Tin wye

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Pipe wyes are used to to allow one pipe to join another pipe at some degree or angle. As the name suggests, the pipe wyes are Y-shaped pipe fitting devices. They are a popular type of pipe fitting used in various industrial applications. Pipe wyes and pipe tees: Pipe wyes are similar to pipe tees.

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1.5”, the trap arm 1.5”, and the p-trap 1.5”.Here’s how to connect the plumbing under your bathroom sink.You will need a 1.5″ trap adapter and a 1.5″ plastic tubing p-trap (sometimes called trim trap).Trim Trap kits come with two different sizes of washers. You’ll use the 1.5″ x 1.25″ slip joint washer to connect the P-Trap to the lav’s 1.25″ waste outlet.See the bathroom sink plumbing diagram below…Keep in mind, this is a P-Trap and not an S-Trap. If you’re dealing with an s-trap, read our S-Trap article hereBoth major plumbing codes in the U.S. permit a single basin lav to be roughed in with a 1.25” vent and a 1.25” trap. See IPC Table 709.1 or UPC Table 702.1.However, in this example, I’m going all 1.5 inches.Let’s follow this bath lav’s drain downstream. You’ll see the vertical to horizontal transition pictured below.Remember this important plumbing tip when it comes to drainage (not venting):“When waste transitions from a vertical pipe to a horizontal pipe…always use long pattern DWV fittings.”In the above example, there are two acceptable fittings to choose from:Wye with 45…or a Combination Wye and 1/8 Bend (Combo Fitting)We’re using a 3”x3”x1.5” wye with a 1.5” street 45.Let’s move upstream to talk about the toilet drain.I’m using a 4-inch closet flange. It’s connected to a 4”x3” closet bend. The closet bend fitting is 4 inches on the inlet and 3 inches on the outlet.Then, the outlet of the closet bend connects into a 3-inch sanitary tee via a short piece of 3 inch PVC.As we follow the toilet’s drain downstream of the san tee, notice another vertical to horizontal transition.Remember that plumbing tip? If so, you’ll be able to answer this question:What types of DWV fittings does the code permit for vertical to horizontal transition?A.) Long Sweep FittingsB.) Short Sweep FittingsThe answer is A.And that’s why I’m plumbing this transition with a 3” combo (aka combination wye and ⅛ bend).Also, notice the cleanout plug in the diagram above.To add a plumbing cleanout, you’ll need two additional fittings:A 3” cleanout adapter…And a 3” cleanout plug…The cleanout adapter glues right into the inlet of the combo. And provides a convenient point of access to rod the drain in case of a backup.By the way, other types of DWV fittings work for vertical to horizontal transitions.For example,Wye with 45Long Turn 90Two 45’sLet’s move downstream into this drainage system.In the plumbing diagram below, notice how the bathroom’s 3-inch drain wye’s right into the building drain.That’s just a 3-inch wye (with 45). You could also use a 3-inch combo for this connection.Now that you have a good handle on this bathroom’s drainage system,Let’s switch gears and talk about…Bathroom Plumbing Venting and why it’s important.Every Pipe wyes are used to to allow one pipe to join another pipe at some degree or angle. As the name suggests, the pipe wyes are Y-shaped pipe fitting devices. They are a popular type of pipe fitting used in various industrial applications. Pipe wyes and pipe tees: Pipe wyes are similar to pipe tees. This is a republishing of Electrician Bible application, and the reason is that due to natural disaster I lost my developing computer with all the information on it. For that reason I cannot upload more software update to the existing (Electrician Bible) in Google play store.We apologize for any inconvenience that this may have caused.You must be in android version 4.0 Ice Cream Sandwich or greater, and have an internet connection on your device.A must have utility for electrician's, electrical contractors or those looking to pass an electrical certification. Calculations per National Electric Code 2020.Calculations included:Voltage Drop-Circuit’s Conductors voltage drop.-Minimum Conductor Size.Pipe Bend-Offset.-Three bend saddles.-Rolling Offset-Detail Conduit Support.-Segment bending.-Double 45 Degree 90.Raceway calculations.-Raceway size calculation.-Raceway calculation-Maximum number of same size wires-Conduit Support\n-Conductors Support-Conduit spacing-Conductor Applications and Insulations-Cable Tray Calculation-Metric Trade Size Designators.-R90, RW75, TWN75,T90, TW, TW75, TWU, TWU75Ampacity-Conductor Ampacity, wire size.-table 301.15(B)(16).Box Fill-Sizing outlet box.-Sizing Pull box.Load calculation (Residential)-Single family.-Range and dryer’s calculation.-Service \ Feeder Conductors.Transformers-Transformers Size.-Transformers OCPD calculations.-Transformers Short Circuit calculations.-Delta-Wye transformers Calculations.Motors calculations-Motor OCPD calculations.-Motor NEMA Starters calculation.-Motor Locked Rotor Calculation.-A/C motor calculation.Electrical schematics- Delta-delta transformers.- Delta-Wye transformers.- Three way switch.- Start/stop AC motor.- 3 phase A.C. Motor Winding and Connections Wye- 3 phase A.C. Motor Winding and Connections Delta- Network cable wiring pin-out.- Wye Start-Delta Run.- Electrical SymbolsBurial Depth-600v or less.-Over 600v.Grounding-Equipment Grounding-Grounding Electrode Conductor.-Grounded Conductor, Main Bonding Jumper, System Bonding Jumper, and Supply-Side Bonding Jumper for Alternating-Current Systems.NEMA Device Configurations.-Plugs.-Enclosures.Electrical Calculations.-Formula Wheel.-Power Triangle.-Series/Parallel.NEC Tables section.Color Code.-Resistors color code.-Phase wire color code.-Panel color code.NEC Calculations Examples.-Bank load calculation.-Store load calculation.-Scholl load calculation.-Multi-family dwelling load calculation.-Office building load calculation.-Restaurant load calculation.-Motor I load calculation.-Motor II load calculation.-Ranges load calculation.2014 NEC Code Changes.Units Converter.- Temperature.- Energy.- Length.- AWG to millimeter.- Watts to Lumens.- Torque.- Fraction calculator.NFPA 70E Table 130.7 (C) (16).Arc Flash Calculation.- NFPA 70E Table 130.7 (C) (15)(a).Torque

