Texas Instruments SN74LVCZ244AN

Buffer/Line Driver 8-CH Non-Inverting 3-ST CMOS 20-Pin PDIP Tube
$ 0.791
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Texas Instruments

Datasheet15 SeitenVor 18 Jahren

Sierra IC

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Alternative Teile

Price @ 1000
$ 0.791
$ 0.519
$ 0.519
Stock
101,756
364,654
364,654
Authorized Distributors
2
5
5
Case/Package
PDIP
PDIP
PDIP
Number of Pins
20
20
20
Logic Function
Buffer, Inverting
Buffer, Inverting
Buffer, Inverting
Number of Elements
2
2
2
Number of Bits per Element
4
4
4
Low Level Output Current
24 mA
24 mA
24 mA
High Level Output Current
-24 mA
-24 mA
-24 mA
Propagation Delay
5.9 ns
19.8 ns
19.8 ns
Min Supply Voltage
2.7 V
1.65 V
1.65 V
Max Supply Voltage
3.6 V
3.6 V
3.6 V

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Beschreibungen

Beschreibungen von Texas Instruments SN74LVCZ244AN, die von den Distributoren bereitgestellt werden.

Buffer/Line Driver 8-CH Non-Inverting 3-ST CMOS 20-Pin PDIP Tube
IC BUF NON-INVERT 3.6V 20DIP / Buffer, Non-Inverting 2 Element 4 Bit per Element 3-State Output 20-PDIP
ROHS3Compliant DUAL CMOS ENABLE LOW Logic Buffer, Non-Inverting -40C~125C TA 3.3V 8.6ns 24mA 24mA
OCTAL BUFFER/DRIVER WITH 3-STATE OUTPUT
IC BUFFER NON-INVERT 3.6V 20DIP
This octal buffer/line driver is designed for 2.7-V to 3.6-V VCC operation. The SN74LVCZ244A is organized as two 4-bit line drivers with separate output-enable (OE)\ inputs. When OE\ is low, the device passes data from the A inputs to the Y outputs. When OE\ is high, the outputs are in the high-impedance state. Inputs can be driven from either 3.3-V or 5-V devices. This feature allows the use of this device as a translator in a mixed 3.3-V/5-V system environment. When VCC is between 0 and 1.5 V, the device is in the high-impedance state during power up or power down. However, to ensure the high-impedance state above 1.5 V, OE\ should be tied to VCC through a pullup resistor; the minimum value of the resistor is determined by the current-sinking capability of the driver. This device is fully specified for hot-insertion applications using Ioff and power-up 3-state. The Ioff circuitry disables the outputs, preventing damaging current backflow through the device when it is powered down. The power-up 3-state circuitry places the outputs in the high-impedance state during power up and power down, which prevents driver conflict.

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