Handheld Ultrasound Device MD-HUSG-3001 operates at a frequency ranges, of 3.2/5 MHz, 7.5/10 MHz, and 3.2/4 MHz for Convex Linear and Cardiac Array probe respectively. It supports 6 imaging modes, including B, 2B, B+M, Color Doppler, PW, and PDI. Image storage is available in JPEG, MP4, and DICOM formats. Our product offers unparalleled diagnostic accuracy, mobility, and real-time imaging, for modern healthcare settings.
| Probe type | Convex+ Linear+ Cardiac |
| Frequency | Convex: 3.2/5MHz Linear:7.5/10MHz Cardiac: 3.2/4MHz |
| Scan Depth | Convex: 90 to 305mm Linear:20 to 100mm Phased:90 to 200mm |
| Surface area | Linear: L45 |
| Radius | Convex: R60 |
| Elements | Dual 192 |
| Channel | Dual 64 |
| Playback frames | 100, 200, 500, 1000 optional |
| Frame rate | 24s/f |
| Presets | 16+ Abdomen, GYN&OB, Cardiac, Urology, Kidney, Lung, Thyroid, Small parts, pediatrics, Vascular, Carotid, Breast, Msk, Nerve |
| Software adjustable parameter | GN (gain), D(Depth), ENH(Enhancement), DR (Dynamic range), F(Frequency), FocusPos, PRF, WF, Mode, 8TGC, Biopsy, Annote, Page left/right/up/down. |
| Display Mode | B, 2B, B+M, Color, PW, PDI |
| Measurement | B: Length, Area/Circumference, Angle, Trace, Distance, GA (CRL, BPD, GS, FL, HC, AC) EFW (BPD, FL) B+M: Heart rate, Time, Distance, LVID (LVIDd, LVIDs, EF, SV) B+PW: Velocity, Heart rate (2), S/D, Depth. |
| Waterproof grade | IP68 |
| Image storage format | JPEG, Mp4 and DICOM |
| Languages | Chinese, Ukrainian, German, English, Russian, France, Italian, Spanish, Portuguese (Brazil) |
| Connection | Wi-Fi (802.11n/20MHz/ 2.4G/5G) USB |
| Compatibility | IOS, Android, Windows |
| Battery | 2800mAh |
| Working hours | Working time: 3hours Standby time: 48 hours 5 hours |
| Recharging time | 2 to 3 hrs by wireless charging |
| Dimensions | 160 × 65 × 18mm |
| Weight | 262g |
Handheld Ultrasound Device MD-HUSG-3001 delivers high-precision, real-time imaging across abdominal, cardiac, vascular, OB/GYN, urology, pulmonary, pediatric, thyroid, breast, nerve, and emergency diagnostics, integrating AI-enhanced optimization.