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Engineering drawings are the primary communication tool between designers and deep hole drilling shops. A single symbol or abbreviation conveys essential requirements for hole geometry, surface finish, and quality. Misreading or omitting these specifications is a leading cause of machining errors. This reference covers the symbols, abbreviations, and callout conventions most relevant to deep hole drilling.
ISO 15786: Simplified Hole Representation
The primary international standard for hole representation on engineering drawings is ISO 15786:2008 — Technical drawings — Simplified representation and dimensioning of holes. This standard defines three levels of representation:
| Level | Description | When to Use |
|---|---|---|
| A | Complete representation with complete dimensioning | Complex parts, first articles |
| B | Complete representation with simplified dimensioning | Production drawings |
| C | Simplified representation (center lines only) | Assembly drawings, simple parts |
Callout Order
ISO 15786 specifies that features in a hole callout are arranged largest to smallest:
⌀5.5 — ⌀6.3 × 90° — M6 × 1 — 6H
This means: ⌀5.5 through hole, countersunk to ⌀6.3 at 90°, threaded M6 × 1 with 6H tolerance.
TIP
Note that ISO 15786 uses largest-to-smallest ordering, which differs from BS 8888 / ISO 129-1 (smallest to largest). Companies should explicitly state which convention they follow in the drawing title block to avoid misinterpretation.
Depth Symbol
The depth symbol (↧) — a downward-pointing arrow — indicates the depth of a blind hole feature.
| Symbol | Unicode | Meaning |
|---|---|---|
| ↧ | U+21A7 | Depth (downward arrow from horizontal bar) |
| ↓ | U+2193 | Alternative depth indicator (less common) |
| ∇ | U+2207 | Sometimes used as depth (older practice) |
Depth Callout Examples
| Callout | Meaning |
|---|---|
| ⌀10 ↧ 200 | 10 mm diameter, 200 mm deep |
| ⌀10 THRU | 10 mm diameter, through hole |
| ⌀10 ↧ 200 V | 10 mm diameter, 200 mm deep, conical bottom (drill point) |
| ⌀8 ↧ 150 U | 8 mm diameter, 150 mm deep, flat bottom |
| M10 × 1.5 — 6H ↧ 25 | M10 threaded hole, 25 mm thread depth |
Hole Bottom Symbols (ISO 15786)
| Symbol | Meaning | Typical Application |
|---|---|---|
| V | Conical bottom (drill point) | Standard drilling, gun drilling entry |
| U | Flat bottom | Counterbore, spotface, flat-end boring |
| W | Special bottom shape | Custom geometry |
WARNING
When a blind hole is called out with depth, the depth typically refers to the full-diameter depth, not the depth including the drill point. The conical point of a standard drill adds approximately 0.3 × diameter to the total hole depth. For deep hole drilling, the drill point geometry is critical and should be explicitly specified if a specific point angle is required.
Hole Callout Abbreviations
Common Abbreviations
| Abbreviation | Full Term | Meaning |
|---|---|---|
| THRU | Through | Hole passes completely through the part |
| CBORE | Counterbore | Cylindrical enlargement of a hole for a fastener head |
| CSK | Countersink | Conical enlargement for a flat-head fastener |
| SFACE | Spotface | Shallow flat surface for a washer or bearing seat |
| DEEP | Depth | Depth of a feature (alternative to depth symbol) |
| TAP | Tap / Tapped | Threaded hole |
| REAM | Ream | Reamed hole (precise diameter) |
| BORE | Bore | Bored hole (machined to diameter) |
| DRILL | Drill | Drilled hole (ASME discourages specifying process) |
| C'BORE | Counterbore | Alternative to CBORE |
| CSINK | Countersink | Alternative to CSK |
| S'FACE | Spotface | Alternative to SFACE |
Quantity and Pattern Abbreviations
| Abbreviation | Meaning | Example |
|---|---|---|
| 4X | Four times (quantity) | 4X ⌀10 THRU |
| EQL SP | Equally spaced | 6X ⌀8 EQL SP |
| PCD | Pitch circle diameter | 6-⌀8 EQL SP PCD 100 |
| BC | Bolt circle | Same as PCD |
| AR | As required | TYP unless noted |
GD&T Symbols for Deep Hole Drilling
Geometric Dimensioning and Tolerancing (GD&T) symbols are particularly important for deep hole drilling because hole straightness, position, and roundness directly affect part function.
