Mô tả ngắn
Hãng sản xuất: Kruss
The premium solution for wettability analysis of microscopically small surfaces
The wettability of very small surfaces can have a great influence on product quality, e.g. for contact points on circuit boards or in microfluidics. The DSA100M Drop Shape Analyzer is the premium solution for accurately positioning and analyzing drops in the picoliter range. The resulting contact angle is exactly the information you need for optimizing wetting and coating processes on very small surfaces.
HỖ TRỢ NHANH
THÔNG TIN SẢN PHẨM
- Specifications
- Applications
- Measuring methods
INSTRUMENT DIMENSIONS
| Footprint | 555 mm × 375 mm (W × D) |
|---|---|
| Height | 490 mm |
| Weight (without accessories) | 24 kg |
TEMPERATURE MEASUREMENT
| Range of temperature measurement | -50 to 400 °C |
|---|---|
| Resolution | 0.1 °C |
| Precision | 0.1 °C |
| Accuracy | 1/3 DIN B (±0.1 °C at 0 °C to ±0.8 °C at 400 °C) |
| Location of temperature measurement | sample stage chamber cuvette |
| External sensor | 2 connectors (PT100) |
POWER SUPPLY
| Voltage | 88 to 264 VAC |
|---|---|
| Power consumption | 100 W |
| Frequency | 50 to 60 Hz |
SAMPLE DIMENSIONS
| Maximum sample size | 320 mm × ∞ × 275 mm (W × D × H) (without axes) |
|---|
ENVIRONMENT
| Operating temperature | 10 to 40 °C |
|---|---|
| Humidity | without condensation |
TEMPERATURE CONTROL
| Equipment | temperature-controlled sample stage |
|---|---|
| Type of temperature control | liquid |
| Range of temperature control | -10 to 130 °C (with Tempering Chamber – TC3240) |
| Tempered area | 26 mm × 90 mm (W × D) |
| Resolution | 0.1 K |
| Flow-through thermostat | with liquid |
| External circulator | – |
INTERFACES
| PC | USB 3.0 |
|---|
HOUSING AND PERIPHERALS
| Compartment | test liquids protected against light |
|---|---|
| Needle protection shield | yes |
| Control keyboard | PC keyboard for ADVANCE software operation available (KB20) |
| Levelling | yes |
SOFTWARE
| Software type | ADVANCE |
|---|---|
| Available software modules | contact angle surface free energy of solids |
SURFACE FREE ENERGY OF SOLIDS
| Available | optional |
|---|---|
| Results | surface free energy (SFE) |
| Models | equation of state Zisman Fowkes Wu Owens-Wendt-Rabel-Kaelble Schultz-1 Schultz-2 extended Fowkes acid-base theory |
SESSILE DROP
| Available | included |
|---|---|
| Results | contact angle (CA) |
| Range | 0 to 180° (software-based) |
| Resolution | 0.01° (software-based) |
| Accuracy | 0.3° (instrument-based) |
| Models | conic section polynom circle Young-Laplace height-width |
| Type | static dynamic (additional accessories may be required) |
CAMERA SYSTEM (STANDARD)
| Type | Camera CF04 |
|---|---|
| Connection | USB 3.0 |
| Resolution | 1920 × 1200 px |
| Frame rate | 2300 fps |
| Dark noise | 7 electrons |
| Dynamic range | 73 dB |
ILLUMINATION
| Type | high power monochromatic LED |
|---|---|
| Wave length, dominant | 460 nm |
| Field of light | Ø 12 mm |
OPTICS (STANDARD)
| Focus | fixed focus |
|---|---|
| Zoom | 6.5× microscope zoom, manual |
| View angle | ±4° |
| Field of view | CF04: 0.2 mm × 0.2 mm to 0.9 mm × 0.9 mm (7× to 45×) |
| Resolution of optics | CF04: 0.1 to 0.8 μm |
OBSERVATION OPTICS
| Field of view | CF04/CF04C: 2.3 mm × 2.3 mm |
|---|---|
| Resolution | CF04/CF04C: 2 μm |
CAMERA SYSTEM (OPTIONAL)
| Type | High Speed Camera CF06 |
|---|---|
| Connection | USB 3.0 |
| Resolution | 640 × 480 px |
| Frame rate | 3400 fps |
| Dark noise | 10.5 electrons |
| Dynamic range | 56.6 dB |
DOSING SYSTEM
| Dosing | software-controlled |
|---|---|
| Cartridge/syringe (volume) | 4 mL |
| Resolution | fixed |
| Speed | 2 m/s |
STAGES
| Control | x-axis: manual y-axis: manual z-axis: manual |
|---|---|
| Length | x-axis: 30 mm y-axis: 50 mm z-axis: 45 mm |
| Resolution | x-axis: 20 mm/turn y-axis: 4 mm/turn z-axis: 1 mm/turn |
OPTICS (OPTIONAL)
| Focus | fixed focus |
|---|---|
| Zoom | 6.5× microscope zoom, manual |
| View angle | ±4° |
| Field of view | CF06: 0.1 mm × 0.1 mm to 0.4 mm × 0.3 mm (7× to 45×) |
| Resolution of optics | CF06: 0.1 to 0.7 μm |
- Investigation of synthetic and natural fibers for composites
- Wettability of contact points in microelectronics
- Optimization and development of hair care products
- Wettability of biochips
- Micromechanical components
- Microfluidics
- Contact angle of a drop on a solid surface
- Surface free energy of a solid using contact angle data


































