{"id":357076,"date":"2024-10-20T01:15:13","date_gmt":"2024-10-20T01:15:13","guid":{"rendered":"https:\/\/pdfstandards.shop\/product\/uncategorized\/bs-en-iec-60027-22019-tc\/"},"modified":"2024-10-26T01:41:17","modified_gmt":"2024-10-26T01:41:17","slug":"bs-en-iec-60027-22019-tc","status":"publish","type":"product","link":"https:\/\/pdfstandards.shop\/product\/publishers\/bsi\/bs-en-iec-60027-22019-tc\/","title":{"rendered":"BS EN IEC 60027-2:2019 – TC"},"content":{"rendered":"
Defines rules for the use and writing of letter symbols for telecommunications and electronics.<\/p>\n
PDF Pages<\/th>\n | PDF Title<\/th>\n<\/tr>\n | ||||||
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148<\/td>\n | undefined <\/td>\n<\/tr>\n | ||||||
151<\/td>\n | Annex ZA(normative)Normative references to international publicationswith their corresponding European publications <\/td>\n<\/tr>\n | ||||||
153<\/td>\n | English CONTENTS <\/td>\n<\/tr>\n | ||||||
154<\/td>\n | FOREWORD <\/td>\n<\/tr>\n | ||||||
156<\/td>\n | 1 Scope 2 Normative references 4 Introduction to tables <\/td>\n<\/tr>\n | ||||||
157<\/td>\n | 5 Quantities and units 5.1 General concepts <\/td>\n<\/tr>\n | ||||||
171<\/td>\n | 5.2 Linear time-independent networks under sinusoidal conditions 5.2.1 General 5.2.2 Two-port networks Figure 1 \u2013 Conventions concerning signs in electric circuits <\/td>\n<\/tr>\n | ||||||
179<\/td>\n | 5.2.3 n-port networks Figure 2 \u2013 Conventions for n-port linear networks <\/td>\n<\/tr>\n | ||||||
185<\/td>\n | 5.3 Line transmission of signals and telephony 5.3.1 Quantities and units in line transmission <\/td>\n<\/tr>\n | ||||||
186<\/td>\n | 5.3.2 Subscripts for line transmission <\/td>\n<\/tr>\n | ||||||
187<\/td>\n | 5.3.3 Quantities and units in telephony 5.3.4 Subscripts for telephony <\/td>\n<\/tr>\n | ||||||
188<\/td>\n | 5.4 Waveguide propagation 5.4.1 Frequency and wavelength in a waveguide <\/td>\n<\/tr>\n | ||||||
189<\/td>\n | 5.4.2 Characteristic and normalized impedance and admittance in general <\/td>\n<\/tr>\n | ||||||
190<\/td>\n | 5.4.3 Impedance and admittance at a point in a substance <\/td>\n<\/tr>\n | ||||||
191<\/td>\n | 5.4.4 Impedance and admittance at a point in vacuum <\/td>\n<\/tr>\n | ||||||
192<\/td>\n | 5.4.5 Impedance and admittance of a waveguide <\/td>\n<\/tr>\n | ||||||
193<\/td>\n | 5.5 Radiocommunications 5.5.1 General and tropospheric propagation <\/td>\n<\/tr>\n | ||||||
196<\/td>\n | 5.5.2 Ionospheric propagation <\/td>\n<\/tr>\n | ||||||
197<\/td>\n | 5.5.3 Antennas <\/td>\n<\/tr>\n | ||||||
202<\/td>\n | 5.5.4 Radio links <\/td>\n<\/tr>\n | ||||||
204<\/td>\n | 5.6 Optical fibre communication <\/td>\n<\/tr>\n | ||||||
210<\/td>\n | 5.7 Television <\/td>\n<\/tr>\n | ||||||
212<\/td>\n | 5.8 Dependability <\/td>\n<\/tr>\n | ||||||
213<\/td>\n | 5.9 Piezoelectric resonators Figure 3 \u2013 Equivalent circuits of a one-port piezoelectric resonator <\/td>\n<\/tr>\n | ||||||
219<\/td>\n | 5.10 Semiconductor devices 5.11 Electroacoustics <\/td>\n<\/tr>\n | ||||||
224<\/td>\n | Bibliography <\/td>\n<\/tr>\n<\/table>\n","protected":false},"excerpt":{"rendered":" Tracked Changes. Letter symbols to be used in electrical technology – Telecommunications and electronics<\/b><\/p>\n |