Handheld Ultrasound Device MD-HUSG-1005 operates within a frequency range of 2.2 to 3.6 MHz, ensuring superior image resolution and penetration. With a scan depth of 90 to 240 mm and 80° scan angle, the probe enables in-depth cardiac assessments. It is equipped with dual and full-screen display modes for multiple imaging techniques and settings. Our product stands as an indispensable tool for modern cardiac diagnostics, combining advance performance with unparalleled convenience.
| Probe type | Phased array probe |
| Frequency | 2.2 to 3.6Mhz |
| Scan Depth | 90 to 240 mm |
| Scan Angle | 80° |
| Length | 25 × 16 mm |
| Elements | 128 |
| Channel | 64 |
| Display type | Dual and Full screen |
| Display Mode | B, B+B, B+M, Color, PW/CW, PDI, B+Color+PW/CW |
| Presets | Cardiac, Abdomen, User1, User2 |
| Software adjustable parameter | B GN(Gain), Color GN(Gain), D(Depth), ENH(Enhancement), DR (Dynamic Range) H(harmonic), Focus, 8 TGC, Mid-Line, An note, Page Left/Right Up/Down |
| Measurement | B: Length, Area/Circumference, Angle, Trace, Distance B+M: Heart rate, Time, Distance B+PW: Velocity, Heart rate (2), S/D, Depth |
| Frame rate | 18 to 24 f/s |
| Clip loop | Automatic / manual 100/200/500/1000 frame |
| Waterproof grade | IP68 |
| Image storage format | JPEG, MP4, Dicom |
| Languages | Chinese, Ukrainian, German, English, Russian, France, Italian, Spanish, Portuguese (Brazil) |
| Wifi Connection type | 802.11n/20MHz/ 2.4G/5G |
| Compatible device | Android. IOS. Windows |
| Power consumption | 3 W (Live) / 1 W (freeze) |
| Battery | Built-in 2 rechargeable High capacity Lition batteries 3.8 V, 2600 mAh, 9.88 Wh. |
| Working hours | Working time: 4 hours Standby time: 72 hours |
| Recharging time | 3 to 4 hours |
| Charging | Type-C USB, Wireless charging |
| Dimensions | 114 × 53 × 30mm |
| Weight | 165g |
Handheld Ultrasound Device MD-HUSG-1005 is ideal for advanced cardiac diagnostics, hemodynamic assessments, perioperative monitoring, and real-time (POCUS) evaluations, ensuring precise and rapid clinical decision-making in diverse medical environments.