# item.guide
Side-by-Side Comparison Staples & Clips

Brass Fasteners vs. Paper Clips

Comparing 2 standards across 13 specifications. 13 key differences identified.

Comparing:
Brass Fasteners
Paper Clips

Brass Fasteners (also known as Paper Brads or Split Pins) are malleable metal binding pins featuring a round domed head and two flexible flat prongs. Sized from 0.5 inches (13 mm) to 2.0 inches (51 mm), they are passed through punched holes and spread flat against the back of the document, serving as the industry standard for Hollywood film screenplay binding.

View full Brass Fasteners spec sheet →

The Gem Paper Clip (introduced by The Gem Manufacturing Company in the 1890s) is a single looped piece of galvanized spring-steel wire that binds loose sheets using torsional elastic deflection. Available in standard No. 1 (33 mm / 1.3 in) and Jumbo (50 mm / 2.0 in) sizes, alongside specialized Butterfly/Trefoil wire clamps for thick 50-sheet reports.

View full Paper Clips spec sheet →

Specification Comparison Table

13 Parameters
Parameter / Spec
Shank Length 1/2 in (No. 1)
13 mm — capacity approx. 30 to 40 sheets
Shank Length 3/4 in (No. 2)
19 mm — capacity approx. 50 to 75 sheets
Shank Length 1.0 in (No. 3)
25 mm — capacity approx. 80 to 110 sheets
Shank Length 1.5 in (No. 5)
38 mm — capacity approx. 120 to 175 sheets (Standard 1.25" Hollywood Script Brad)
Shank Length 2.0 in (No. 7)
51 mm — capacity approx. 200+ sheets
Head Diameter
8.0 mm (approx. 5/16 in domed brass cap)
Hollywood Script Tradition
Bound with two No. 5 brass brads placed in top and bottom holes (middle hole left empty)
Standard No. 1 Gem Clip
33 mm (1.30 in) length — capacity 10 to 15 sheets (0.8 mm to 0.9 mm wire)
No. 2 Gem Clip
28 mm (1.10 in) length — capacity 5 to 10 sheets
Jumbo Gem Clip
50 mm (2.00 in) length — capacity 20 to 35 sheets (1.0 mm to 1.2 mm wire)
Butterfly / Trefoil Clip
Large circular loops (up to 50 sheets without fiber indentation)
Surface Finishes
Smooth zinc galvanized, vinyl color-coated, serrated 'non-skid' grooves
Elastic Limit Physics
Operates strictly in the steel's elastic zone without permanent plastic deformation