NFPA 70B — Chapter 29

#KUTitleStatus
2801 KU002801 Risk, Safety, and Failure Prevention — PRIMARY CONTACT MATRIX (continued) eae Ftential energenay | Utity euply Cd fe a a! no_media_needed
2802 KU002802 Risk, Safety, and Failure Prevention — 1.1 Before storage, when equipment is received, it should be inspected for shipping damage, and reports should be made as re no_media_needed
2803 KU002803 Risk, Safety, and Failure Prevention — 2.1.2 Space heaters furnished with the equipment should be connected to a continuous source of power of the proper rating media_required
2804 KU002804 Risk, Safety, and Failure Prevention — 4.1 Indoor storage should be provided for all motors and generators except motors designed for outdoor use, which can be sto no_media_needed
2805 KU002805 Risk, Safety, and Failure Prevention — 4.7 Every 3 months, insulation resistance values of each winding of units rated 2300 volts and higher should be measured and media_required
2806 KU002806 Risk, Safety, and Failure Prevention — 5.1 Indoor storage should be provided for all transformers except the following: • (1) Transformers intended for outdoor ins no_media_needed
2807 KU002807 Risk, Safety, and Failure Prevention — 5.6 Primary Disconnect Switches media_required
2808 KU002808 Risk, Safety, and Failure Prevention — 7.2 Batteries that have been shipped dry and charged should have the seals inspected when they are received at the site media_required
2809 KU002809 Risk, Safety, and Failure Prevention — 1.1.2 Operational Availability no_media_needed
2810 KU002810 Risk, Safety, and Failure Prevention — 1.2.2 Preventive Maintenance no_media_needed
2811 KU002811 Risk, Safety, and Failure Prevention — 2.2 Increased Availability no_media_needed
2812 KU002812 Risk, Safety, and Failure Prevention — 3.1.3.3 Maintainability no_media_needed
2813 KU002813 Risk, Safety, and Failure Prevention — 0.993467721 Accumulator, Pressurized no_media_needed
2814 KU002814 Risk, Safety, and Failure Prevention — 0.998149212 Above Ground 0 no_media_needed
2815 KU002815 Risk, Safety, and Failure Prevention — 0.986993503 Chiller, Screw, >300 Tons no_media_needed
2816 KU002816 Risk, Safety, and Failure Prevention — 0.988952766 Control Panel, HVAC/Chillers/AHUs, wo/Switchgear no_media_needed
2817 KU002817 Risk, Safety, and Failure Prevention — 0.998510134* Mechanical 0 no_media_needed
2818 KU002818 Risk, Safety, and Failure Prevention — 0.957963867 Motor Starter 0 media_required
2819 KU002819 Risk, Safety, and Failure Prevention — 0.998103531* Piping, Water, >8 ≤12 in no_media_needed
2820 KU002820 Risk, Safety, and Failure Prevention — 0.993744427 Automatic Transfer 0 no_media_needed
2821 KU002821 Risk, Safety, and Failure Prevention — 0.993549151 Receiver 0 no_media_needed
2822 KU002822 Risk, Safety, and Failure Prevention — 0.990661925 UPS, Small Computer Room Floor no_media_needed
2823 KU002823 Risk, Safety, and Failure Prevention — 0.992808232 Valve Operator, Electric no_media_needed
2824 KU002824 Risk, Safety, and Failure Prevention — 6.4 The purpose of preventive maintenance is not to prevent every component failure from occurring but to prevent the system no_media_needed
2825 KU002825 Risk, Safety, and Failure Prevention — Define the system— Identify levels of indenture Define ground rules and assumptions Construct equipment tree Identify fa no_media_needed
2826 KU002826 Risk, Safety, and Failure Prevention — 6.5 Basic Block Diagram of the RCM Process no_media_needed
2827 KU002827 Risk, Safety, and Failure Prevention — 6.6 Example of FMECA no_media_needed
2828 KU002828 Risk, Safety, and Failure Prevention — 6.6.2.4 With availability metrics representative of system configuration now available, component availability is ranked to prov media_required
2829 KU002829 Risk, Safety, and Failure Prevention — 6.6.3.2 Severity rankings used are as shown in Table I no_media_needed
2830 KU002830 Risk, Safety, and Failure Prevention — 6.6.4.2 This calculation will be performed for every subsystem item in the master equipment listing no_media_needed
2831 KU002831 Risk, Safety, and Failure Prevention — 1.1 Availability no_media_needed
2832 KU002832 Risk, Safety, and Failure Prevention — 1.2.1 Corrective Maintenance no_media_needed
2833 KU002833 Risk, Safety, and Failure Prevention — 1.4 Reliability-Centered Maintenance (RCM) no_media_needed
2834 KU002834 Risk, Safety, and Failure Prevention — 3.1.3 Basic Reliability no_media_needed
2835 KU002835 Risk, Safety, and Failure Prevention — Table I.4 Reliability and Maintainability Information for RCM Analysis Calculated Data Formula for Calculation Ai, Inher no_media_needed
