| Capacity | 0.2 mL × 96-well, aluminum |
| Thermal Control System | Three independently controlled Peltier modules with peripheral edge heating |
| Temperature Control Accuracy | ±0.1°C |
| Block Temperature Precision | ≤±0.1°C |
| Temperature Uniformity | ≤±0.3°C at 55°C |
| Maximum Heating Rate | >5°C/s |
| Maximum Cooling Rate | >5°C/s |
| Average Ramp Rate | >2°C/s |
| Ramp Rate Adjustment Range | 0.1 to 3.5°C/s |
| Step Setting Range | 1 to 100 |
| Block Temperature Range | 0°C to 105°C |
| Heated Lid Temperature Range | 30°C to 105°C, ON or OFF switchable |
| Block Control Mode | Block-based or tube-based temperature control |
| Gradient Temperature Range | 30°C to 99°C; gradient span: 0.1°C to 42°C |
| Temperature Touchdown Function | 0.1°C to 10°C per cycle |
| Time Touchdown Function | 1 to 120 sec per cycle |
| Smart Ramp Rate | Yes |
| Auto-Adaptive Heated Lid | Yes |
| Display Interface | 7" WVGA full-color touchscreen, 64K color depth, LED backlit |
| Program Storage Capacity | 1000 folders maximum |
| Power Failure Recovery | Yes |
| Post-Run Soak Mode | Yes |
| Remaining Time Display | Yes |
| On-the-Fly Program Editing | Yes |
| Remote Service Support | Yes, via We Chat platform |
| Certification | CE marked |
| Applicable Consumables | 96 Microplates (non-skirted/semi-skirted), 0.2 mL tubes (single/8-strip/12-strip), all tube shapes |
| Power Supply | 100 to 240V AC, 50/60 Hz, 600 VA |
| Product Dimensions (L × W × H) | 427 × 288 × 227 mm |
| Shipping Dimensions (L × W × H) | 540 × 450 × 385 mm |
| Net Weight | 9.7 kg |
| Gross Weight | 14.5 kg |
Our Gradient Thermal Cycler ADGTC-508 is utilized in molecular biology labs for accurate DNA amplification via PCR, supporting reliable outcomes in diagnostics, scientific research, and genomic studies.
1. Why is an adjustable ramp rate important in thermal cycling for the Gradient Thermal Cycler ADGTC-508?
The Gradient Thermal Cycler ADGTC-508 allows users to fine-tune ramp rates, enabling precise control over temperature transitions between PCR stages. This adaptability ensures compatibility with diverse enzymes and complex DNA templates. Slower ramp rates help enhance specificity, while faster transitions reduce total runtime. It provides thermal flexibility for various experimental needs.
2. What specialized functions are integrated into the Gradient Thermal Cycler ADGTC-508?
Gradient Thermal Cycler ADGTC-508 includes gradient temperature control for simultaneous target achievement across wells. The hot lid automatically adjusts to fit different tube heights without manual tuning. Advanced settings help reduce unintended amplification and evaporation. Users can fine-tune ramp speeds and safeguard protocol integrity. These features collectively enhance data quality and repeatability.
3. What is the sample handling capacity of the Gradient Thermal Cycler ADGTC-508?
The Gradient Thermal Cycler ADGTC-508 is designed with a dual-block format, each accommodating 96 wells of 0.2 mL capacity. Constructed from aluminum, the block ensures efficient and uniform thermal distribution. This configuration is ideal for high-throughput PCR processing. It promotes consistent results across multiple samples simultaneously. Perfect for labs managing extensive DNA amplification tasks.
4. How precise is the temperature control system in the Gradient Thermal Cycler ADGTC-508?
Gradient Thermal Cycler ADGTC-508 maintains a high level of thermal accuracy with ±0.1°C control precision. Stability is enhanced through advanced Peltier technology and peripheral heating. Temperature consistency across the block reduces the risk of amplification errors. It supports sensitive PCR applications demanding strict thermal conditions. Dependable for both research and clinical workflows.
5. What kind of display and interaction system does the Gradient Thermal Cycler ADGTC-508 provide?
A 7-inch WVGA touchscreen with full-color visuals enables seamless interaction with the system. Its LED-backlit interface ensures excellent visibility, even in low-light settings. Touch navigation simplifies the setup and monitoring of thermal protocols. Operators can easily modify settings in real-time. The interface enhances user experience and operational efficiency.
6. What is Gradient Thermal Cycler?
Gradient Thermal Cycler is a technique that uses a thermal cycler with a temperature gradient across the heating block. This allows users to test multiple annealing temperatures in a single run, helping to quickly identify the optimal temperature for primer binding. It is especially useful during primer validation and assay development.
7. Why is Gradient Thermal Cycler used?
Gradient PCR is used to optimize PCR conditions, especially the annealing temperature, which is critical for specificity and efficiency. It helps reduce trial-and-error by allowing multiple conditions to be tested simultaneously. This improves accuracy while saving time and reagents during PCR setup.
8. What are the benefits of Gradient Thermal Cycler?
Gradient Thermal Cycler offers several benefits, particularly during the optimization phase of PCR. It saves time by allowing multiple annealing temperatures to be tested in a single run, eliminating the need for separate experiments. This approach also reduces reagent use and overall costs. Gradient PCR improves efficiency and specificity by quickly identifying the optimal annealing temperature.
| Capacity | 0.2 mL × 96-well, aluminum |
| Thermal Control System | Three independently controlled Peltier modules with peripheral edge heating |
| Temperature Control Accuracy | ±0.1°C |
| Tubes Capacity |
0.2 ml PCR tube 8 × 0.2 ml strip 48 well plate |
| Capacity | Double 48 × 0.2 ml |
| Maximum Heating Up Rate | 6℃/s |
| Capacity | 0.2 mL × 96-well, aluminum |
| Thermal Control System | Three independently controlled Peltier modules with peripheral edge heating |
| Temperature Control Accuracy | ±0.1°C |
| Capacity |
96×0.2 ml (PCR plate without/semi skirt) 12×8×0.2 ml (strips) 8×12×0.2 ml (strips) 0.2ml tubes (height 20 to 23mm) |
| Maximum Heating Rate | 5℃/s |
| Maximum Cooling Rate | 4.5℃/s |
| Capacity: | 2 × 0.2 mL × 48-wells, aluminum |
| Thermal Control System: | Peltier |
| Temperature Control Accuracy : | ±0.1°C |
| Capacity: | 2 × 0.2 mL × 48-wells, aluminum |
| Thermal Control System : | Three independently controlled Peltier modules with peripheral edge heating |
| Temperature Control Accuracy : | ±0.1°C |
| Capacity: | 32 x 0.2ml tubes, 4 x 8 tube strips |
| Temperature Setting Range: | 0℃ to 100℃ |
| Maximum Heating Time: | 4℃/sec |