limit_G1_CA_AC_over_75_kVA_QP(f)

Return Group 1/Class A AC >75 kVA quasi-peak limit values.

limit_G1_CA_DC_less_20_kVA_AV(f)

Return Group 1/Class A DC <=20 kVA average limit values.

limit_G1_CA_DC_less_20_kVA_QP(f)

Return Group 1/Class A DC <=20 kVA quasi-peak limit values.

limit_G1_CA_DC_less_75_kVA_AV(f)

Return Group 1/Class A DC <=75 kVA average limit values.

limit_G1_CA_DC_less_75_kVA_QP(f)

Return Group 1/Class A DC <=75 kVA quasi-peak limit values.

limit_G1_CA_DC_over_75_kVA_AV(f)

Return Group 1/Class A DC >75 kVA average limit values.

limit_G1_CA_DC_over_75_kVA_QP(f)

Return Group 1/Class A DC >75 kVA quasi-peak limit values.

limit_G1_CB_AC_less_20_kVA_AV(f)

Return Group 1/Class B AC <=20 kVA average limit values.

limit_G1_CB_AC_less_20_kVA_QP(f)

Return Group 1/Class B AC <=20 kVA quasi-peak limit values.

limit_G1_CB_AC_less_75_kVA_AV(f)

Return Group 1/Class B AC <=75 kVA average limit values.

limit_G1_CB_AC_less_75_kVA_QP(f)

Return Group 1/Class B AC <=75 kVA quasi-peak limit values.

limit_G1_CB_AC_over_75_kVA_AV(f)

Return Group 1/Class B AC >75 kVA average limit values.

limit_G1_CB_AC_over_75_kVA_QP(f)

Return Group 1/Class B AC >75 kVA quasi-peak limit values.

limit_G1_CB_DC_less_20_kVA_AV(f)

Return Group 1/Class B DC <=20 kVA average limit values.

limit_G1_CB_DC_less_20_kVA_QP(f)

Return Group 1/Class B DC <=20 kVA quasi-peak limit values.

limit_G1_CB_DC_less_75_kVA_AV(f)

Return Group 1/Class B DC <=75 kVA average limit values.

limit_G1_CB_DC_less_75_kVA_QP(f)

Return Group 1/Class B DC <=75 kVA quasi-peak limit values.

limit_G1_CB_DC_over_75_kVA_AV(f)

Return Group 1/Class B DC >75 kVA average limit values.

limit_G1_CB_DC_over_75_kVA_QP(f)

Return Group 1/Class B DC >75 kVA quasi-peak limit values.

limit_G2_CA_AC_less_20_kVA_AV(f)

Return Group 2/Class A AC <=20 kVA average limit values.

limit_G2_CA_AC_less_20_kVA_QP(f)

Return Group 2/Class A AC <=20 kVA quasi-peak limit values.

limit_G2_CA_AC_less_75_kVA_AV(f)

Return Group 2/Class A AC <=75 kVA average limit values.

limit_G2_CA_AC_less_75_kVA_QP(f)

Return Group 2/Class A AC <=75 kVA quasi-peak limit values.

limit_G2_CA_AC_over_75_kVA_AV(f)

Return Group 2/Class A AC >75 kVA average limit values.

limit_G2_CA_AC_over_75_kVA_QP(f)

Return Group 2/Class A AC >75 kVA quasi-peak limit values.

limit_G2_CA_DC_less_20_kVA_AV(f)

Return Group 2/Class A DC <=20 kVA average limit values.

limit_G2_CA_DC_less_20_kVA_QP(f)

Return Group 2/Class A DC <=20 kVA quasi-peak limit values.

limit_G2_CA_DC_less_75_kVA_AV(f)

Return Group 2/Class A DC <=75 kVA average limit values.

limit_G2_CA_DC_less_75_kVA_QP(f)

Return Group 2/Class A DC <=75 kVA quasi-peak limit values.

limit_G2_CA_DC_over_75_kVA_AV(f)

Return Group 2/Class A DC >75 kVA average limit values.

limit_G2_CA_DC_over_75_kVA_QP(f)

Return Group 2/Class A DC >75 kVA quasi-peak limit values.

limit_G2_CB_AC_less_20_kVA_AV(f)

Return Group 2/Class B AC <=20 kVA average limit values.

limit_G2_CB_AC_less_20_kVA_QP(f)

Return Group 2/Class B AC <=20 kVA quasi-peak limit values.

limit_G2_CB_AC_less_75_kVA_AV(f)

Return Group 2/Class B AC <=75 kVA average limit values.

limit_G2_CB_AC_less_75_kVA_QP(f)

Return Group 2/Class B AC <=75 kVA quasi-peak limit values.

limit_G2_CB_AC_over_75_kVA_AV(f)

Return Group 2/Class B AC >75 kVA average limit values.

limit_G2_CB_AC_over_75_kVA_QP(f)

Return Group 2/Class B AC >75 kVA quasi-peak limit values.

limit_G2_CB_DC_less_20_kVA_AV(f)

Return Group 2/Class B DC <=20 kVA average limit values.

limit_G2_CB_DC_less_20_kVA_QP(f)

Return Group 2/Class B DC <=20 kVA quasi-peak limit values.

limit_G2_CB_DC_less_75_kVA_AV(f)

Return Group 2/Class B DC <=75 kVA average limit values.

limit_G2_CB_DC_less_75_kVA_QP(f)

Return Group 2/Class B DC <=75 kVA quasi-peak limit values.

limit_G2_CB_DC_over_75_kVA_AV(f)

Return Group 2/Class B DC >75 kVA average limit values.

limit_G2_CB_DC_over_75_kVA_QP(f)

Return Group 2/Class B DC >75 kVA quasi-peak limit values.

unit = 'dBµV'
variations = {'Classification': ('A', 'B'), 'Detector': ('QP', 'AV'), 'Group': ('1', '2'), 'Port': ('AC (≤ 20 kVA)', 'AC (≤ 75 kVA)', 'AC (> 75 kVA)', 'DC (≤ 20 kVA)', 'DC (≤ 75 kVA)', 'DC (> 75 kVA)')}