Availability: | |
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Quantity: | |
Model | SK-T3432 |
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Control Mode | P. I. D (Microcomputer scans the micro-processing chip) |
Erlenmeyer Flask : Max number of rocking plates in single configuration | 250ml: 450 |
500ml: 324 | |
1000ml: 168 | |
Display Mode | LCD (Large liquid crystal screen) |
Circulation Mode | Natural convection |
Oscillation Mode | Gyratory |
Drive Mode | Balance drive by Multi-sizeal |
Ambient Temperature | 15-35 |
Requirement (℃) | |
Curve Programming Settings | Programming settings of repetition, steps and eight-section curves |
Safety Functions | Automatic running, automatic stop, timing running, clock display, startup after power again, parameter memory, speed storage |
Additional Functions | Monitoring timer, stand-alone over-speed audio/light alarm, stand-alone leakage or over-current protector |
Speed Range (r/min) | 30-300 |
Speed Accuracy (r/min) | ±1 |
Amplitude of Rocking Plate (mm) | 50 |
Timing Range (min) | 0-999.59 |
Size of Rocking Plate (mm) | 1080×680 |
Number of Rocking Plates | 6 |
Power (kW) | 1.1 |
Power Supply | AC 200-240V 50-60Hz |
Material of Outer Box | High-quality nodular cast iron, channel steel, angle steel, medium plates and cold rolled steel sheets |
Sizes (W×D×H)(mm) | 1590×1120×1310 |
Shipping Size (W×D×H)(mm) | 1720×1230×1520 |
N.W./G.W. (kg) | 800/913 |
Three-layer shaker adopts advanced PID temperature control technology and microprocessor chip scanning to achieve precise temperature control, providing excellent temperature stability.
The large LCD screen clearly displays the experimental parameters and operation status, making the operation more intuitive and user-friendly.
Natural convection circulation mode ensures uniform temperature distribution and improves the stability of samples under temperature control.
A unique three-layer oscillation design with rotary vibration provides various mixing effects for different experimental needs.
Three-layer shaker ensures smooth vibration of the equipment by balancing the multi-stage drive, which reduces the vibration interference on the sample and improves the experiment's reliability.
Model | SK-T3432 |
---|---|
Control Mode | P. I. D (Microcomputer scans the micro-processing chip) |
Erlenmeyer Flask : Max number of rocking plates in single configuration | 250ml: 450 |
500ml: 324 | |
1000ml: 168 | |
Display Mode | LCD (Large liquid crystal screen) |
Circulation Mode | Natural convection |
Oscillation Mode | Gyratory |
Drive Mode | Balance drive by Multi-sizeal |
Ambient Temperature | 15-35 |
Requirement (℃) | |
Curve Programming Settings | Programming settings of repetition, steps and eight-section curves |
Safety Functions | Automatic running, automatic stop, timing running, clock display, startup after power again, parameter memory, speed storage |
Additional Functions | Monitoring timer, stand-alone over-speed audio/light alarm, stand-alone leakage or over-current protector |
Speed Range (r/min) | 30-300 |
Speed Accuracy (r/min) | ±1 |
Amplitude of Rocking Plate (mm) | 50 |
Timing Range (min) | 0-999.59 |
Size of Rocking Plate (mm) | 1080×680 |
Number of Rocking Plates | 6 |
Power (kW) | 1.1 |
Power Supply | AC 200-240V 50-60Hz |
Material of Outer Box | High-quality nodular cast iron, channel steel, angle steel, medium plates and cold rolled steel sheets |
Sizes (W×D×H)(mm) | 1590×1120×1310 |
Shipping Size (W×D×H)(mm) | 1720×1230×1520 |
N.W./G.W. (kg) | 800/913 |
Three-layer shaker adopts advanced PID temperature control technology and microprocessor chip scanning to achieve precise temperature control, providing excellent temperature stability.
The large LCD screen clearly displays the experimental parameters and operation status, making the operation more intuitive and user-friendly.
Natural convection circulation mode ensures uniform temperature distribution and improves the stability of samples under temperature control.
A unique three-layer oscillation design with rotary vibration provides various mixing effects for different experimental needs.
Three-layer shaker ensures smooth vibration of the equipment by balancing the multi-stage drive, which reduces the vibration interference on the sample and improves the experiment's reliability.