MGN9H2R95Z0C
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Overview |
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| Part Number | MGN9H2R95Z0C |
Brand: LILY ![]() |
Interchangeable With: HIWIN |
Characteristics |
|
| System of Measurement | Metric |
| Series | Miniature Linear Guideway |
| Block Model | MGN9HZ0C |
| Block Type | Square Type |
| Load Type | Extended Type |
| Mounting Hole Size (M) | M3*3 |
| Number of blocks | 2 |
| Rail Model | MGNR9R95C |
| Rail Fixing Bolt Hole (mm) | M3*8 |
| Number of Rail Holes | 5 |
| Rail Mounting Type | Locking(R) |
Dimensions |
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| Size | 9 mm |
| Assembly Height (H) | 10 mm |
| Distance from Block Bottom to Rail Bottom (H1) | 2.2 mm |
| Distance from Both Sides of Rail to Both Sides of Block (N) | 5.5 mm |
| Block Width (W) | 20 mm |
| Block Mounting hole Width (B) | 15 mm |
| Distance from Mounting Hole Center to Block Edge (B1) | 2.5 mm |
| Block Mounting hole Length (C) | 16 mm |
| Block Length (L) | 39.9 mm |
| Rail Length | 95 mm |
| Rail Width (WR) | 9 mm |
| Rail Height (HR) | 6.5 mm |
| Outer Diameter (D) | 6 mm |
| Hole Depth (h) | 3.5 mm |
| Inner Diameter (d) | 3.5 mm |
| Pitch (P) | 20 mm |
| End Distance (E) | 7.5/7.5 mm |
Material |
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| Material | Steel |
Performance |
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| Accuracy Classs | Normal C |
| Preload Code | ★ZF Normal Clearance, Precision Clearance with Preload 4~10μm ★Z0 No Preload, Preload Pressure 0 ★Z1 Light Preload, Preload Pressure 0.02 of Dynamic Rated Load |
| Basic Dynamic Rated Load (C) | 2.5 kN |
| Basic Static Rated Load (C0) | 3.93 kN |
| Static Rated Moment (MR) | 17.91 N-m |
| Static Rated Moment (MP) | 21.47 N-m |
| Static Rated Moment (MY) | 21.47 N-m |
Properties |
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| Block weight | 0.02 kg |
| Rail weight | 0.38 kg/m |
The Miniature Linear Guideway is constructed from Steel, providing exceptional hardness, wear resistance, and load-bearing capability within its compact miniature form factor. This material choice delivers superior structural rigidity and long-term dimensional stability under repeated loading cycles, while maintaining the guideway's precise linear motion characteristics, making it the ideal choice for precision applications such as optical instruments, laboratory automation equipment, and compact semiconductor manufacturing systems where high positional accuracy, reliable performance, and a miniaturized footprint are simultaneously required.
The Miniature Linear Guideway is designed for Extended Type applications, featuring a longer block length that provides an increased number of load-bearing balls and a greater contact area with the rail, resulting in enhanced load capacity, improved rigidity, and superior resistance to moment loads compared to standard type configurations. This extended block design combined with smooth, low-friction linear motion makes it the ideal choice for precision applications such as optical instruments, laboratory automation equipment, and compact semiconductor manufacturing systems where higher load capacity, enhanced stability, and a miniaturized footprint are simultaneously required.
How does the Steel material enhance the load capacity and motion performance of the Miniature Linear Guideway?
The higher hardness achievable in steel compared to stainless steel directly translates to superior load capacity and motion performance in the Miniature Linear Guideway. The precision-ground steel raceways can sustain higher contact stresses without permanent deformation or surface fatigue, allowing the guideway to achieve higher dynamic and static load ratings within the same compact miniature envelope. The superior surface hardness of the steel raceways also results in lower rolling resistance between the precision balls and raceway surfaces, contributing to smoother, more consistent linear motion with lower friction and better positional repeatability — critical performance characteristics in precision miniature applications where even the smallest motion irregularity can impact product quality or measurement accuracy.
How does the longer block length of the Extended Type enhance load capacity and rigidity compared to the Standard Type?
The longer block length of the Extended Type accommodates a greater number of precision balls within the recirculation system, increasing the total load-bearing contact area between the balls and raceways proportionally. This expanded ball count distributes applied loads across more contact points simultaneously, reducing the contact stress per ball and allowing the guideway to sustain significantly higher dynamic and static load ratings than the Standard Type within the same miniature rail profile. The increased ball count also enhances system rigidity by providing more load-bearing contacts resisting deflection under applied forces, resulting in measurably lower deflection under equivalent loads compared to the standard block length configuration.