2836 KU002836 Risk, Safety, and Failure Prevention — 0.993006248 Battery, Gel Cell-Sealed, Strings no_media_needed
2837 KU002837 Risk, Safety, and Failure Prevention — 0.992748496 Cable, Insulated, DC, Per 100 ft no_media_needed
2838 KU002838 Risk, Safety, and Failure Prevention — 0.994487152 Vacuum 0 media_required
2839 KU002839 Risk, Safety, and Failure Prevention — 0.978172315 Drive, Adjustable Speed no_media_needed
2840 KU002840 Risk, Safety, and Failure Prevention — 0.996596565 Heat Exchanger, Water To Water no_media_needed
2841 KU002841 Risk, Safety, and Failure Prevention — 0.161029030 Motor, Mechanical, Gas no_media_needed
2842 KU002842 Risk, Safety, and Failure Prevention — 0.998867884 Sending Unit, Air Velocity no_media_needed
2843 KU002843 Risk, Safety, and Failure Prevention — 0.996326697 Switch, Static, >600 ≤1000 amp no_media_needed
2844 KU002844 Risk, Safety, and Failure Prevention — 0.999393210* Transformer, Dry, Air Cooled, >500kVA ≤1500kVA no_media_needed
2845 KU002845 Risk, Safety, and Failure Prevention — 0.999827547 Valve, Gate, N no_media_needed
2846 KU002846 Risk, Safety, and Failure Prevention — 6.1 Part of an effective RCM program is to determine the failure modes effects and conduct criticality analysis (FMECA) of a no_media_needed
2847 KU002847 Risk, Safety, and Failure Prevention — Define the system— Identify levels of indenture Define ground rules and assumptions Construct equipment tree Identify fa no_media_needed
2848 KU002848 Risk, Safety, and Failure Prevention — 6.5 Basic Block Diagram of the RCM Process media_required
2849 KU002849 Risk, Safety, and Failure Prevention — 6.6 Example of FMECA no_media_needed
2850 KU002850 Risk, Safety, and Failure Prevention — 6.6.2.4 With availability metrics representative of system configuration now available, component availability is ranked to prov no_media_needed
2851 KU002851 Risk, Safety, and Failure Prevention — 6.6.3.2 Severity rankings used are as shown in Table I no_media_needed
2852 KU002852 Risk, Safety, and Failure Prevention — 6.6.4.2 This calculation will be performed for every subsystem item in the master equipment listing no_media_needed
2853 KU002853 Risk, Safety, and Failure Prevention — wy ai3 aes 23'S EOg we Ege , g <4 o 50 goo o = m | gga sos Ep bas s ° 5 Bes co 5 ie § Q ¢ = xc a Q A a rd 3 < ge Ee = =x no_media_needed
2854 KU002854 Risk, Safety, and Failure Prevention — Figure E.53 Recloser Data Record. no_media_needed
2855 KU002855 Risk, Safety, and Failure Prevention — me 28 BS a 2 te ga 20 && & a a a) eg fs 23 aE g vo. no_media_needed
2856 KU002856 Risk, Safety, and Failure Prevention — 1.1 Poor power quality is an undesirable deviation or interruption of the ideal power supply no_media_needed
2857 KU002857 Risk, Safety, and Failure Prevention — • (4) Reduced equipment performance and productivity • (5) Degraded data and communications Power quality disturbances c media_required
2858 KU002858 Risk, Safety, and Failure Prevention — Electrical noise • (8) Interharmonics • (9) Voltage fluctuations (light flicker) Examples demonstrate waveforms with com no_media_needed
2859 KU002859 Risk, Safety, and Failure Prevention — Figure J.1.1(b) Waveform of Sag Cleared by Supply Line Breaker Operation. no_media_needed
2860 KU002860 Risk, Safety, and Failure Prevention — Harmonics distort and change the rms magnitude of the waveform. no_media_needed
2861 KU002861 Risk, Safety, and Failure Prevention — 2.1 Harmonic Symptoms/Effects no_media_needed
2862 KU002862 Risk, Safety, and Failure Prevention — • (3) Nuisance operation of protective devices • (4) Unexplained blowing of fuses on power-factor correction capacitors no_media_needed
2863 KU002863 Risk, Safety, and Failure Prevention — 2.1 Example of Frequency Response Characteristic for a 1500 kVA, 13 media_required
2864 KU002864 Risk, Safety, and Failure Prevention — h= resonant frequency as a multiple of the fundamental frequency (Hz) Xc= shunt capacitive reactance of capacitor (ohms) no_media_needed
2865 KU002865 Risk, Safety, and Failure Prevention — Generators equipped with solid-state controls can also operate erratically in the presence of harmonics if the controls media_required
2866 KU002866 Risk, Safety, and Failure Prevention — 2.3 Harmonic Surveying and Testing no_media_needed
2867 KU002867 Risk, Safety, and Failure Prevention — 2.3.5 Harmonic distortion can vary significantly with load media_required