Straightness Control
Straightness is the most critical GD&T control for deep hole drilling. It controls the deviation of the hole axis from a perfect straight line.
| Symbol | Meaning | Tolerance Zone |
|---|---|---|
| — (straight line) | Straightness | Cylinder of specified diameter along the hole length |
Example: A hole with straightness tolerance of 0.1 mm means the hole axis must lie within a cylinder of 0.1 mm diameter over the entire hole length.
Typical Straightness Tolerances for Deep Hole Drilling
| Application | Straightness Tolerance | Drilling Process |
|---|---|---|
| General hydraulic cylinder | 0.05 mm per 100 mm | BTA drilling |
| Precision gun drilling | 0.02 mm per 100 mm | Gun drilling with steady rests |
| Aerospace structural | 0.01 mm per 100 mm | Precision gun drilling |
| Medical implant | 0.005 mm per 100 mm | Precision gun drilling with guide |
| Oil and gas valve | 0.03 mm per 100 mm | BTA or gun drilling |
Other Relevant GD&T Controls
| Symbol | Control | Relevance to Deep Hole Drilling |
|---|---|---|
| ◎ | Concentricity | Controlling bore centerline relative to OD — critical for concentric holes |
| ◎ | Coaxiality | Aligning multiple bore sections — important for stepped deep holes |
| ⌔ | Position | Hole location relative to datums — essential for cross-holes and patterns |
| ⃝ | Circularity | Roundness of the bore at any cross-section — affects seal performance |
| ⌔ | Cylindricity | Combined roundness and straightness — for precision bores |
| ⏥ | Parallelism | Bore axis relative to datum surface — for alignment-critical parts |
| ⟂ | Perpendicularity | Bore axis relative to reference face — for squareness at entry |
GD&T Callout Example for a Deep Drilled Hole
⌀10 ±0.02
↧ 500
— 0.05 (straightness)
◎ 0.1 A (concentricity to datum A)This means: 10 mm diameter hole with ±0.02 mm tolerance, 500 mm deep, straightness within 0.05 mm, concentric to datum A within 0.1 mm.
Surface Finish Symbols
Surface finish of the bore wall is critical for many deep hole drilling applications and is specified using ISO 1302 symbols.
ISO 1302 Basic Symbols
| Symbol | Meaning |
|---|---|
| ✓ | Basic symbol — any process allowed |
| ✓— | Material removal required (machining) |
| ✓○ | No material removal allowed (as-cast, as-forged) |
Ra Values and Applications for Deep Hole Drilling
| Ra (μm) | N Grade | Typical Deep Hole Drilling Application |
|---|---|---|
| 0.2 | N4 | Medical implant bores, precision metering |
| 0.4 | N5 | Hydraulic valve bores, fuel injection components |
| 0.8 | N6 | Precision cylinder tubes, bearing surfaces |
| 1.6 | N7 | Standard gun drilling finish, general hydraulic cylinders |
| 3.2 | N8 | BTA drilling finish, non-critical structural bores |
| 6.3 | N9 | Rough drilled, secondary finishing planned |
Surface Finish Callout Examples
| Callout | Meaning |
|---|---|
| Ra 1.6 | Surface roughness ≤ 1.6 μm, any process |
| Ra 1.6 (with material removal bar) | Must be machined to ≤ 1.6 μm |
| Ra 0.8 C | ≤ 0.8 μm, circular tool marks (from turning/boring) |
| ALL MACHINED SURFACES Ra 3.2 UNLESS O/W SPECIFIED | Default finish note |
TIP
Over-specifying surface finish is a common and costly mistake. Research indicates approximately 25% of engineering drawings specify unnecessarily tight surface finish on non-functional surfaces, adding 15–35% to machining cost. For deep hole drilling, specifying Ra 0.8 when Ra 1.6 would suffice can double the cycle time due to the lower feed rates required. Specify finish based on functional need, not habit.
