☰ Docs

Nail Guns & Fasteners

10x12 Gable Shed — Gibson St · July 2026 · Companion to the Gun Map in Shed_Build_Guide.html and Step 0 of Shed_Orders.html. The fine detail: which gun, which nail, where — and the mistakes that don't announce themselves until years later. Reconciled 7/27 sheet-goods rows updated from the pre-catalog "wire coils / siding gun" plan to the as-decided PFR2190 stick-nail assignment.

Inventory

Cataloged July 2026 — Step 0 #1 ✔ · all pneumatic, ¼" NPT

Ownership: the Freeman fleet is BORROWED — confirmed solid through the whole build (July 2026), so no purchases needed at the trim or framing tiers. Compressor decided: Craftsman 6-gal pancake ($99; 2.6 SCFM@90, 150 PSI max, 12A universal motor, 87dB-class) + 2× 50'×3/8" hose — compressor lives at the house outlet (site is 100' out), air travels the hose, +5 PSI at the regulator, no extension cords.
Air hose — the spec that makes the remote compressor work. YOTOO 3/8″ × 50' hybrid (rubber/PVC blend), SKU 102051, 300 PSI max, bend restrictors at both ferrules, 1/4″ brass male fitting on one end and a quick coupler on the other — so the two chain directly into the 100′ run. Two of them = the 100' run.

The 3/8″ bore is not a nicety at this distance. Pressure drop scales at roughly D−4.9, so stepping down to a 1/4″ hose multiplies the loss by about . Over 100 feet that is the difference between a couple of PSI and losing twenty-five or more at the tool — the remote-compressor setup only works because the bore is 3/8″. The +5 PSI at the regulator above is the compensation for what is left.

Hybrid was the right blend for this site: it stays limp in cold, takes no coil memory, lies flat instead of tripping you, and resists abrasion — the run is dragged across a gravel pad and a deck edge every working day. 300 PSI is irrelevant headroom against a 150 PSI compressor.

One caveat: with a 3/8″ hose the 1/4″ quick-connect is now the flow restriction, not the hose. Irrelevant for nailers, which sip air intermittently. It would matter for a continuous-draw tool — air shears or a nibbler for the roof panels — where a high-flow coupler is the upgrade, not a fatter hose.
Owned gunSpecAssigned role
Freeman PFR219021° full-head framing, 2"–3½", .113–.131 shank, 70–115 PSIALL framing (3¼"×.131 HDG ring) plus ply/sheathing/strapping (2"×.113 HDG ring) — covers the coil gun's sheet-goods duties
Freeman PFN156415ga 34° angled finish, to 2½", 70–110 PSIAll cedar trim + stops — 15ga stainless "DA" angled nails
Freeman PBR32Q18ga brad, to 1¼"Sash-lite stops — 18ga stainless brads
Freeman PST9032Q18ga narrow crown stapler, to 1¼"No assigned role (not a cap stapler)
Central Pneumatic 4227518ga brad, to 2", 55–95 PSIBackup brad gun

Gaps 3 open

Compressor rule of thumb: 6-gal pancake ≥2.5 SCFM @ 90 PSI runs any single nailer on this project, including the framer — one operator = one gun at a time.

The Gun Roster

GunPhasesJobs
Framing nailer (PFR2190, 21° stick)2, 3, 4All floor/wall/roof framing: rims↔joists, blocking, half-laps into posts, rafters, seam blocking — NO toenailing, ever (Rule 6)plus all sheet goods: floor plywood, wall sheathing, roof strapping (2" stick rings) was: coil gun
Coil siding nailer (15° wire coil)5Cedar shingles only (buy or rent at Phase 5) sheet goods reassigned to PFR2190
15ga finish nailer (angled)5ALL cedar trim (corner boards, casing, jamb) + window/door stops, sash-lite stops — stainless on the cedar (Rule 2)
Cap nails, hand-driven4Housewrap (cap stapler skipped)
Impact driver (not a gun; listed for completeness)allMetal roofing screws, door builds (Appendix B is screws+glue), hinges, latches, all hardware
Roofing nailerBackup only for shingles if the siding nailer fails — see Rule 3
Trigger modes: sequential (nose-then-trigger, one nail per squeeze) for anything near a visible face — and note the gun does no toenailing at all on this build (Rule 6). Bump fire only earns its speed on the big flat sheet-nailing runs (floor ply, wall sheathing). Re-check the depth setting when switching modes or nail sizes.

