Conduit Bending Layout Guide — Choose Offset, Saddle, Rolling or Segmented 90°

Job-scenario bend-type selection — not a rehash of the multiplier tables

Choose the right conduit bend type for the job: flat offset, 3-point saddle, rolling offset, or segmented 90°. Pairs with the layout generator for mark distances.

Open the layout generator

Enter the obstacle, get mark distances, then print a cheat sheet or reference card for the job.

Open Conduit Bending Layout Generator →

Pick the bend type for the job — not the math first

This guide is scoped down on purpose. The Conduit Bending Layout Generator already explains where the multipliers come from and how to read the on-screen marks. Use those sections for the trade tables and mark-transfer workflow. Use this page to choose the right bend family before you start entering numbers.

When to use a flat offset

Use a flat (parallel) offset when the conduit needs to shift in one plane only — around a beam, duct, or strut that sits straight ahead in the run. Both bends stay in the same rotational plane; you sight down the pipe between bends to keep them coplanar.

  • Typical: rising over a crossing conduit, kicking out around a column face, dropping into a panel from a rack.
  • Angle choice: 30° is the shop default for most offsets; 22.5° for shallow kicks; 45°/60° when space is short and you accept more shrinkage.
  • If the obstruction also forces a side shift, stop — that is a rolling offset job (see the offset vs rolling offset decision).

When to use a 3-point saddle

Use a saddle when the run must clear an obstruction and return to the original centerline — crossing a pipe, strut, or conduit that blocks the path but you still want the far end back on the same line.

  • Center bend is the deep kick; the two side bends are half-angle and opposite rotation.
  • Measure the obstruction depth carefully — that is the only number the layout needs besides the center mark location.
  • Saddle math is already in the tool; do not re-derive multipliers on the job.

When to use a rolling offset

Use a rolling offset when the destination is offset on two axes at once — up and over, or down and out. The pipe rotates (rolls) so the bend plane follows the diagonal of that rectangle.

  • Enter vertical and horizontal separately; the tool builds true offset and roll angle.
  • Common mistake: using rolling math for a single-axis kick. If one of the two shifts is zero, a flat offset is correct and simpler.
  • Wrong reference for the roll angle is a top field failure — covered in layout troubleshooting.

When to use a segmented 90°

Use a segmented (large-radius / multi-shot) 90° when a factory elbow will not fit, the inspector wants a gentle bend radius, or you are matching a large conduit radius that a hand bender cannot pull in one shot.

  • More segments = smoother arc and more marks; fewer segments = faster but flatter facets.
  • Same lobster-back idea as sheet-metal gores — marks along the pipe instead of a cut template.
  • Uneven mark spacing is the usual failure mode; see troubleshooting.

Quick decision table

  • One-plane shift, stay parallel: flat offset
  • Clear and return to same line: 3-point saddle
  • Shift on two axes: rolling offset
  • Gentle large-radius 90°: segmented 90°
  • Single stub-up / box offset / deduct math: use the Conduit Bending Calculator, not this layout tool
After you pick the type, open the generator, enter the obstacle, transfer the mark distances, then print the cheat sheet for that exact layout. Multiplier tables and mark reading live on the tool page — no need to memorize them here.

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