Product Description: CD4068 SOP 8-Input AND Gate
The CD4068 SOP 8-Input AND Gate is a high-performance CMOS integrated circuit designed to perform logical AND operations on eight input signals. With its ability to handle multiple inputs, this gate provides a powerful and flexible solution for complex digital logic systems that require multiple conditions to be met simultaneously. The CD4068 ensures that the output is high only when all eight inputs are at a logic high level, making it an essential component for applications where multiple signals must be combined for decision-making or control purposes.
The CMOS technology used in the CD4068 offers low power consumption, high noise immunity, and high-speed performance, making it ideal for modern digital circuits. The SOP package provides a compact form factor that is perfect for space-constrained designs, allowing for efficient surface-mount integration into high-density printed circuit boards (PCBs).
Key Features:
- 8-Input AND Gate: Performs logical AND operation on eight independent input signals.
- CMOS Technology: Low power consumption, high-speed operation, and robust noise immunity.
- Wide Voltage Range: Operates typically between 3V and 18V, ensuring compatibility with various digital systems.
- High-Speed Performance: Ideal for applications that require fast logical decision-making based on multiple inputs.
- Compact SOP Package: Space-efficient design perfect for surface-mount applications and compact PCBs.
- Low Power Consumption: Efficient operation in both battery-powered and high-performance systems.
- High Noise Immunity: Resistant to signal interference and voltage fluctuations, ensuring reliable operation in noisy environments.
Applications:
- Digital Logic Circuits: Used in systems where multiple inputs need to be combined for a single logical decision, such as in control systems, data processing, or signal routing.
- Control Systems: Ideal for decision-making logic, where an action is triggered only when all conditions are met (all inputs are high).
- Signal Processing: Used in signal processing applications for complex gating and control functions.
- Timing Circuits: Can be used in timing circuits where the output depends on the simultaneous high state of multiple input signals.
- System-Level Integration: Suitable for microcontrollers, FPGA, and CPLD based systems, simplifying circuit design and reducing component count.
- Pulse Generation and Detection: Used in systems that require multiple signal conditions to trigger specific actions or pulse events.
Package Included:
1 x CD4068 SOP 8-Input AND Gate
Please note that the product image is for illustrative purposes only. The actual product may vary slightly in appearance.
MAC97A8 TO92 600V 8A Triac
AT93C46 DIP 1KBit I2C-Compatible, (2-Wire) Serial EEPROM 5.5V 2.0mA
H20R1202 TO247 1200V 20A IGB with Monolithic Body Diode
TYT5 TO-252 Original MOSFET Transistor
BT139-800E TO220 800V 140A TRIAC Sensitive Gate
TNY277GN SOP / SMD SMPS TINY Switch-II Off-Line Switcher IC
SI2302 A2 SOT23 20V 3A N-Channel MOSFET
TNY280GN SOP / SMD SMPS 12V 1A TINY Switch-II Off-Line Switcher IC
LM386 SOP – Low Voltage Audio Amplifier IC
CD4066 DIP Quad Analogue Switch (Low "ON" Resistance)
LM2596 - 12V TO220 5 Pin Voltage Regulator IC
TL431 SOT23 / SMD Adjustable Shunt Regulator IC
IRFB4110 TO220 100V 180A N-Channel MOSFET
BC558 TO-92 PNP General Purpose Transistor
CD4050 DIP Buffer; Non-Inverting (6 Buffers)(Unusual Pin Configuration, Capable of Directly Drivin 74-Series TTL) N
74LS136 DIP Quad 2-Input XOR Gate with Open Collector Output
2SC6093 TO-220F ISC H-OUT Silicon NPN Power Transistor
8 Way 8 Channel 10A 12VDC Relay Module with Opto Isolated High & Low Trigger With Screw Terminal
MAX4466 Electret Microphone Amplifier with Adjustable Gain GY-MAX4466
A1941 TO-247 PNP Power Transistors
CD4541 SOP Programmable Timer
IRG71C28U TO-220F Original 600V 25A PDP Trench IGBT
CD4060 DIP 14-Stage Ripple-Carry Binary counter/Divider And Oscillator IC
TNY274GN SOP - SMPS TINY Switch-II Off-Line Switcher IC 



There are no reviews yet.