| Tubes Capacity |
0.2 ml microtubes 8 × 0.2 ml tube strips 96 × 0.2 ml PCR plate (no/semi-skirted) |
| Capacity | 96 × 0.2 ml |
| Maximum Heating Up Rate | 6℃/s |
| Maximum Cooling Down Rate | 5℃/s |
| Block Temperature Range | 0 to 105℃ |
| Gradient Temperature Range | 30 to 105℃ |
| Gradient Temperature Accuracy | ≤±0.3℃ |
| Temperature Display Accuracy | 0.1℃ |
| Gradient Temperature Uniformity | ≤±0.3℃ |
| Block Temperature Uniformity | ≤±0.25℃ |
| Block Temperature Accuracy | ≤±0.2℃ |
| Temperature Control Ways | Block or Tube |
| Adjustable Heating / Cooling Range | 0.1 to 6℃/s |
| Gradient Set Span | Maximum 42℃ |
| Number of Gradient Zones | 12 |
| Heating Lid Temperature Range | 30℃ to 110℃ |
| Timer | 1s to 9:99:99 or 0 (infinite duration) |
| Timer Increase / Decrease Range | -599s to 599s |
| Temperature Increase / Decrease Range | -9.9℃ to 9.9℃ |
| Touchdown PCR | Yes |
| Long PCR | Yes |
| Programs Stored | >10,000 |
| Maximum Cycles | 100 |
| Maximum Steps per Cycle | 30 |
| Power Failure Recovery | Yes |
| Pause Function | Yes |
| 16℃ Holding Function | Infinite duration |
| LCD Display | Touch screen display |
| Operating System | Linux |
| Touch Screen Type | Capacitive |
| Communication Port | USB 2.0 |
| Power Consumption | 700 W |
| Power Supply | 100 to 240 V, 50/60 Hz |
| Size (W×D×H) | 400×260×228 mm |
| Net Weight | 8.5 kg |
Our Gradient Thermal Cycler ADGTC-503 is a perfect choice for life science research in a wide range of laboratories.
1. What are the key features of the Gradient Thermal Cycler?
This Gradient Thermal Cycler features a high-resolution 1024x768 pixel, 8-inch color touch screen for easy navigation. It also includes automatic power failure recovery to ensure continuous operation and minimize disruption. It provides precise temperature control for accurate and reliable results.
2. What is the gradient range of the Gradient Thermal Cycler?
Our Gradient Thermal Cycler offers a gradient range of 42°C, allowing for precise temperature optimization in various experiments. This wide gradient range enhances the efficiency of PCR applications, ensuring accurate results even with complex sample types. It also provides flexibility for researchers to fine-tune conditions for different protocols.
3. Does the Gradient Thermal Cycler have a pause function?
Yes, this Gradient Thermal Cycler includes a pause function. This feature allows you to temporarily halt the PCR process, enabling you to add reagents, check samples, or make adjustments without disrupting the entire run. After pausing, you can resume the run from the exact point where it was stopped, ensuring continuity and accuracy in your experiments.
4. What type of communication port does the Gradient Thermal Cycler have?
This Gradient Thermal Cycler allows data to be saved directly to a USB 2.0 communication port for convenient transfer and storage. Simply connect the USB drive to the thermal cycler and follow the on-screen instructions to save your data. This feature ensures secure storage and easy access for future analysis or sharing, providing seamless connectivity with external devices.
5. How many programs can be stored in the Gradient Thermal Cycler?
This Gradient Thermal Cycler can store over 10,000 programs, allowing researchers to save and quickly access a large number of protocols for various experiments. This extensive storage capacity ensures that multiple experiments can be efficiently managed without the need to constantly reprogram the device. It also streamlines workflow, making it easier to switch between different protocols without manual input.
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 | 96 x 0.2ml (0.2ml PCR tubes, 8-tube strips) |
| Temperature Setting Range | 4℃ to 105℃ |
| Gradient Temperature Range | 30 to 105℃ |
| Capacity | 0.2 mL × 384-well, aluminum |
| Thermal Control System | Three independently controlled Peltier modules with peripheral edge heating |
| Temperature Control Accuracy | ±0.1°C |
| Capacity |
32×0.2 ml (microtubes) 4×8×0.2 ml (tube strips) |
| Maximum Heating Up Rate | 5℃/s |
| Maximum Cooling Down Rate | 4℃/s |
| Capacity | 0.2 mL × 96 wells, Interchangeable aluminum block |
| Sample Compatibility | 96-well plates, 8/12-strip PCR tubes, tall/short/dome/flat caps |
| Temperature Accuracy | ≤ ±0.1°C |
| 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 |