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User2038

1.5”, the trap arm 1.5”, and the p-trap 1.5”.Here’s how to connect the plumbing under your bathroom sink.You will need a 1.5″ trap adapter and a 1.5″ plastic tubing p-trap (sometimes called trim trap).Trim Trap kits come with two different sizes of washers. You’ll use the 1.5″ x 1.25″ slip joint washer to connect the P-Trap to the lav’s 1.25″ waste outlet.See the bathroom sink plumbing diagram below…Keep in mind, this is a P-Trap and not an S-Trap. If you’re dealing with an s-trap, read our S-Trap article hereBoth major plumbing codes in the U.S. permit a single basin lav to be roughed in with a 1.25” vent and a 1.25” trap. See IPC Table 709.1 or UPC Table 702.1.However, in this example, I’m going all 1.5 inches.Let’s follow this bath lav’s drain downstream. You’ll see the vertical to horizontal transition pictured below.Remember this important plumbing tip when it comes to drainage (not venting):“When waste transitions from a vertical pipe to a horizontal pipe…always use long pattern DWV fittings.”In the above example, there are two acceptable fittings to choose from:Wye with 45…or a Combination Wye and 1/8 Bend (Combo Fitting)We’re using a 3”x3”x1.5” wye with a 1.5” street 45.Let’s move upstream to talk about the toilet drain.I’m using a 4-inch closet flange. It’s connected to a 4”x3” closet bend. The closet bend fitting is 4 inches on the inlet and 3 inches on the outlet.Then, the outlet of the closet bend connects into a 3-inch sanitary tee via a short piece of 3 inch PVC.As we follow the toilet’s drain downstream of the san tee, notice another vertical to horizontal transition.Remember that plumbing tip? If so, you’ll be able to answer this question:What types of DWV fittings does the code permit for vertical to horizontal transition?A.) Long Sweep FittingsB.) Short Sweep FittingsThe answer is A.And that’s why I’m plumbing this transition with a 3” combo (aka combination wye and ⅛ bend).Also, notice the cleanout plug in the diagram above.To add a plumbing cleanout, you’ll need two additional fittings:A 3” cleanout adapter…And a 3” cleanout plug…The cleanout adapter glues right into the inlet of the combo. And provides a convenient point of access to rod the drain in case of a backup.By the way, other types of DWV fittings work for vertical to horizontal transitions.For example,Wye with 45Long Turn 90Two 45’sLet’s move downstream into this drainage system.In the plumbing diagram below, notice how the bathroom’s 3-inch drain wye’s right into the building drain.That’s just a 3-inch wye (with 45). You could also use a 3-inch combo for this connection.Now that you have a good handle on this bathroom’s drainage system,Let’s switch gears and talk about…Bathroom Plumbing Venting and why it’s important.Every