Fastener Schedule — master list by fastener type

Keyed by the fastener you actually buy — phase, quantity (approx build count — box sizes vary), and status each in their own column; the "why" and the crosswalk from the plans' spec are in the Notes column and the Rules below. Guns: PFR2190 = 21° framing; PFN1564 = 15ga stainless finish; PBR32Q = 18ga brad; coil siding gun = Phase 5 buy/rent. Restructured 7/29 — keyed by fastener type

Fastener (buy this)Gun / methodWhere usedPhase(s)Qty (approx)StatusNotes
3" × .120 HDG ring shank, 21° stickPFR2190 framingall framing — rims→joists (4/end), blocking, toenail to skids, posts, plates, infill, rafters, ridge, collar ties (girt→post is now the #9 × 2½″ screw — see below)2–4~650on hand (7/28)replaces plans' 16d framing; ring beats 16d common on withdrawal; see +1 rule below
2" × .113 HDG ring shank, 21° stickPFR2190 framing¾" floor ply, ½" wall + gable sheathing, roof strapping — 6"/12" nailing2, 4~1,600on hand (7/28)replaces plans’ 6d galv; ring resists squeak + roof uplift. ~700 of this count is the exterior wall sheathing — already owned, nothing to buy
Loose 16d HDG smooth, 3½"handangle braces → posts & plate, plate-to-post half-laps, visible blind-nail faces, touch-ups3~75on hand — COUNT THEM BEFORE STARTING3½" needed where the gun's 3" runs short in end grain; smooth — 16d HDG ring isn't a retail item
#9 × 2½" coated exterior screw, Type-17 auger pointimpact driver — toe-driven, no predrillgirts & studs → posts (same screw at stud→plate/deck and at the RO sill, head and jacks) — 2 per end, driven in OPPOSING directions: one angled down through the top edge, one angled up through the bottom edge3316 exact — buy 360 (~6 lb)must buy (~$60)replaces the earlier "3" structural screw" spec, and does not violate Rule 6 — see the wall-screw note below
#8 × 1⅝" ACQ/PT-rated, Torx (star) drive, Type-17 pointimpact driverinterior liner → girts & studs; door header (1x4 flat, ¾" stock) — the 2½" would blow through ¾" stock3~330 — buy one 5 lb box (~900 pcs)must buy (~$30)NEVER drywall screws — hardened, brittle, they snap in shear and corrode on contact with PT. Torx is not vanity: 330 screws at awkward angles with a Phillips means cam-out and stripped heads you cannot back out, which defeats the whole reason for choosing screws — the liner has to stay removable
Loose 10d (3") STAINLESS ring shankhandfascia + shadow board + rafters end-nailed through the cedar ridge (3/rafter)4~125buy w/ Order 2stainless per Rule 2 (cedar streaks w/ HDG); 3" is the stocked cedar-fascia size
Loose 6d (2") STAINLESS ring shankhandcedar collar ties → rafters, 7 per rafter (plans say 5; cedar gives ~53% of SYP nail capacity)4~70buy w/ Order 2heads are visible on cedar — Rule 2
#8 × 2" STAINLESS screwsimpact drivercedar strapping → spruce rafters, 2 per rafter4~300buy w/ Order 2heads hidden under the panels, so this is corrosion + uplift, not looks: cedar corrodes steel and this connection is in the uplift chain
Hurricane/rafter ties, ZMAX/G185 + HDG hanger nailshammer / driverevery rafter at its plate seat414buy w/ Order 2untreated spruce holds a toenail worse than PT; G185 minimum because the tie contacts the PT top plate
304 stainless ring-shank siding coils, 1¾"coil siding gun (buy/rent Ph 5)cedar shingles5~1,540buy w/ Order 3stainless mandatory on cedar (Rule 2); the only coil on the build
15ga stainless finish, DA-style (2–2½")PFN1564 finishall cedar trim — corner boards, window/door casing, 1x5 jamb — + stops5~300buy w/ Order 3stainless on cedar (Rule 2)
Loose stainless 8dhandlast nail at cedar-trim board ends5~40buy w/ Order 3Rule 5 — hand-set ends so cedar doesn't split
18ga stainless brads (to 1¼")PBR32Q bradsash-lite stops5~100buy w/ Order 3into painted pine but stainless anyway (next to cedar/glass)
Plastic-cap nailshandhousewrap4~250buy w/ Order 2no cap stapler owned — hand-drive
STAINLESS gasketed roofing screws, 1"impact driver + ¼" nut driverroof panel flats into 3/4" KD cedar strapping4~320buy w/ Order 2two lengths — don't mix them up. 1" leaves ~1/4" proud under the strapping; 1½" would hang 0.6" of tip across the whole ceiling. Count includes doubled density in the ~3' perimeter zones
STAINLESS gasketed roofing screws, 2"impact driver + ¼" nut driverridge cap, through the ribs4~50buy w/ Order 2must cross rib height + strapping thickness
Exterior-rated screws (1⅝" + structural)impact driverdoors (Appendix B = screws + glue), hinges, latches, all hardware5~150buy w/ Order 3upgrade plans' drywall screws to exterior-rated
Loose 6d HDGhandpine stops (painted), toenail touch-ups5 / any~50small boxpine stops don't need stainless (painted, no tannin)
FastenMaster TimberLok 6"/8" structural screwsimpact driver4x6 timber-wall corner tiespre-1 (edging)~20on handsupport/retaining wall, not the shed frame — for completeness

