Envelope interchange · 3.90×18.50 in
99×470 mm filter elements
60 elements from 5 brand(s) share this envelope: 99 mm outside diameter and 470 mm overall length (3.90×18.50 in).
Dimensional interchange — verify before substituting. These cartridges fit the
same bowl space; they are not guaranteed drop-in equivalents. Compare grade,
end caps, seals, collapse rating and bypass configuration for the specific duty.
| Model | Brand | ID (mm) | Micron | β rating | Collapse (bar) | Bypass | Seal | Type |
|---|---|---|---|---|---|---|---|---|
| 12.01.18 D 10 XSX /-2.625 | HYDAC | 40.894 | 10 | β10 > 1000 (HYDAC grade convention: β12(c) ≥ 1000) | — | housing | Nitrile (Buna-N) | pressure |
| 4.14.08 D 10 BN4 | HYDAC | 40.894 | 10 | β10 > 1000 (HYDAC grade convention: β12(c) ≥ 1000) | — | housing | Nitrile (Buna-N) | pressure |
| 4.23.18 R 040 BN4 | HYDAC | 40.894 | 40 | β40 > 1000 | — | housing | Nitrile (Buna-N) | return |
| 5.03.18 D 01 BN4 | HYDAC | 40.9 | 1 | β1 > 1000 | 10 | housing | Nitrile (Buna-N) | pressure |
| 5.03.18 D 01 BN4 /-V | HYDAC | 40.9 | 1 | β1 > 1000 | 10 | housing | Fluorocarbon (Viton) | pressure |
| 5.03.18 D 03 BH4 | HYDAC | 40.9 | 3 | β3 > 1000 (HYDAC grade convention: β5(c) ≥ 1000) | 210 | housing | Nitrile (Buna-N) | pressure |
| 5.03.18 D 03 BH4 /-EPR | HYDAC | 40.9 | 3 | β3 > 1000 (HYDAC grade convention: β5(c) ≥ 1000) | 210 | housing | Ethylene propylene rubber (EPR) | pressure |
| 5.03.18 D 03 BH4 /-V | HYDAC | 40.9 | 3 | β3 > 1000 (HYDAC grade convention: β5(c) ≥ 1000) | 210 | housing | Fluorocarbon (Viton) | pressure |
| 5.03.18 D 03 BH4 /-V-SFREE | HYDAC | 40.9 | 3 | β3 > 1000 (HYDAC grade convention: β5(c) ≥ 1000) | 210 | housing | Fluorocarbon (Viton) | pressure |
| 5.03.18 D 03 BN4 | HYDAC | 40.9 | 3 | β3 > 1000 (HYDAC grade convention: β5(c) ≥ 1000) | 10 | housing | Nitrile (Buna-N) | pressure |
| 5.03.18 D 03 BN4 /-EPR SO103H | HYDAC | 40.9 | 3 | β3 > 1000 (HYDAC grade convention: β5(c) ≥ 1000) | 10 | housing | Ethylene propylene rubber (EPR) | pressure |
| 5.03.18 D 03 BN4 /-SFREE | HYDAC | 40.9 | 3 | β3 > 1000 (HYDAC grade convention: β5(c) ≥ 1000) | 10 | housing | Nitrile (Buna-N) | pressure |
| 5.03.18 D 03 BN4 /-V | HYDAC | 40.9 | 3 | β3 > 1000 (HYDAC grade convention: β5(c) ≥ 1000) | 10 | housing | Fluorocarbon (Viton) | pressure |
| 5.03.18 D 05 BH4 | HYDAC | 40.9 | 5 | β5 > 1000 (HYDAC grade convention: β7(c) ≥ 1000) | 210 | housing | Nitrile (Buna-N) | pressure |
| 5.03.18 D 05 BH4 /-02081980 | HYDAC | 40.9 | 5 | β5 > 1000 (HYDAC grade convention: β7(c) ≥ 1000) | 210 | housing | Nitrile (Buna-N) | pressure |
| 5.03.18 D 05 BH4 /-V | HYDAC | 40.9 | 5 | β5 > 1000 (HYDAC grade convention: β7(c) ≥ 1000) | 210 | housing | Fluorocarbon (Viton) | pressure |
| 5.03.18 D 05 BN4 | HYDAC | 40.9 | 5 | β5 > 1000 (HYDAC grade convention: β7(c) ≥ 1000) | 10 | housing | Nitrile (Buna-N) | pressure |
| 57889 | WIX Filters | 41 | 5 | β5 = 200 | — | housing | Nitrile (NBR) | return |
| RTE-48-D-10-B-S-2 | STAUFF | 41 | — | — | — | housing | — | inline |
| RTE-48-G-03-B-S-2 | STAUFF | 41 | — | — | — | housing | — | inline |
| RTE-48-G-03-V-S-2 | STAUFF | 41 | — | — | — | housing | — | inline |
| RTE-48-G-05-B-S-2 | STAUFF | 41 | — | — | — | housing | — | inline |
| RTE-48-G-10-B-S-2 | STAUFF | 41 | — | — | — | housing | — | inline |