Process-Specific Drawing Notes
Gun Drilling Notes
Common notes on drawings for gun drilling:
| Note | Meaning |
|---|---|
| GUN DRILL | Hole requires gun drilling process |
| GUNDRILL FINISH | Surface finish achieved by gun drilling |
| GUIDE BUSH START | Entry requires guide bushing support |
| BREAKOUT APPROVED | Slight breakout at exit is acceptable |
BTA Drilling Notes
| Note | Meaning |
|---|---|
| BTA DRILL | Hole requires BTA drilling process |
| BTA FINISH | Surface finish as-produced by BTA head |
| OIL FEEDER SEAL | Coolant seal required at entry face |
| CHIP PASSAGE CLR | Clearance for chip flow at tool |
General Deep Hole Drilling Notes
| Note | Meaning |
|---|---|
| DEEP HOLE DRILL PER [SPECIFICATION] | Reference to deep hole drilling standard |
| HOLE STRAIGHTNESS PER ISO 1101 | GD&T straightness standard applies |
| MAX L/D RATIO [X]:1 | Maximum depth-to-diameter ratio |
| COOLANT HOLE | Passage for coolant flow (not a structural bore) |
| WITNESS HOLE | Inspection access hole |
| DRILL AFTER ASSEMBLY (DAA) | Hole to be drilled after assembly |
Drawing Standards Comparison
ISO vs. ASME Hole Callout Differences
| Aspect | ISO 15786 | ASME Y14.5 |
|---|---|---|
| Depth symbol | ↧ (downward arrow) | ∇ or "DEEP" |
| Through hole | THRU | THRU or THROUGH |
| Hole bottom symbols | U, V, W | Not standardized |
| Counterbore symbol | Dedicated symbol (⌴) | CBORE or symbol |
| Countersink symbol | Dedicated symbol (⌵) | CSK or symbol |
| Feature order | Largest to smallest | Smallest to largest |
| Thread callout | M10 × 1.5 — 6H | 3/8-16 UNC-2B |
Common Inch vs. Metric Hole Callouts
| Feature | Metric Callout | Inch Callout |
|---|---|---|
| Through hole | 4X ⌀10 THRU | 4X ⌀.375 THRU |
| Blind hole | ⌀10 ↧ 25 | ⌀.375 ∇ 1.000 |
| Counterbored hole | ⌀10 THRU / ⌀15 CBORE ↧ 5 | ⌀.375 THRU / ⌀.562 CBORE ∇.187 |
| Countersunk hole | ⌀5 THRU / ⌀10 CSK × 90° | ⌀.188 THRU / ⌀.375 CSK × 82° |
| Tapped through | M10 × 1.5 — 6H THRU | 3/8-16 UNC-2B THRU |
| Tapped blind | M10 × 1.5 — 6H ↧ 15 | 3/8-16 UNC-2B ↧ .625 |
Complete Deep Hole Drawing Callout Examples
Example 1: Hydraulic Cylinder Tube
BORE: ⌀50 H8 (50.000 / 50.039)
↧ 800
— 0.1 (straightness over full length)
Ra 1.6 C (circular lay)
NOTE: BTA DRILL, OIL FEEDER SEAL AT ENTRY FACEExample 2: Precision Gun Drilled Shaft
HOLE: ⌀8.000 ±0.015
↧ 400
— 0.02 (straightness)
◎ 0.05 A (concentric to datum A)
Ra 0.8
NOTE: GUN DRILL. GUIDE BUSHING REQUIRED AT ENTRY.
MAX RUNOUT AT TIP: 0.01 TIRExample 3: Stepped Deep Hole
SECTION A: ⌀20 H7 ↧ 100
SECTION B: ⌀15 H7 ↧ 300 (from bottom of section A)
SECTION C: ⌀10 H7 ↧ 200 (from bottom of section B)
NOTE: STEPPED DEEP HOLE. CONCENTRICITY BETWEEN SECTIONS: 0.05.