ROOFING-SCREW PATTERN — REQUIRED, not extra credit. On 3/4" KD cedar strapping each #10 screw holds about 49 lb in withdrawal. Edge-zone uplift demand at normal spacing is about 42 lb per screw — a 1.17× margin, which is not enough. Doubling the density in the edge zones halves the demand per screw to ~21 lb and restores it to 2.3×. That pattern is the margin; skip it and there isn't one.

Field: ~12" apart along each strapping run. Edge zones — within 3 ft of the eave, either rake, or the ridge: ~6" apart.

Screws go in the flats, never the ribs — the ridge cap is the only exception, and that takes the 2" screws. Round to whichever valley lands nearest the target spacing; the panel profile decides the exact rib count. Cedar is soft: back the driver clutch off, set the gasket compressed but not crushed, and test the first few on a scrap — an over-driven screw with a crushed washer is a leak and a lost fastener. The ~320-screw count in the schedule already includes the doubled edge zones.

+1 rule: the 3" gun nail carries ~⅓ less shear than a true 16d common (3½" × .162), so drive one extra wherever the plans give a 16d count at a primary joint — rims→joists become 4 per end, not 3.

WALL SCREWS — decided Aug 23, 2026. Why 2½" and not 3": toe-driven at about 30° starting 1" back from the girt’s end, the screw spends 1"/cos 30° = 1.15" crossing the girt, so a 2½" screw lands 1.35" into the post. NDS wants 6D minimum, which for a #9 at 0.177" is 1.06" — it clears by 27%. The 10D figure (1.77") applies to connections carrying design load, and these carry none. 2½" also runs ~62 per pound against ~47, and drives with less torque and less splitting in dense PT.

Why two per end — not for load, for ROTATION. One screw lets the girt pivot around it; two driven parallel from the same face still let it pull straight off. One angled down through the top edge and one angled up through the bottom edge locks both directions. Exception — the girt row at the deck: with only ½" of clearance underneath there is no getting a driver on the bottom edge, so those ends take both screws from the top edge, splayed left and right instead.

Screws, not 16d toenails — and Rule 6 is not violated. Rule 6 governs gun versus hammer, not nail versus screw. Screws win because the frame is standing, plumbed and braced and hammering moves it — that is exactly what put 3/8" of rack into the plate box — and because a 16d driven 1½" from the end of a piece ripped to 2¾" will split it. This replaces the earlier "3" structural screw" spec. Full derivation in Wall_Framing.html.

LINER SCREWS — holding values worth recording. A #8 into the liner alone is 53 lb of thread withdrawal but only 45 lb of head pull-through, which governs. Through the liner and 1½" into a girt it is 212 lb. Formula: W = 2850 × G² × D per inch of penetration — liner G≈0.50, girt G≈0.55, #8 at D=0.164". These are NDS solid-lumber formulas applied to plywood, so trust the ratios and keep margin on the absolutes.

Rule for hanging things later: divide how far it sticks out by how far apart your screws are. If that number is greater than 1, the pull on the top screw exceeds the weight of the object and you must be in a girt.

