Tap Macro
๐ Unit Converter
๐ Global Search
Search across all modes, calculations, and reference data
๐ฌ AI Assistant
Ask questions about machining, materials, or get personalized advice
Ask a question to get started with AI assistance
โก Quick Actions
Frequently used tools and calculations
๐ฉ Bolt Circle Calculator
Calculate X/Y coordinates for hole patterns on a circular bolt circle (flange drilling, pocket patterns, layout)
Inputs
Coordinates
Enter values and click Calculate to see coordinates
Preview
๐ก How It Works
๐ฉ Bolt Circle
Holes are evenly distributed around the circle. Start angle (0ยฐ = positive X axis) rotates the pattern.
๐ Use Cases
Drilling flange hole patterns, milling circular pockets, layout coordinates for manual machining.
โ๏ธ Material Weight Calculator
Calculate material weight from dimensions and density for various shapes
Weight Results
Enter dimensions and select material to calculate weight
Quick Reference
Common material densities and shape formulas
Common Densities
- Steel: 0.283 lb/inยณ
- Aluminum: 0.098 lb/inยณ
- Titanium: 0.163 lb/inยณ
- Copper: 0.323 lb/inยณ
Volume Formulas
- Plate: L ร W ร T
- Round Bar: L ร ฯ ร (D/2)ยฒ
- Square Bar: L ร W ร W
- Hex Bar: L ร 2.598 ร Wยฒ
- Tube: L ร ฯ ร (Dยฒ - dยฒ)/4
๐ง Tap Assistant
Calculate tap drill sizes, speeds, and parameters for threading operations
NPT threads use predefined drill sizesโTap Type ignored.
๐ Go gauge must enter fully; no-go gauge must not enter beyond 1-2 turns.
Calculate to see thread profile.
๐ง Smart Suggestions
Generating smart suggestions...
โฑ๏ธ Job Timer
Breaks applied
Laps
Export preview
Feeds & Speeds
Calculate optimal cutting parameters for milling, turning, drilling, and more
Select material and operation to see calculated feeds and speeds
SFM by Material (hard โ soft)
๐ง Smart Suggestions
What-If Scenario Playground
Tweak RPM, feed, DOC, WOC and see instant effects on MRR, tool life, HP, deflection, surface finish, and chatter risk.
Results
Green = safe for production; Yellow = caution; Red = high risk.
MRR vs DOC
Trade-offs (normalized)
Macro Assistant
Haas mill. Code is ready โ change a number and copy.
Probe Z
How # variables work
- A macro is a subprogram. G65 P8010 Q1. jumps to O8010 and comes back at M99.
- The letter you pass is not the # number. Z is always #26, F is #9, Q is #17.
- #1โ#33 live only for that call. They disappear at M99.
- #100โ#199 are scratch paper until power off. #500โ#599 keep their value with the power off.
- #1000 and up belong to the control: positions, offsets, alarms. Read them. Write one only to change the machine.
These programs use O8000 and up so they do not overwrite Renishaw routines in the O9800 range. The table is the variables in the program you have open.
Full letter map
G65 stores each letter in a fixed # number. P is the program number, not a variable. G, L, N, and O are not passed in.
| Letter | # | Letter | # | Letter | # |
|---|---|---|---|---|---|
| A | #1 | I | #4 | R | #18 |
| B | #2 | J | #5 | S | #19 |
| C | #3 | K | #6 | T | #20 |
| D | #7 | M | #13 | U | #21 |
| E | #8 | Q | #17 | V | #22 |
| F | #9 | H | #11 | W | #23 |
| X | #24 | Y | #25 | Z | #26 |
Program
ReadyCheck variables and simulate
Variables
Generate code to list variables.
Console
Simulation output appears here.
G-code Analyzer
Learn G-code by reading, editing, and watching toolpaths. Built for new recruits โ start with the numbered lessons, click codes for help, and play the simulation to see each move.
