| Availability: | |
|---|---|
| Quantity: | |
| Model | CFG-T5L |
|---|---|
| Max Speed | 6000 rpm |
| Max RCF | 4390 ×g |
| Max Capacity | 4×500 mL |
| Motor | AC frequency conversion motor |
| Speed Accuracy | ±30 rpm |
| Time Range | Time of centrifuge: 1 min–99 min 59 sec Continuous centrifuge: Hold |
| Power Supply | AC 220±22 V, 50/60 Hz, 10A |
| Noise | <65 dB(A) |
| External Size (W×D×H) | 458×620×380 mm |
| Shipping Size (W×D×H) | 550×800×570 mm |
| N.W/G.W | 55 / 72 kg |
Rotors for CFG-T5L:
| Number | Rotor Type | Capacity (mL) | Max speed (rpm) | Max RCF (×g) | Dimension of Tube (mm) |
|---|---|---|---|---|---|
| NO.1 | Swing Rotor | 4×2×100 | 4000 | 2810 | Φ37.5×123 |
| 4×100 | 4000 | 2810 | Φ37.5×123 | ||
| 4×2×50 | 4000 | 2810 | Φ29×107 | ||
| 4×50 | 4000 | 2810 | Φ29×107 | ||
| 4×8×15 | 4000 | 2810 | Φ17×118 | ||
| 4×6×15 | Φ17×118 | ||||
| 4×4×15 | Φ17×118 | ||||
| NO.2 | Swing Rotor | 4×250 | 4200 | 3500 | Φ62×110 |
| NO.3 | Swing Rotor | 4×500 | 4000 | 3040 | Φ80×137 |
| NO.4 | Swing Rotor | 4×12×7/5 | 4000 | 2800 | Φ13×110 |
| NO.5 | Swing Rotor | 4×18×7/5 | 4000 | 2800 | Φ13×110 |
| NO.6 | Swing Rotor | 4×24×7/5 | 4000 | 2800 | Φ13×110 |
| NO.7 | Microplate Rotor | 2×2×96well | 4000 | 2000 | Microplate |
| NO.8 | Angle Rotor | 12×10 | 5500 | 4390 | Φ16×83 |

4x2x100ml Swing rotor

4x500ml Swing rotor
5-inch high-definition touch screen, easilyoperated, visual display.
9 ranges for raising speed, 10 ranges for speed reduction, to effectively avoid secondary sedimentation, with better centrifugation effect.
Available to store 15 series of procedure for users to adjust.
The benchtop low speed centrifuge of a special duct allows it to work continuously under a room temperature of 26-28oC, with temperature rise less than 15°C.
Alternating frequency conversion electric machine, high precision of rotary speed control.
The unique secondary damping device enables it to operate with very low vibration when the high-capacity rotor is working. The design maintains stable operations and is conducive to a longer service life of the instrument.
Diverse protection setting: over-speed, door protect, imbalance protect, to ensure safety of both human and machine.
| Model | CFG-T5L |
|---|---|
| Max Speed | 6000 rpm |
| Max RCF | 4390 ×g |
| Max Capacity | 4×500 mL |
| Motor | AC frequency conversion motor |
| Speed Accuracy | ±30 rpm |
| Time Range | Time of centrifuge: 1 min–99 min 59 sec Continuous centrifuge: Hold |
| Power Supply | AC 220±22 V, 50/60 Hz, 10A |
| Noise | <65 dB(A) |
| External Size (W×D×H) | 458×620×380 mm |
| Shipping Size (W×D×H) | 550×800×570 mm |
| N.W/G.W | 55 / 72 kg |
Rotors for CFG-T5L:
| Number | Rotor Type | Capacity (mL) | Max speed (rpm) | Max RCF (×g) | Dimension of Tube (mm) |
|---|---|---|---|---|---|
| NO.1 | Swing Rotor | 4×2×100 | 4000 | 2810 | Φ37.5×123 |
| 4×100 | 4000 | 2810 | Φ37.5×123 | ||
| 4×2×50 | 4000 | 2810 | Φ29×107 | ||
| 4×50 | 4000 | 2810 | Φ29×107 | ||
| 4×8×15 | 4000 | 2810 | Φ17×118 | ||
| 4×6×15 | Φ17×118 | ||||
| 4×4×15 | Φ17×118 | ||||
| NO.2 | Swing Rotor | 4×250 | 4200 | 3500 | Φ62×110 |
| NO.3 | Swing Rotor | 4×500 | 4000 | 3040 | Φ80×137 |
| NO.4 | Swing Rotor | 4×12×7/5 | 4000 | 2800 | Φ13×110 |
| NO.5 | Swing Rotor | 4×18×7/5 | 4000 | 2800 | Φ13×110 |
| NO.6 | Swing Rotor | 4×24×7/5 | 4000 | 2800 | Φ13×110 |
| NO.7 | Microplate Rotor | 2×2×96well | 4000 | 2000 | Microplate |
| NO.8 | Angle Rotor | 12×10 | 5500 | 4390 | Φ16×83 |

4x2x100ml Swing rotor

4x500ml Swing rotor
5-inch high-definition touch screen, easilyoperated, visual display.
9 ranges for raising speed, 10 ranges for speed reduction, to effectively avoid secondary sedimentation, with better centrifugation effect.
Available to store 15 series of procedure for users to adjust.
The benchtop low speed centrifuge of a special duct allows it to work continuously under a room temperature of 26-28oC, with temperature rise less than 15°C.
Alternating frequency conversion electric machine, high precision of rotary speed control.
The unique secondary damping device enables it to operate with very low vibration when the high-capacity rotor is working. The design maintains stable operations and is conducive to a longer service life of the instrument.
Diverse protection setting: over-speed, door protect, imbalance protect, to ensure safety of both human and machine.