2025-04-02
User4291

This is a republishing of Electrician Bible application, and the reason is that due to natural disaster I lost my developing computer with all the information on it. For that reason I cannot upload more software update to the existing (Electrician Bible) in Google play store.We apologize for any inconvenience that this may have caused.You must be in android version 4.0 Ice Cream Sandwich or greater, and have an internet connection on your device.A must have utility for electrician's, electrical contractors or those looking to pass an electrical certification. Calculations per National Electric Code 2020.Calculations included:Voltage Drop-Circuit’s Conductors voltage drop.-Minimum Conductor Size.Pipe Bend-Offset.-Three bend saddles.-Rolling Offset-Detail Conduit Support.-Segment bending.-Double 45 Degree 90.Raceway calculations.-Raceway size calculation.-Raceway calculation-Maximum number of same size wires-Conduit Support\n-Conductors Support-Conduit spacing-Conductor Applications and Insulations-Cable Tray Calculation-Metric Trade Size Designators.-R90, RW75, TWN75,T90, TW, TW75, TWU, TWU75Ampacity-Conductor Ampacity, wire size.-table 301.15(B)(16).Box Fill-Sizing outlet box.-Sizing Pull box.Load calculation (Residential)-Single family.-Range and dryer’s calculation.-Service \ Feeder Conductors.Transformers-Transformers Size.-Transformers OCPD calculations.-Transformers Short Circuit calculations.-Delta-Wye transformers Calculations.Motors calculations-Motor OCPD calculations.-Motor NEMA Starters calculation.-Motor Locked Rotor Calculation.-A/C motor calculation.Electrical schematics- Delta-delta transformers.- Delta-Wye transformers.- Three way switch.- Start/stop AC motor.- 3 phase A.C. Motor Winding and Connections Wye- 3 phase A.C. Motor Winding and Connections Delta- Network cable wiring pin-out.- Wye Start-Delta Run.- Electrical SymbolsBurial Depth-600v or less.-Over 600v.Grounding-Equipment Grounding-Grounding Electrode Conductor.-Grounded Conductor, Main Bonding Jumper, System Bonding Jumper, and Supply-Side Bonding Jumper for Alternating-Current Systems.NEMA Device Configurations.-Plugs.-Enclosures.Electrical Calculations.-Formula Wheel.-Power Triangle.-Series/Parallel.NEC Tables section.Color Code.-Resistors color code.-Phase wire color code.-Panel color code.NEC Calculations Examples.-Bank load calculation.-Store load calculation.-Scholl load calculation.-Multi-family dwelling load calculation.-Office building load calculation.-Restaurant load calculation.-Motor I load calculation.-Motor II load calculation.-Ranges load calculation.2014 NEC Code Changes.Units Converter.- Temperature.- Energy.- Length.- AWG to millimeter.- Watts to Lumens.- Torque.- Fraction calculator.NFPA 70E Table 130.7 (C) (16).Arc Flash Calculation.- NFPA 70E Table 130.7 (C) (15)(a).Torque