- Load lesson 01 โ First moves
- Press Analyze (or just edit โ it updates live)
- Hit Play and watch the tool follow the code
- Double-click a G or M code, or click chips in Summary, for definitions
Training Workspace
Edit code ยท watch the path ยท learn the codesLesson coach
TipG-code Editor
ReadyDouble-click a G or M code for a definition ยท Ctrl+Enter to analyze ยท Ctrl+; to comment
Toolpath Visualization
Program Summary
Run analysis to see program metrics.
Macro Variables
No macro variables detected.
Warnings and Errors
Analysis output will appear here. Click a warning to jump to that line.
๐ Chamfer Calculator
Standard round-feature chamfers or plate weld prep with Mastercam Contour Chamfer values
๐ Visualization
Chamfer geometry diagram
Chamfer Results
Enter dimensions and click Calculate to see chamfer results
Quick Reference
Common chamfer angles and applications
Common Angles
- 30ยฐ: Light deburring, edge preparation
- 45ยฐ: Standard chamfer, most common
- 60ยฐ: Heavy chamfer, structural
- Custom: Specific application requirements
Formulas
- Radial Drop: Axial ร tan(angle)
- Diameter Delta: 2 ร Radial Drop
- Chamfer Length: Axial รท cos(angle)
- Inner Diameter: OD - Diameter Delta
Center drill depth
Axial depth for a target spot diameter from the tool tip included angle (sharp cone model).
Drill tip / countersink
Drill point length and countersink axial depth from included angles (sharp cone).
Drill point length
Countersink depth
๐ง NPT Thread Reference
Professional National Standard Taper Pipe Threads - ANSI/ASME B1.20.1
๐งฎ Thread Specifications
Select NPT size to view detailed specifications
๐ Complete NPT Reference Table
All standard NPT thread specifications
| Size | OD (D) | TPI | Pitch (P) | E0 | L1 | L2 | E1 | E2 | Drill (drilled) | Drill (reamed) |
|---|
๐ Understanding NPT Threads
Essential knowledge for proper pipe thread applications
๐ What are NPT Threads?
NPT (National Pipe Thread) is the American standard for tapered threads used on pipes and fittings. The taper creates a seal when male and female threads are tightened together.
- Taper rate: 1/16 per inch (3/4 inch per foot)
- Thread angle: 60ยฐ between sides
- Angle between taper and center axis: 1ยฐ 47' 24" (1.7899ยฐ)
๐ Key Dimensions Explained
The maximum diameter of the external thread
Diameter at the start of the external thread
Length of thread engagement when hand-tight
Maximum thread engagement length
Radio Station mode will be loaded here
Fanuc Alarms mode will be loaded here
Fanuc Glossary mode will be loaded here
๐ Hole Calculator
Enter a bore diameter to get three recommended pin sizes with optimal spacing
๐ฏ Find Pins
Enter bore diameter to get recommended pin sizes
Enter bore diameter and click Calculate to see recommended pin sizes
๐จ Visualization
Interactive visualization of the bore and pin arrangement
๐ก How It Works
๐ฏ Find Pins Mode
Enter a bore diameter to get three recommended pin sizes with the specified spread percentage. The pins will be positioned optimally for accurate measurement.
๐ Pin Positioning
The three pins are positioned at 120-degree intervals around the bore circumference for optimal measurement accuracy.
โ๏ธ Pin Size Spread
Choose the percentage variation between pin sizes. 10% is standard for most applications, while 5% provides higher precision.
๐ Imperial Units
All calculations are performed in inches with selectable decimal precision for machinist accuracy.
GD&T Guide mode will be loaded here
Insert Helper mode will be loaded here
๐ Drill Sizes Reference
Comprehensive drill size database with fractional, letter, number, and metric sizes
๐ Triangle Solver
Sine bar (angle + gage length โ stack height)
Chamfer depth (angle from vertical + top diameter โ depth)
Milling Advisor mode will be loaded here