Allicdata Part #: | 296-13011-2-ND |
Manufacturer Part#: |
SN74LVC2G14DCKR |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Texas Instruments |
Short Description: | IC INVERTER SCHMITT 2CH SC70-6 |
More Detail: | Inverter IC 2 Channel Schmitt Trigger SC-70-6 |
DataSheet: | SN74LVC2G14DCKR Datasheet/PDF |
Quantity: | 87000 |
Series: | 74LVC |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
Logic Type: | Inverter |
Number of Circuits: | 2 |
Number of Inputs: | 2 |
Features: | Schmitt Trigger |
Voltage - Supply: | 1.65 V ~ 5.5 V |
Current - Quiescent (Max): | 10µA |
Current - Output High, Low: | 32mA, 32mA |
Logic Level - Low: | 0.3 V ~ 1.4 V |
Logic Level - High: | 1.4 V ~ 3.7 V |
Max Propagation Delay @ V, Max CL: | 4.3ns @ 5V, 50pF |
Operating Temperature: | -40°C ~ 125°C |
Mounting Type: | Surface Mount |
Supplier Device Package: | SC-70-6 |
Package / Case: | 6-TSSOP, SC-88, SOT-363 |
Base Part Number: | 74LVC2G14 |
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Logic gates are used for several operations in electrical engineering and computing. A SN74LVC2G14DCKR is an example of a two-input single gate logic device that uses an arrangement of two metal-oxide semiconductor field effect transistors (MOSFETs) to perform logic functions. It belongs to the family of low-voltage, low-cost logic gates, which are specifically designed to operate from a power supply voltage of up to 1.65 V.
The SN74LVC2G14DCKR is comprised of a logic block that uses N-channel MOSFETs to perform logic operations. The device includes two input ports and one output port. The two input ports are designated as IN1 and IN2. The output port is designated as OUT. The MOSFETs are connected in a complementary fashion in order to perform the logic operations. The logic block utilizes the N-channel MOSFETs to generate a logic level output that is opposite of the logic level at the two inputs. This is known as an “inverter”.
The SN74LVC2G14DCKR operates with a wide range of input voltage levels, including 0 to 1.65 volts. This makes it compatible with a variety of low voltage devices, including low voltage cmos devices. It can also operate with dual or mixed voltage supplies, allowing it to be used in mixed signal circuits. It includes protection against input clipping and static damage. The device has a “Schmidt” trigger input, which allows it to react quickly to input voltage transitions. This helps provide superior noise immunity and data integrity. The device also has a wide operating temperature range from -40°C to +125°C. This allows it to be used in a variety of applications, including automotive and industrial applications.
The SN74LVC2G14DCKR has a variety of application fields due to its low voltage operation and wide operating temperature range. It is commonly used in automotive applications, such as controlling speed, angles, and fuel injection. It is also used in industrial applications, including LED lighting and motion control systems. It is also used in consumer electronics applications, such as portable game consoles and phones.
The working principle of the SN74LVC2G14DCKR is based on an arrangement of two MOSFETs, which are arranged in a complementary fashion. This allows the logic operation of the device to be determined by the logic level at the two input ports. When the logic level at the two inputs is different, the output level will be the opposite of the logic level at the two inputs. When the logic level at the two inputs is the same, the output level will be the same as the logic level at the two inputs. This makes the SN74LVC2G14DCKR an inverter, which can be used for many applications.
In conclusion, the SN74LVC2G14DCKR is a two-input single gate logic device that is designed to operate from a power supply voltage of up to 1.65V. It is designed to offer superior noise immunity and data integrity. It is used in a variety of application fields, including automotive and industrial, due to its low voltage operation and wide operating temperature range. The working principle of the SN74LVC2G14DCKR is based on an arrangement of two MOSFETs, which are arranged in a complementary fashion. This allows the device to act as an inverter.
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