2025-04-13
User2116

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2025-04-05
User7054

Round reveals that voltage rises throughout the first quarter, peaking at a maximum positive value at 90°. The voltage will diminish throughout the second quarter of the revolution, until reaching zero at 180°. In the third quarter of a revolution, voltage would rise in the opposite direction until it attained a maximum negative value at 270°.In the final quarter of a revolution, the voltage would diminish until it hit zero at 360°. This constitutes a full cycle or a complete alternation between positive and negative.Figure 5 – Voltage cyclesFigure 5 – Voltage cyclesThe armature of the simple two-pole AC generator depicted above revolves at 3600 revolutions per minute (RPM), resulting in the generation of 60 cycles of voltage every second, equivalent to 60 hertz (Hz).Should the generator had four poles, it would produce the requisite 60 Hz at a rotational speed of 1800 RPM.Three-Phase VoltageThree-phase power is utilized in the majority of extensive commercial and industrial motor applications. In a three-phase system, the generator generates three voltages. Each voltage phase oscillates at the same frequency (60 Hz in the U.S. and 50 Hz in several other nations).The phases are displaced by 120° relative to one another.Figure 6 – Three-phase powerFigure 6 – Three-phase powerMotor control centers receive electricity via intricate distribution networks comprising power distribution wiring and associated devices. Transformers operating with three-phase electricity necessitate three interlinked coils in both the primary and secondary windings. These transformers can be configured in either a wye or delta arrangement.The transformer type and real voltage are contingent upon the specifications and capacity of the power company, as well as the customer’s requirements. The subsequent figure depicts examples of the secondary windings of wye and delta transformers.Note that these are merely examples, and alternative transformer secondary voltages may exist.Figure 7 – Examples of the secondary windings of wye and delta transformersFigure 7 – Examples of the secondary windings of wye and delta transformersMotor RotationThree-phase voltage is utilized in extensive commercial and industrial establishments to operate AC motors. An AC motor consists of a stationary component, known as the stator, and a rotating component, referred to as the rotor.Three-phase alternating current is supplied to the stator via the power connections.Figure 8 – Three-phase motorFigure 8 – Three-phase motorThe rotational direction of a three-phase AC motor rotor is determined by the phase sequence of the supplied power. In this example, L1 (A) is linked to motor lead T1, L2 (B) is linked to motor lead T2, and L3 (C) is linked to motor lead T3.When electricity is supplied via the “F” connections, the motor rotates in a clockwise (forward) direction.Basics of Motor Control Centers – SIEMENS

2025-04-08
User6282

I would recommend to download (Electrician's Bible) locate on this link ( the app name is Electrician's BibleScroll down to the session More by Quky and tap on the Electrician's Bible app. The reason is that due to natural disaster I lost my developing computer with all the information on it. For that reason I cannot upload more software update to this app (Electrician Bible) in Google play store any more.We apologize for any inconvenience that this may have caused.Please don't download this, instead use this from here warningIf you decided to install this one you wont be able to receive updates any morePlease don't download this, instead use this from here you decided to install this one you wont be able to receive updates any more.You must be in android version 2.3 Gingerbread or greater, and have an internet connection on your device.A most have utility for electrician, electrical contractors or those looking to pass an electrical certification. Calculations per National Electric Code 2011.Calculations included:Voltage Drop-Circuit’s Conductors voltage drop.-Minimum Conductor Size.Pipe Bend-Offset.-Three bend saddles.-Detail Conduit Support.Raceway calculations-Raceway size calculation.-Maximum number of same wire. -Spacing for Conductor Supports.-Conduit support.-Conduit spacing.Ampacity-Conductor Ampacity, wire size.-table 301.15(B)(16).Box Fill-Sizing outlet box.-Sizing Pull box.Load calculation (Residential)-Single family.-Range and dryer’s calculation.-Service \ Feeder Conductors.Transformers-Transformers Size.-Transformers OCPD calculations.-Transformers Short Circuit calculations.-Delta-Wye transformers Calculations.Motors calculations-Motor OCPD calculations.-Motor NEMA Starters calculation.-Motor Locked Rotor Calculation.Electrical schematics-Delta-delta transformers.-Delta-Wye transformers.-Three way switch.-Start/stop AC motor.-3 phase A.C. Motor Windings and Connections Wye-3 phase A.C. Motor Windings and Connections DeltaBurial Depth-600v or less.-Over 600v.Grounding-Equipment Grounding-Grounding Electrode Conductor.NEMA Device Configurations.-Plugs.Electrical Calculations.-Formula Wheel.-Power Triangle.NEC Tables section.Color Code.-Resistors color code.-Phase wire color code.National Electrical Code and "NEC" are registered trademarks of the NFPAIf you like to report bugs or suggestions, please send them to [email protected]

