The ISL83076EIBZ is a low-voltage, single supply, quad SPST (Single-Pole/Single-Throw) analog switch. This switch is designed to operate from a single +1.6V to +5.5V supply. It features very low on-resistance (typically 0.4Ω at 5V) and excellent bandwidth, making it suitable for a wide range of signal switching applications where multiple independent switches are required.
Applications
- Battery-powered equipment
- Audio and video signal routing
- Data acquisition systems
- Communication systems
- Cellular phones
- PDAs
- Portable instruments
- Sample and Hold Circuits
Features
- Low On-Resistance: Typically 0.4Ω at 5V
- Single Supply Operation: +1.6V to +5.5V
- Low Power Consumption
- Fast Switching Speed: tON = 20ns, tOFF = 10ns (typical)
- TTL/CMOS Compatible Logic Inputs
- Break-Before-Make Switching
- Available in a 16-Lead SOIC Package
Benefits
- Reduced signal distortion due to low on-resistance, preserving signal integrity.
- Extended battery life in portable devices due to low power consumption.
- High-density switching capabilities due to the quad SPST configuration.
- Easy interface with digital control systems due to TTL/CMOS compatible logic inputs.
- Minimized signal interruption during switching due to the break-before-make feature.
- Compact design due to the small SOIC package, saving board space.
Additional Details
The ISL83076EIBZ utilizes advanced CMOS technology to achieve high performance and low power consumption. It provides a reliable and efficient solution for analog signal switching where multiple independent switches are needed. The break-before-make switching action prevents momentary shorting of the signal source during switching. Each switch is controlled by a separate digital logic input, allowing for independent control of each SPST switch. The device is available in a 16-lead SOIC (Small Outline Integrated Circuit) package, which is suitable for surface mount assembly. The operating temperature range is typically -40°C to +85°C, making it suitable for a wide range of environments.