Quad Bilateral Switch Integrated Circuit, DIP-14.
- $ 99.00
- Brand: SYSCOM PARTS
- Availability: In stock
- SKU: CD4066BE
Main Features Four bilateral switches integrated on a chip DIP-14 format for easy mounting High efficiency in signal switching Compatibility with various operating voltages Low power consumption during operation Electrical...
Tags: categoria:Radiocomunicación , marca:SYSCOM PARTS , proveedor:Syscom , sku:CD4066BE , supplier:Syscom , syscom , Tecnología Y Electrónica
Main Features
- Four bilateral switches integrated on a chip
- DIP-14 format for easy mounting
- High efficiency in signal switching
- Compatibility with various operating voltages
- Low power consumption during operation
Electrical Characteristics
- On-state resistance: 125-Ω typical for 15-V operation
- Voltage range: 3V to 18V
- Operating temperature: -55°C to 125°C
- Leakage current: 10pA typical
- Input impedance: 10¹²Ω typical
Applications
- Analog and digital signal switching and multiplexing
- Bidirectional signal transmission controlled by digital logic
- Implementation of transmission-type logic
- Analog-to-digital and digital-to-analog conversion
- Frequency, impedance, phase, and gain control of analog signals
Detailed Features
- Low distortion in analog signals
- High output signal-to-off voltage ratio
- Low noise and crosstalk between channels
- Bidirectional signal switching
- Low power consumption
- High noise immunity
- Stable operation over a wide temperature range
Technical Advantages
- Low on-state resistance
- Constant resistance over the entire signal range
- High input impedance
- Low power consumption
- CMOS compatibility
- Compact design for PCB
- Easy integration into existing circuits
Test Information
- Quiescent current test: 100% tested at 20-V
- Parametric ratings: 5-V, 10-V, and 15-V
- Test temperature: -55°C to 125°C
- Distortion test: 0.4% typical at 1kHz
Storage Conditions
- Storage temperature: -65°C to 150°C
- Maximum junction temperature: 175°C (ceramic package), 150°C (plastic package)
- Thermal resistance: 53.7°C/W (PDIP), 89.5°C/W (SOIC)