The MC74LCX158DR2 has a total of 16 pins arranged as follows:
__ __
A1 |1 \__/ 16| VCC
B1 |2 15| A0
C1 |3 14| B0
D1 |4 13| C0
GND |5 MC 12| D0
A2 |6 74LCX 11| G1
B2 |7 X158 10| G2
C2 |8 9| G3
-- --
The MC74LCX158DR2 operates as a multiplexer by selecting one of the four data inputs (A0, B0, C0, D0) based on the control signals (G1, G2, G3). The selected input is then routed to the output pin (MC). The low voltage supply and high-speed CMOS technology ensure efficient data processing.
The MC74LCX158DR2 can be used in various applications that require data multiplexing, such as:
These alternative models offer similar functionality to the MC74LCX158DR2 and can be considered as alternatives depending on specific requirements.
Word count: 342 words
What is the maximum operating voltage for MC74LCX158DR2?
- The maximum operating voltage for MC74LCX158DR2 is 3.6V.
What is the typical propagation delay of MC74LCX158DR2?
- The typical propagation delay of MC74LCX158DR2 is 5.8ns.
Can MC74LCX158DR2 be used in automotive applications?
- Yes, MC74LCX158DR2 is suitable for use in automotive applications.
What is the input voltage range for MC74LCX158DR2?
- The input voltage range for MC74LCX158DR2 is 0V to VCC.
Is MC74LCX158DR2 compatible with TTL logic levels?
- Yes, MC74LCX158DR2 is compatible with TTL logic levels.
What is the maximum quiescent current for MC74LCX158DR2?
- The maximum quiescent current for MC74LCX158DR2 is 20μA.
Can MC74LCX158DR2 be used in battery-powered devices?
- Yes, MC74LCX158DR2 is suitable for use in battery-powered devices.
What is the package type for MC74LCX158DR2?
- MC74LCX158DR2 is available in a 16-pin SOIC package.
Does MC74LCX158DR2 have overvoltage protection?
- Yes, MC74LCX158DR2 has built-in overvoltage protection.
What is the temperature range for operation of MC74LCX158DR2?
- MC74LCX158DR2 can operate within a temperature range of -40°C to 85°C.