Piezo micromanipulator with virtual 4th axisuMp-4
The uMp-4 SENSAPEX micromanipulator is a 4-axis version of the uMp-3, offering sub-nanometric precision and exceptional stability thanks to ZERO-DERIVA piezo technology. It is particularly well suited to stereotactic experiments thanks to its 4th physical axis with a vertical approach angle of 0 to 90°. Probe insertion can be performed automatically with a single click at very slow speed, minimising tissue damage and optimising experimentation time. All the other features of the uMp-3 are retained, including control via PC-Ethernet, high resolution and compatibility with confined spaces.
Characteristics of the piezo micromanipulator with virtual 4th axisuMp-4
- 4-axis piezoelectric micromanipulator
- ZERO-DERIVA technology for maximum stability
- High precision with 5 nm resolution
- Positioning range: 20 x 20 x 20 (+20 for 4th axis) mm³ (XYZ+D)
- Maximum speed: 5 mm/s
- Maximum load: 0-150 g
- Actual approach angle: 0-90
- One-click automatic probe insertion at slow speed
- Minimisation of tissue damage
- Optimisation of experimentation time
- Compact and suitable for confined spaces
- Based on all the features of the uMp-3
Caractéristiques techniques du Micromanipulateur uMp-4
Caractéristique | Valeur |
---|---|
Plage de positionnement | 20 × 20 × 20 × 20 mm (XYZ + D) |
Résolution / Répétabilité | 5 nm / ~100 nm |
Vitesse maximale | 5 mm/s |
Charge maximale supportée | 150 gr |
Angle d’approche réel | 0 – 90° |
Nombre d’axes | 4 axes physiques |
Interface de commande | uMp-TSC (tactile), RW4 (roue) |
Interface PC / Logiciel | Ethernet + SDK open-source |
Technologie de stabilisation | Zero-Drift™, contrôle en boucle fermée |
Compatibilité électrode/exchange | Modules uMp-EXM (flip, slide, rotation) |
Dimensions (L × H × P) / Poids | ≈136 × 49 × 104 mm / variable |
Applications
- Insertion de sondes longues ou denses (ex. Neuropixels) en in vivo.
- Expérimentations en neurosciences nécessitant des trajectoires non linéaires ou multi‑directionnelles.
- Expériences combinant électrophysiologie et imagerie, nécessitant un positionnement stable multi-axes.
- Applications où la stabilité sans dérive est cruciale (enregistrements longue durée).
Documentation(s)
Brochure
PDF file – 733.7 ko
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