CHAR LYNN MT0096FA01AB00N000000000A

Description & Features

Designed for demanding agricultural and railroad maintenance applications, the Char-Lynn MT0096FA01AB00N000000000A is a T Series Spool Geroler motor built for reliable low-speed, high-torque performance. Constructed from ductile iron, it delivers a torque rating of 297 Nm with a flow rate of up to 57 litres per minute, making it well suited for equipment such as agricultural augers, harvesters, seeders, and railroad maintenance machinery.

The motor features an extended bearing life design alongside an increased shaft seal capacity, supporting durability in continuous-duty field conditions. Its compact form factor allows integration into space-constrained equipment without sacrificing output. The male port configuration and Char-Lynn T Series Geroler displacement technology combine to support consistent performance across variable load conditions common in agricultural and rail service environments.

SKU: 158-3170

Supplier Part Number (MPN): 158-3170-001

Specifications

Alternate Part Numbers
Alternate Part Number MINO-00162X28851
Application
Agricultural augers, Harvesters, Seeders, Railroad maintenance equipment
Class
WEB-ITEM
Brand
Danfoss Power Solutions II (Char-Lynn)
Brand
Char-Lynn
Pack Size
1.00
UOM
EA
Features
Compact yet powerful|Extended bearing life|Increased shaft seal
Flow Rate1
57 litre per minute
ICC
Low-Speed Gerotor/Geroler
Language
English
Net Pack Quantity Units
EA
Product Material
Ductile Iron
Product Width
3.38
Sub Brand
Char-Lynn
Supplier Part Number
158-3170-001
Torque Rating
297 newton metre
Torque Rating
297 newton metre
Product Weight
0.99 lbs

Product Questions & Answers (1)

Question by: Cody R on Aug 21, 2025, 5:36 PM
I'm looking for a motor that can handle some pretty tough conditions out in the field. Will this Char-Lynn model hold up?
Answer by: Customer Support on Aug 23, 2025, 6:56 AM
Constructed from ductile iron with an extended bearing life design and increased shaft seal capacity, this Char-Lynn motor is built for durability in continuous-duty field conditions.