Keep on hand regardless: hand-drive 16d HDG smooth 3½″ — now the fastener for ALL toenailing on this build (Rule 6): ~200–250 total, so 4–5 lb, not the 1½ lb originally scheduled — plus one small box of 6d HDG for touch-ups and wherever the gun doesn't fit.

The Rules

Ranked by cost of getting them wrong.

  1. PT lumber eats bright nails. HDG or stainless only, everywhere, including collated stock. Nearly all framing on this build is pressure-treated SYP. Modern PT chemistry (copper-based) corrodes plain-steel and electrogalvanized fasteners — the cheap bright collated sticks are for interior framing, not this shed. Hot-dip galvanized (G185) minimum; stainless where cedar is involved.
  2. Stainless against cedar, always. Cedar tannins react with galvanized coatings → black streaks bleeding down the silver-gray finish you're paying a premium for. Shingle coils: stainless. Finish nails into cedar trim/stops: stainless. This is cosmetic-permanent — the streaks never wash out.
  3. Shingles: flush, never sunk. The #1 power-nailing sin on cedar sidewall (Cedar Bureau guidance): an overdriven nail crushes the fibers, starts splits, and creates leak paths. Dial the depth-of-drive down, test on scrap until heads just kiss the surface, re-test at every pressure/temperature change, and hand-tap the occasional proud head. Two nails per shingle, ¾" from edges, ~1" above the next course's butt line (concealed). If the gun won't hold flush-depth reliably, hand-nail — slow beats sorry on 30–50-year siding.
  4. Don't overdrive plywood face veneer. A nail head buried through the veneer loses most of its shear value. The wall sheathing is doing racking duty; the floor ply is structural. Heads flush with the veneer, not through it. Check depth when switching between framing and sheathing — the pressure that sets a 3" framing nail flush will bury a 2" nail.
  5. Stay ~1" off board ends in cedar and 1x pine. Gun nails split thin stock near ends. Hold back an inch, or hand-nail (blunt the tip) for the last fastener at a board end. Predrill anything within ½" of an end.
  6. NEVER toenail with the framing gun. All toenailing is hand-driven 16d HDG smooth. Decided Aug 13, 2026, from the field — the gun underperformed badly toenailing joists to skids and the hammer was simply better, which became the as-built method for all 40. Framing nailers fire perpendicular into a flat face; a ring shank at 45° into dense, wet PT southern yellow pine is at the edge of what they do. This is an upgrade, not a compromise: a 16d common is 0.162″ against the gun nail's 0.120″, and lateral capacity scales at ~D^1.5, so a hand-driven 16d carries ~57% more. The +1 rule does not apply — where a spec says 3 gun toenails, 2 hand-driven 16d does the same work. Splitting: 0.162″ in 1½″ stock near an end will split — blunt the tip, or use 16d box (0.135″) in small pieces. Cedar exception: Rule 2 still governs — stainless anywhere a fastener touches cedar.
  7. Gun nails ≠ hand nails in size. Gun "16d" = 3¼" × .131–.148"; true 16d common = 3½" × .162". Fine for a shed, but compensate by choosing ring shank and the fattest shank the gun takes — especially on rafter seats and strapping (uplift path).

Hand-Nail / No-Gun List

WhereWhyUse
Fascia + shadow boardMost visible trim; gun heads mar cedar; stainless per Rule 2 (cedar); ~80 nails10d (3") stainless ring, hand-driven
ALL toenailing, anywhere on the buildGun skates and under-drives at 45°; 16d is 57% strongerHand — 16d HDG smooth
Post blind-nailing at deck cornersVisible faces, precision placementHand
Within reach of salvaged sash / glassOne hammer slip vs one gun recoil — both bad, gun worse15ga stainless finish gun at low pressure, or hand with care
Doors, hinges, all hardwareScrews by design (adjustability, slam-cycles)Impact driver, exterior screws
Metal roofingGasketed screws in the flatsImpact driver + ¼" nut driver
Last nail at any cedar/pine board endSplit riskHand, blunted tip

Quick Depth-Check Ritual

Start of every gun session — and again at every nail-size or trigger-mode swap.

  1. Scrap of today's actual material combination.
  2. Fire two, inspect: framing = flush or negligibly proud; sheathing = flush, veneer intact; shingles = head kissing surface, zero crush ring.
  3. Adjust pressure/depth wheel, repeat until right.
  4. Re-check after lunch (compressor and lumber both change with temperature).