Linear Motion Components
GRS 40 - Linear Stage Table
★ The track system uses a crossed roller guide, which, through V-grooves and crossed rollers, achieves high-precision movement and heavy-duty performance via line contact transmission. ★ This diagram shows GRS-S, GRS, and GRS-B.
- Specifications
- Technical Data
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Total of 1 models
| Model | GRS 40 |
|---|---|
| Inquiry | Add To Inquiry |
| Material - Stage body | GRS: Aluminum Alloy + anodized black, standard specifications |
| Material - Stage body | GRS - N: S50C + chemical nickel, rust-resistant specification |
| Material - Stage body | GRS - B: S50C + phosphate, black dyeing specification |
| Material - Stage body | GRS - S: SUS 440C + chemical nickel, corrosion resistant specification |
| Material - Stage body | * The GRS-S series body and track are integrally molded, and the V-groove on the track surface is not chemically nickel treated. |
| Material_Rail | GRS: SUJ 2 |
| Material_Rail | GRS - N: SUJ 2 + Chemical Nickel |
| Material_Rail | GRS - B: SUJ 2 |
| Material_cage | SUS 304 |
| Material: Roller | GRS: SUJ 2 |
| Material: Roller | GRS - N: SUJ 2 |
| Material: Roller | GRS - B: SUJ 2 |
| Material: Roller | GRS - S: SUS 440C |
| Maximum travel (mm) | 30 |
| Roller diameter (mm) | Ø 3 |
| Basic dynamic load (C) (N) | 2901 |
| Basic static load (Co) (N) | 4567 |
| Load (Fu) (N) | 1522 |
| MR(N・m) | 26.5 |
| MP(N・m) | 22.8 |
| MY(N・m) | 26.6 |
| Generally | 0.15 |
| Rust prevention | 0.24 |
| corrosion resistant | 0.23 |
| Central parallelism | 2 |
| Side parallelism | 5 |
| Maximum travel (mm) | 45 |
| Roller diameter (mm) | Ø 3 |
| Basic dynamic load (C) (N) | 4338 |
| Basic static load (Co) (N) | 7611 |
| Load (Fu) (N) | 2537 |
| MR(N・m) | 44.1 |
| MP(N・m) | 63.4 |
| MY(N・m) | 57.1 |
| Generally | 0.22 |
| Rust prevention | 0.35 |
| corrosion resistant | 0.34 |
| Central parallelism | 2 |
| Side parallelism | 5 |
| Maximum travel (mm) | 60 |
| Roller diameter (mm) | Ø 3 |
| Basic dynamic load (C) (N) | 5646 |
| Basic static load (Co) (N) | 10655 |
| Load (Fu) (N) | 3552 |
| MR(N・m) | 61.8 |
| MP(N・m) | 124.3 |
| MY(N・m) | 115.4 |
| Generally | 0.29 |
| Rust prevention | 0.46 |
| corrosion resistant | 0.45 |
| Central parallelism | 3 |
| Side parallelism | 5 |
| Maximum travel (mm) | 75 |
| Roller diameter (mm) | Ø 3 |
| Basic dynamic load (C) (N) | 6268 |
| Basic static load (Co) (N) | 12178 |
| Load (Fu) (N) | 4059 |
| MR(N・m) | 70.6 |
| MP(N・m) | 162.4 |
| MY(N・m) | 172.5 |
| Generally | 0.36 |
| Rust prevention | 0.58 |
| corrosion resistant | 0.56 |
| Central parallelism | 3 |
| Side parallelism | 5 |
| Maximum travel (mm) | 90 |
| Roller diameter (mm) | Ø 3 |
| Basic dynamic load (C) (N) | 7462 |
| Basic static load (Co) (N) | 15222 |
| Load (Fu) (N) | 5074 |
| MR(N・m) | 88.3 |
| MP(N・m) | 259.7 |
| MP(N・m) | S: 253.7 |
| MY(N・m) | 266.4 |
| Generally | 0.42 |
| Rust prevention | 0.69 |
| corrosion resistant | 0.67 |
| Central parallelism | 3 |
| Side parallelism | 5 |
| Maximum travel (mm) | 105 |
| Roller diameter (mm) | Ø 3 |
| Basic dynamic load (C) (N) | 8603 |
| Basic static load (Co) (N) | 18266 |
| Load (Fu) (N) | 6089 |
| MR(N・m) | 105.9 |
| MP(N・m) | 365.3 |
| MY(N・m) | 350.1 |
| Generally | 0.49 |
| Rust prevention | 0.8 |
| corrosion resistant | 0.78 |
| Central parallelism | 3 |
| Side parallelism | 5 |
| Maximum travel (mm) | 130 |
| Roller diameter (mm) | Ø 3 |
| Basic dynamic load (C) (N) | 9157 |
| Basic static load (Co) (N) | 19789 |
| Load (Fu) (N) | 6596 |
| MR(N・m) | 114.8 |
| MP(N・m) | 428.8 |
| MY(N・m) | 445.2 |
| Generally | 0.56 |
| Rust prevention | 0.91 |
| corrosion resistant | 0.89 |
| Central parallelism | 3 |
| Side parallelism | 5 |