CD4094 - 8-Stage Shift and Store Bus Register IC

CD4094 - 8-Stage Shift and Store Bus Register IC

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  • High Voltage Type (20V Rating)
  • 3-State Parallel Outputs for Connection to Common Bus
  • Separate Serial Outputs Synchronous to Both Positive and Negative Clock Edges for Cascading  
  • Medium Speed Operation - 5MHz at 10V (typ)
  • Quiescent Current at 20V  
  • Maximum Input Current of 1µA at 18V Over Full Package Temperature Range; 100nA at 18V and +25oC  
  • Noise Margin (Over Full Package/Temperature Range) - 1V at VDD = 5V - 2V at VDD = 10V - 2.5V at VDD = 15V
  • 5V, 10V and 15V Parametric Ratings

CD4094 - 8-Stage Shift and Store Bus Register IC

CD4094 belongs to the CD4000 IC series. This IC is composed of an 8-bit shift register and a 3- State 8-bit latch. In this IC, Data shifted serially through the shift register on the positive transition of the clock. The CD4082 IC operates at a wide range of working voltage, a wide range of working conditions. And directly interfaces with CMOS, NMOS, and TTL. The output of the IC always comes in TTL which makes it quite easy to function with other TTL devices and microcontrollers.

CD4094 offers features such as ESD barring and high noise immunity. Each output is protected against static damage by using clamping diodes. CD4094 Operates at a supply voltage of range between 3V to 20V. This IC is designed for operation over the full military temperature range of 0°C to 70°C. The IC CD4094 comes as smaller in size and offers much faster speed which makes it highly reliable in every kind of device. CD4094 IC can be soldered directly to the circuit board or easily mounted on a 16 pin IC base.

Shift-and-Store Bus Register is designed as a digital memory circuitry available in devices such as calculators, computers, and data processing systems. Using a Shift-and-Store Bus Register, data or bits enter into the system in a serial or parallel manner. Data entry is performed from one direction, and as more data is added, it shifts positions until the data gets to the output end. The two ends are referred to as the left and right ends. Whereas the movement of data occurs from left to right, from right to left. Or in both directions to make a bidirectional register.

Applications:

  • Serial-to-Parallel data conversion
  • Remote control holding register
  • Dual rank shift, hold, and bus register

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