The STHV800L, crafted by the renowned semiconductor manufacturer STMicroelectronics, is a state-of-the-art high-voltage ultrasound pulser designed to meet the demanding requirements of medical ultrasound imaging applications. This advanced integrated circuit (IC) is designed to deliver precise and powerful pulsed waveforms necessary for high-resolution imaging.
Key Features
- Eight Independent Channels: The STHV800L features eight channels that can be independently controlled, allowing for versatile and complex ultrasound wave patterns.
- High-Voltage Capability: Each channel can support up to +105V to -105V, enabling the generation of strong and clear ultrasound signals for deep tissue imaging.
- Integrated Beamforming: With its beamforming capability, the STHV800L can focus ultrasound waves on specific areas, improving image resolution and contrast.
- Low Power Consumption: Despite its high-voltage operation, the device is designed for low power consumption, which is critical for portable ultrasound systems.
- Flexible Operating Modes: The IC supports both linear and phased array transducers, providing flexibility for different imaging techniques and applications.
- Advanced Protection Features: It includes over-temperature protection and under-voltage lockout to ensure safe and reliable operation.
Applications
The STHV800L is primarily used in medical diagnostic equipment, particularly in ultrasound imaging systems. Its versatility also allows it to be used in non-destructive testing and evaluation, where high-resolution imaging is crucial.
Technical Specifications
| Parameter |
Value |
| Number of Channels |
8 |
| High Voltage Range |
+105V to -105V |
| Power Dissipation |
Low |
| Protection Features |
Over-temperature, Under-voltage lockout |
Overall, the STHV800L from STMicroelectronics stands out as a robust and efficient solution for high-performance ultrasound applications. Its combination of high-voltage operation, multiple channels, and advanced features make it a preferred choice for designers and engineers seeking to create cutting-edge medical imaging devices.