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SN74LVC2G34DBVT bảng dữ liệu(PDF) 10 Page - Texas Instruments

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VCC
Unused Input
Input
Output
Output
Input
Unused Input
Vcc - V
0
1
2
3
4
5
6
0
1
2
3
4
5
D002
TPD
SN74LVC2G34
SCES359J – AUGUST 2001 – REVISED OCTOBER 2015
www.ti.com
Typical Application (continued)
9.2.3 Application Curve
Figure 4. TPD Across VCC at 25°C
10 Power Supply Recommendations
The power supply can be any voltage between the minimum and maximum supply voltage rating located in the
Recommended Operating Conditions table.
Each VCC pin must have a good bypass capacitor to prevent power disturbance. For devices with a single supply,
a 0.1-
μF capacitor is recommended and if there are multiple VCC pins then a 0.01-μF or 0.022-μF capacitor is
recommended for each power pin. It is ok to parallel multiple bypass caps to reject different frequencies of noise.
0.1-
μF and 1-μF capacitors are commonly used in parallel. The bypass capacitor must be installed as close to
the power pin as possible for best results.
11 Layout
11.1 Layout Guidelines
When using multiple bit logic devices inputs must not ever float. In many cases, functions or parts of functions of
digital logic devices are unused; for example, when only two inputs of a triple-input AND gate are used or only 3
of the 4 buffer gates are used. Such input pins must not be left unconnected because the undefined voltages at
the outside connections result in undefined operational states. Specified below are the rules that must be
observed under all circumstances. All unused inputs of digital logic devices must be connected to a high or low
bias to prevent them from floating. The logic level that must be applied to any particular unused input depends on
the function of the device. Generally they will be tied to GND or VCC whichever make more sense or is more
convenient.
11.2 Layout Example
10
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Product Folder Links: SN74LVC2G34



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