TOTAL DEPTH: 600 mm.Example 4: Cross-Hole Pattern in Deep Bore
MAIN BORE: ⌀30 H7 ↧ 500, Ra 1.6
CROSS HOLES: 4X ⌀6 THRU, ⟂ TO MAIN BORE WITHIN 0.1
SPACED AT 90°, 50 mm FROM ENTRY FACE
NOTE: DRILL CROSS HOLES AFTER MAIN BORE COMPLETE.
DEBURR AND CLEAN ALL PASSAGES.Common Mistakes in Hole Callouts
| Mistake | Problem | Correction |
|---|---|---|
| Omitting straightness tolerance | Shop assumes no straightness control | Always specify straightness for deep holes |
| Specifying process instead of result | "DRILL" implies a method, not a requirement | Specify finished size and tolerance |
| Unclear depth reference | Depth with or without drill point? | State "full diameter depth" or "depth incl. point" |
| Missing surface finish | Shop uses default (may be wrong for function) | Specify Ra for bore surfaces |
| Over-specifying tolerance | Higher cost, longer lead time | Specify only what function requires |
| No datum reference | Position tolerance has no reference | Always define datums |
| Conflicting callouts | Drawing and general note disagree | Cross-check all annotations before release |
FAQ
Q: What is the depth symbol on an engineering drawing? The depth symbol is a downward-pointing arrow (↧, Unicode U+21A7, or sometimes ∇). It precedes the depth value in a hole callout. Example: ⌀10 ↧ 200 means a 10 mm diameter hole, 200 mm deep.
Q: What does THRU mean in a hole callout? THRU means the hole passes completely through the workpiece. Example: ⌀10 THRU is a 10 mm through hole. Some older drawings use THRO' as an abbreviation.
Q: How is hole straightness specified on a drawing? Straightness is specified using the straightness GD&T symbol (—) followed by the tolerance value. Example: — 0.1 means the hole axis must lie within a 0.1 mm diameter cylinder. For deep holes, straightness should always be explicitly specified.
Q: What surface finish is typical for gun drilled holes? Standard gun drilling produces Ra 1.6–3.2 μm. Precision gun drilling with optimized parameters can achieve Ra 0.8 μm. Specifying Ra 0.4 μm or better typically requires secondary operations such as honing or boring.
Q: What is the difference between CBORE and CSK? CBORE (counterbore) is a flat-bottomed cylindrical enlargement of a hole, typically for a socket head cap screw. CSK (countersink) is a conical enlargement, typically for a flat-head screw. Counterbores are specified by diameter and depth; countersinks by diameter and angle.
Q: What does the V symbol mean in a hole callout? Per ISO 15786, V indicates a conical bottom hole (standard drill point). U indicates a flat bottom hole. W indicates a special bottom shape. These symbols are placed after the depth value.
Q: How is deep hole drilling indicated on a drawing? There is no single ISO symbol for "deep hole drilling." Instead, it is indicated by the hole dimensions (length significantly exceeding diameter), a straightness tolerance, and often a note such as "GUN DRILL" or "BTA DRILL" referencing the required process.
Q: What is the correct order of features in an ISO hole callout? Per ISO 15786, features are arranged largest to smallest: through hole diameter, then counterbore or countersink, then thread specification. For example: ⌀5.5 — ⌀6.3 × 90° — M6 × 1 — 6H.
Q: What GD&T controls are most important for deep drilled holes? Straightness is the most critical control for deep holes. Concentricity (for stepped bores), position (for hole location), and surface finish (for bore quality) are the next most important. Cylindricity may be specified for precision sealing surfaces.
Q: How do ISO and ASME hole callout conventions differ? ISO 15786 uses the depth symbol ↧, hole bottom symbols U/V/W, and largest-to-smallest feature ordering. ASME Y14.5 typically uses "DEEP" or ∇ for depth, does not standardize bottom symbols, and uses smallest-to-largest ordering. Thread callouts also differ (M10 × 1.5 vs. 3/8-16 UNC).