2025-04-17
User3043

Description Abbreviation Wiring Configuration Formula Units Precision RMS Deviation Vcycw-a Single phase Volts +/- 0.2% of Vrms(cycle 1) - Vcycw-b Split phase Reading * Vrms(cycle 2) Subtraction of 1 Vcycw-c 15 KHz BW cycle RMS from Vcycw-d adjacent cycles. Page 293 APPENDIX F/ PQ Parameter Calculations Calculations (continued) Description Abbreviation Wiring Configuration Formula Units Precision Volts RMS of Vfnd-a Single phase Volts +/- 0.2% of fundamental Vfnd-b Split phase Reading * Vfnd-c 15 KHz BW Derived from DFT Vfnd-d is calculated from Vfnd-ab Measured for Delta Vfnd-bc... Page 294 PQ Parameter Calculations, continued Calculations (continued) Description Abbreviation Wiring Configuration Formula Units Precision Amps RMS Irms-a Amps +/- 0.1% of Derived from Irms-b Reading 200mS (10/12 Irms-c +/- 0.05% cycles 50/60 Hz) Irms-d of FS where n=512 samples Aggregated to 9 KHz BW selected interval Amp ½... Page 295 APPENDIX F/ PQ Parameter Calculations Calculations (continued) Description Abbreviation Wiring Configuration Formula Units Precision Phase of Ideg-a Degree +/- 1° fundamental Ideg-b averaged over Ideg-c where n=1 for 1 har- 200ms. Ideg-d monic. Derived from DFT Averaged over 10/12 sine expansion cycles output. Page 296 PQ Parameter Calculations, continued Calculations (continued) Description Abbreviation Wiring Configuration Formula Units Precision Residual Current Ires Delta or Wye only Amps 0.3 % of RMS of Reading +/- 0.15% of FS where n=512 samples Net Current Inet Wye only Amps 0.4 % of RMS of Reading... Page 297 APPENDIX F/ PQ Parameter Calculations Calculations (continued) Description Abbreviation Wiring Configuration Formula Units Precision VA Arithmetic VAfa-tot Wye and Neutral based 0.2 % of Fundamental Total measurements Reading +/- 0.05% of FS True Power Factor TPF-a Wye, uses measured None 1% of values Reading... Page 298 PQ Parameter Calculations, continued Calculations (continued) Description Abbreviation Wiring Configuration Formula Units Precision Total Arithmetic DPFa-tot None +/- 1% Displacement Power Factor VA derived from DFT fundamenta Total Vector DPFv-tot None +/- 1% Displacement Power Factor VA derived from DFT fundamental Total Voltage HVthdfund-a... Page 299 APPENDIX F/ PQ Parameter Calculations Calculations (continued) Description Abbreviation Wiring Configuration Formula Units Precision Total Voltage HVthdrss-a +/- 5% Harmonic HVthdrss-b Distortion Root HVthdrss-c Sum of Squares Per 61000-4-7 (RSS) HVthdrss-d HVthdrss-ab HVthdrss-bc HVthdrss-ca Total Voltage Inter HVtidrss-a +/- 5% Harmonic HVtidrss-b Distortion Root... Page 300 PQ Parameter Calculations, continued Calculations (continued) Description Abbreviation Wiring Configuration Formula Units Precision Total Current HIehd-a +/- 5% Even Harmonic HIehd-b Distortion *100 HIehd-c Normalized to the fundamental HIehd-d Per 61000-4-7 Telephone HVtiffund-a None +/- 1% Influence Factor, HVtiffund-b normalized to TIF = HVtiffund-c Fundamental... Page 301 APPENDIX F/ PQ Parameter Calculations Calculations (continued) Description Abbreviation Wiring Configuration Formula Units Precision Total Harmonic Huspower-a Watts +/- 5% unsigned power Huspower-b Huspower-c Huspower-d Total Harmonic Hspower-a Watts +/- 5% signed power Hspower-b

2025-03-29

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