| RTE-48-G-25-B-S-2 | STAUFF | 41 | — | — | — | housing | — | inline |
| HF35543 | Fleetguard | 58.42 | 6.8 | 6.8 µm at β75(c); 8 µm at β200(c) per ISO 16889 | 10.342 | housing | — | return |
| 18L10 | Schroeder Industries | 58 | 10 | 18 µm at β(c) ≥ 200 (99.5% efficiency) | 10.3 | housing | Nitrile (Buna-N) | inline |
| 18L10V | Schroeder Industries | 58 | 10 | 18 µm at β(c) ≥ 200 (99.5% efficiency) | 10.3 | housing | Fluorocarbon (Viton) | inline |
| 18L25 | Schroeder Industries | 58 | 25 | β(c) ≥ 1000 (99.5% efficiency) | 10.3 | housing | Nitrile (Buna-N) | inline |
| 18L25V | Schroeder Industries | 58 | 25 | β(c) ≥ 1000 (99.5% efficiency) | 10.3 | housing | Fluorocarbon (Viton) | inline |
| 18L3 | Schroeder Industries | 58 | 3 | 10 µm at β(c) ≥ 200 (99.5% efficiency) | 10.3 | housing | Nitrile (Buna-N) | inline |
| 18L3V | Schroeder Industries | 58 | 3 | 10 µm at β(c) ≥ 200 (99.5% efficiency) | 10.3 | housing | Fluorocarbon (Viton) | inline |
| 18LW | Schroeder Industries | 58 | — | β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Nitrile (Buna-N) | inline |
| 18LZ1 | Schroeder Industries | 58 | 1 | 4.2 µm at β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Nitrile (Buna-N) | inline |
| 18LZ10 | Schroeder Industries | 58 | 10 | 10 µm at β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Nitrile (Buna-N) | inline |
| 18LZ10H | Schroeder Industries | 58 | 10 | 10 µm at β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Ethylene Propylene Rubber (EPR) | inline |
| 18LZ10V | Schroeder Industries | 58 | 10 | 10 µm at β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Fluorocarbon (Viton) | inline |
| 18LZ1V | Schroeder Industries | 58 | 1 | 4.2 µm at β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Fluorocarbon (Viton) | inline |
| 18LZ25 | Schroeder Industries | 58 | 25 | 24 µm at β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Nitrile (Buna-N) | inline |
| 18LZ25V | Schroeder Industries | 58 | 25 | 24 µm at β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Fluorocarbon (Viton) | inline |
| 18LZ3 | Schroeder Industries | 58 | 3 | 4.8 µm at β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Nitrile (Buna-N) | inline |
| 18LZ3H.5 | Schroeder Industries | 58 | 3 | 4.8 µm at β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Ethylene Propylene Rubber (EPR) | inline |
| 18LZ3V | Schroeder Industries | 58 | 3 | 4.8 µm at β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Fluorocarbon (Viton) | inline |
| 18LZ5 | Schroeder Industries | 58 | 5 | 6.3 µm at β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Nitrile (Buna-N) | inline |
| 18LZ5V | Schroeder Industries | 58 | 5 | 6.3 µm at β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Fluorocarbon (Viton) | inline |
| KKBG25 | Schroeder Industries | 41 | 25 | β(c) ≥ 1000 (99.5% efficiency) | 10.3 | housing | Nitrile (Buna-N) | inline |
| KKBGZ1 | Schroeder Industries | 41 | 1 | 4.2 µm at β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Nitrile (Buna-N) | inline |
| KKBGZ10 | Schroeder Industries | 41 | 10 | 10 µm at β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Nitrile (Buna-N) | inline |
| KKBGZ25 | Schroeder Industries | 41 | 25 | 24 µm at β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Nitrile (Buna-N) | inline |