2868 KU002868 Risk, Safety, and Failure Prevention — Replacement of existing equipment with higher rated equipment • (3) Use of delta-wye- or delta-delta-connected transform no_media_needed
2869 KU002869 Risk, Safety, and Failure Prevention — 3.1 Transient Symptoms and Effects no_media_needed
2870 KU002870 Risk, Safety, and Failure Prevention — 3.2 Causes of Transients no_media_needed
2871 KU002871 Risk, Safety, and Failure Prevention — 3.4.2 Surge arresters are intended to be installed ahead of the service entrance equipment for limiting transient voltage by d no_media_needed
2872 KU002872 Risk, Safety, and Failure Prevention — | 400: e x & 5 S x % 2 300. no_media_needed
2873 KU002873 Risk, Safety, and Failure Prevention — 4.1 Symptoms of Sags and Swells no_media_needed
2874 KU002874 Risk, Safety, and Failure Prevention — 4.3 Monitoring and Testing for Sags and Swells no_media_needed
2875 KU002875 Risk, Safety, and Failure Prevention — 5.2 Causes of Long-Duration Undervoltage no_media_needed
2876 KU002876 Risk, Safety, and Failure Prevention — 6.1 illustrates the typical percentage increases in motor losses and heating for various levels of voltage unbalance no_media_needed
2877 KU002877 Risk, Safety, and Failure Prevention — 6.3 Monitoring and Testing of Unbalanced Voltages media_required
2878 KU002878 Risk, Safety, and Failure Prevention — 6.4.6 Fuses and protective devices in each phase should be checked and replaced as needed media_required
2879 KU002879 Risk, Safety, and Failure Prevention — 8.1 Symptoms of Noise no_media_needed
2880 KU002880 Risk, Safety, and Failure Prevention — 8.3 Monitoring and Testing of Noise no_media_needed
2881 KU002881 Risk, Safety, and Failure Prevention — 9.1 Symptoms of Interharmonics no_media_needed
2882 KU002882 Risk, Safety, and Failure Prevention — 9.2 Causes of Interharmonics no_media_needed
2883 KU002883 Risk, Safety, and Failure Prevention — 10.1 Voltage Fluctuations Symptoms no_media_needed
2884 KU002884 Risk, Safety, and Failure Prevention — 10.3 Voltage Fluctuations Monitoring and Testing no_media_needed
2885 KU002885 Risk, Safety, and Failure Prevention — Power quality audits are overall studies used to evaluate the overall power quality of the system. no_media_needed
2886 KU002886 Risk, Safety, and Failure Prevention — Table J.11 Typical Power Quality Parameters to be Monitored No. no_media_needed
2887 KU002887 Risk, Safety, and Failure Prevention — • (2) Securing the facility to limit damage • (3) Mobilization of recovery personnel • (4) Developing a safety plan • (5 media_required
2888 KU002888 Risk, Safety, and Failure Prevention — 2.1 The Initial Event no_media_needed
2889 KU002889 Risk, Safety, and Failure Prevention — 2.3 Mobilization of Recovery Personnel no_media_needed
2890 KU002890 Risk, Safety, and Failure Prevention — 2.3.3 Notification to Insurance Carrier no_media_needed
2891 KU002891 Risk, Safety, and Failure Prevention — When disaster events occur, there is often a loss of normal utility power. media_required
2892 KU002892 Documentation and Records — Equipment enclosures should be inspected for any signs of deterioration, oxidation, impact from environmental factors, l no_media_needed
2893 KU002893 Documentation and Records — All enclosures and housings for circuit breakers (switchgear, switchboards, or other) should be inspected and checked fo no_media_needed
2894 KU002894 Documentation and Records — • (5) Hidden surfaces such as the adjacent edges between the upper and lower members of split-type bus supports or the e media_required
2895 KU002895 Documentation and Records — 12.3.4 Temperatures over design levels for prolonged periods can reduce the electrical life of organic insulating materials no_media_needed
2896 KU002896 Documentation and Records — 12.3.5 Online partial discharge (PD) surveys can be performed by permanently installed sensors and PD detection systems or with media_required
2897 KU002897 Documentation and Records — 0.635 kV through 38 kV with continuous current ratings above 600 amperes media_required
2898 KU002898 Documentation and Records — 14.3.2.1 Where combustible dust is involved, caution should be exercised to ensure that an ignition hazard is not created no_media_needed
2899 KU002899 Documentation and Records — 14.3.5 Metal-Enclosed Bus Dielectric Withstand Test Voltages Metal-Enclosed Bus Nominal Voltage (kV, rms) Insulation Withstand no_media_needed
2900 KU002900 Documentation and Records — 16.3.5 Fuses can be tested with a continuity tester to verify that the fuse is not open no_media_needed