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