| KKBGZ3 | Schroeder Industries | 41 | 3 | 4.8 µm at β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Nitrile (Buna-N) | inline |
| KKBGZ5 | Schroeder Industries | 41 | 5 | 6.3 µm at β(c) ≥ 1000 (99.9% efficiency) | 10.3 | housing | Nitrile (Buna-N) | inline |
| KKZX1 | Schroeder Industries | 41 | 1 | 4.2 µm at β(c) ≥ 1000 (99.9% efficiency) | 207 | housing | Nitrile (Buna-N) | inline |
| KKZX10 | Schroeder Industries | 41 | 10 | 10 µm at β(c) ≥ 1000 (99.9% efficiency) | 207 | housing | Nitrile (Buna-N) | inline |
| KKZX10V | Schroeder Industries | 41 | 10 | 10 µm at β(c) ≥ 1000 (99.9% efficiency) | 207 | housing | Fluorocarbon (Viton) | inline |
| KKZX1V | Schroeder Industries | 41 | 1 | 4.2 µm at β(c) ≥ 1000 (99.9% efficiency) | 207 | housing | Fluorocarbon (Viton) | inline |
| KKZX25 | Schroeder Industries | 41 | 25 | 24 µm at β(c) ≥ 1000 (99.9% efficiency) | 207 | housing | Nitrile (Buna-N) | inline |
| KKZX25V | Schroeder Industries | 41 | 25 | 24 µm at β(c) ≥ 1000 (99.9% efficiency) | 207 | housing | Fluorocarbon (Viton) | inline |
| KKZX3 | Schroeder Industries | 41 | 3 | 4.8 µm at β(c) ≥ 1000 (99.9% efficiency) | 207 | housing | Nitrile (Buna-N) | inline |
| KKZX3V | Schroeder Industries | 41 | 3 | 4.8 µm at β(c) ≥ 1000 (99.9% efficiency) | 207 | housing | Fluorocarbon (Viton) | inline |
| KKZX5 | Schroeder Industries | 41 | 5 | 6.3 µm at β(c) ≥ 1000 (99.9% efficiency) | 207 | housing | Nitrile (Buna-N) | inline |
| KKZX5V | Schroeder Industries | 41 | 5 | 6.3 µm at β(c) ≥ 1000 (99.9% efficiency) | 207 | housing | Fluorocarbon (Viton) | inline |
Substitution verification checklist
- Filtration grade. Compare at the same ISO 16889 Beta test point — “10 µm nominal” and “12 µm β1000” may be the same physical media.
- End caps & O-rings. Open/closed cap style and seal position block interchange even with identical OD/length.
- Seal compound. NBR is standard for mineral oil; phosphate-esters, high temperatures or bio-oils can demand fluorocarbon.
- Collapse rating. Low-collapse (~20 bar) return elements must never replace high-collapse (210 bar) pressure elements.
- Bypass strategy. Integral bypass valves (e.g. 3.4 bar) vs reusable housing valves change cold-start behaviour.
Frequently asked questions
Are all 99×470 mm filter elements interchangeable?
They share the same physical envelope — 99 mm OD and 470 mm length (3.90×18.50 in) — so they fit the same bowl. Interchangeability ends there: micron/Beta rating, end-cap geometry, seals, collapse rating and bypass configuration differ across the 60 elements listed and must be checked against the duty.
Is it a drop-in replacement if the OD and length match?
Only after verification. Confirm in order: (1) the filtration grade meets the ISO 4406 cleanliness target at the same Beta test point, (2) end-cap and O-ring arrangement is identical, (3) seal compound suits the fluid (NBR vs fluorocarbon), (4) collapse/burst rating fits pressure-line or cold-start conditions, and (5) the bypass strategy (integral valve vs housing valve) matches.
What is 99×470 mm in inches?
99×470 mm converts to approximately 3.90×18.50 in.
Browse all 99 mm OD elements or open the dimensions finder.
Request quote & availability
First reply within 2 business hours · first quotation — including the original brand and 1–2 verified equivalents — within 24 hours on business days.