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PEM® TY-D® self-clinching tie-mounts and hooks provide secure attachment points for mounting wires to electronic chassis or enclosures. All TY-D hardware installs quickly and permanently without screws and eliminates the use of adhesives that typically fail over time and temperature cycling.

Type TD™ mounts allow users to easily slide ties through the hardware’s “eye” for fast cable mounting. Type TDO™ hooks* enable users to attach, remove, and return tie-bundled wires to their mounting points when components need to be accessed for service or when wires must be replaced. The hook feature allows ties to remain intact and wires to remain wrapped.

TY-D hardware can be a great improvement over traditional mounting methods. They can be placed with assurance at designed locations and angles to remain secure for the life of the assembly; they will not protrude on the reverse side and will not affect the reverse side appearance or clearance; and panels remain flush, minimizing EMI/RFI and contamination of electronics by dust or dirt.
Unit of Measure

Type

N/A TDO
Profile1 N/A 120

Length Code

N/A 8
L - Length ± .0032
N/A .246 in a1299_1.jpg

Sheet Thickness

N/A .040 - .155 in

Hole Size In Sheet + .002 -.001

N/A .250 x .562 in

A ± .003

N/A .558 in

B ± .006

N/A .255 in

oC ± .006

N/A .340 in

D ± .006

N/A .140 in

E ± .006

N/A .620 in

F ± .005

N/A .335 in

G - Height Nom.

N/A .614 in

H ± .010

N/A .120 in

I ± .010

N/A .130 in

J Nom.

N/A .139 in

Min. Hole Edge to Sheet Edge K

N/A .040 in

Min. Hole Edge to Sheet Edge M

N/A .262 in

Standard Material

N/A Sintered Steel

Standard Finish

N/A Zinc plated per ASTM B633, SC1 (5µm), Type III, colorless

Max. Panel Hardness

N/A HRB 60 / HB 107

CAD Supplier

N/A PennEngineering® (PEM®)

Inventory

N/A {0}
  • 1 Reference to typical load rating (in pounds) for appropriate size nylon cable tie.
  • 2 The “L” dimension is the height of the installed stud at max grip. The height of the stud will increase if it is installed into thinner material. To calculate “actual L” use this formula: max grip - actual grip + L = “actual L”