Overview
The CD40106BM96 is a CMOS hex Schmitt-trigger inverter IC produced by Texas Instruments. This device is designed for reliable waveform generation and signal conditioning applications. It features six independent Schmitt-trigger inputs, a wide operating voltage range of 3V to 18V, low power consumption, and high noise immunity. The CD40106BM96 is packaged in a SOIC-14 package, making it suitable for various applications where space and reliability are critical.
Key Specifications
Parameter | Description |
---|---|
Technology Family | CD4000 |
Supply Voltage (Min) | 3 V |
Supply Voltage (Max) | 18 V |
Number of Channels | 6 |
IOL (Max) | 2.4 mA |
IOH (Max) | -2.4 mA |
Supply Current (Max) | 120 µA |
Input Type | Schmitt-Trigger |
Output Type | Push-Pull |
Features | Balanced outputs, Input clamp diode, Standard speed (tpd > 50ns) |
Rating | Catalog |
Operating Temperature Range | -55°C to 125°C |
Key Features
- Hex Schmitt-Trigger Inverter IC: Provides six independent Schmitt-trigger inputs for reliable waveform generation and signal conditioning.
- Wide Operating Voltage Range: Operates over a wide voltage range from 3V to 18V, making it suitable for various applications.
- Low Power Consumption: Consumes low power, reducing heat generation and increasing system reliability.
- High Noise Immunity: Offers high noise immunity, ensuring reliable operation in noisy environments.
- Hysteresis Voltage: Features hysteresis voltage for stable switching between positive and negative-going signals.
- No Limit On Input Rise and Fall Times: Allows for flexible input signal handling.
- Standardized, Symmetrical Output Characteristics: Ensures consistent output signals.
Applications
The CD40106BM96 is suitable for various applications that require waveform generation and signal conditioning, such as:
- Timing Circuits: Used in timing circuits to generate precise clock signals.
- Data Acquisition Systems: Applied in data acquisition systems to condition and process analog signals.
- Industrial Control Systems: Utilized in industrial control systems for signal processing and waveform generation.
- Aerospace: Used in aerospace applications where reliable waveform generation and signal conditioning are critical.
- Automotive: Applied in automotive systems for signal processing and waveform generation.
- Industrial Automation: Utilized in industrial automation systems for timing circuits, data acquisition, and control systems.
Q & A
- What is the CD40106BM96?
The CD40106BM96 is a CMOS hex Schmitt-trigger inverter IC from Texas Instruments, designed for reliable waveform generation and signal conditioning. - What is the package type of the CD40106BM96?
The CD40106BM96 is packaged in a SOIC-14 package. - What is the operating voltage range of the CD40106BM96?
The operating voltage range is from 3V to 18V. - How many Schmitt-trigger inputs does the CD40106BM96 have?
The CD40106BM96 has six independent Schmitt-trigger inputs. - What are the key features of the CD40106BM96?
Key features include wide operating voltage range, low power consumption, high noise immunity, and standardized, symmetrical output characteristics. - What are some common applications of the CD40106BM96?
Common applications include timing circuits, data acquisition systems, industrial control systems, aerospace, automotive, and industrial automation. - What is the operating temperature range of the CD40106BM96?
The operating temperature range is from -55°C to 125°C. - Does the CD40106BM96 have any specific certifications or compliance?
Yes, it complies with RoHS and has various export codes such as ECCN, CNHTS, USHTS, etc.. - How do I use the CD40106BM96 in a circuit?
Connect the Schmitt-trigger inputs (A1-A6) to your desired signal source, apply a positive power supply voltage (VCC), and ground the device as required. Refer to the datasheet for detailed usage instructions. - Are there any equivalent or complementary devices to the CD40106BM96?
Yes, devices like the CD40107BM96 and LM311 can serve as alternatives or complements depending on the application requirements.