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SN74HCS14QDRQ1 Texas Instruments <p style="white-space: normal;">describe</p><p style="white-space: normal;"><br/></p><p style="white-space: normal;">The device contains six independent inverters with Schmitt triggered inputs. Each logic gate performs the Boolean function Y = A in positive logic.</p><p style="white-space: normal;"><br/></p><p style="white-space: normal;"><br/></p><p style="white-space: normal;"><br/></p><p style="white-space: normal;"><br/></p><p style="white-space: normal;"><br/></p><p style="white-space: normal;">The device contains six independent inverters with Schmitt triggered inputs. Each logic gate performs the Boolean function Y = A in positive logic.</p><p style="white-space: normal;"><br/></p><p style="white-space: normal;"><br/></p><p style="white-space: normal;"><br/></p><p style="white-space: normal;"><br/></p><p style="white-space: normal;"><br/></p><p style="white-space: normal;"><br/></p><p style="white-space: normal;">characteristic</p><p style="white-space: normal;"><br/></p><p style="white-space: normal;">• AEC-Q100 Qualified for Automotive Applications:</p><p style="white-space: normal;">• Device Temperature Grade 1: –40°C to +125°C, TA</p><p style="white-space: normal;">• Device HBM ESD Classification Level 2</p><p style="white-space: normal;">• Device CDM ESD classification level C6</p><p style="white-space: normal;"><br/></p><p style="white-space: normal;">• Wide Operating Voltage Range: 2V to 6V</p><p style="white-space: normal;">• Schmitt trigger input for slow or noisy input signals</p><p style="white-space: normal;">• Low power consumption</p><p style="white-space: normal;">• 100nA Typical ICC</p><p style="white-space: normal;">• Input Leakage Current Typical ±100nA</p><p style="white-space: normal;"><br/></p><p style="white-space: normal;">• Output Drive ±7.8mA @ 5V</p>
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SN74HCS164QDRQ1 Texas Instruments <p>describe</p><p><br/></p><p>The SN74HCS164-Q1 device contains an 8-bit shift register with AND-gated serial inputs and an asynchronous clear (CLR) input. The gated serial (A and B) inputs permit complete control over incoming data; a low at either input inhibits entry of the new data and resets the first flip-flop to the low level at the next clock (CLK) pulse. A high-level input enables the other input, which then determines the state of the first flip-flop. Data at the serial inputs can be changed while CLK is high or low, provided the minimum set-up time requirements are met. Clocking occurs on the low-to-high-level transition of CLK. All inputs include Schmitt-triggers, eliminating any erroneous data outputs due to slow-edged or noisy input signals.</p><p><br/></p><p><br/></p><p><br/></p><p>The SN74HCS164-Q1 device contains an 8-bit shift register with AND-gated serial inputs and an asynchronous clear (CLR) input. The gated serial (A and B) inputs permit complete control over incoming data; a low at either input inhibits entry of the new data and resets the first flip-flop to the low level at the next clock (CLK) pulse. A high-level input enables the other input, which then determines the state of the first flip-flop. Data at the serial inputs can be changed while CLK is high or low, provided the minimum set-up time requirements are met. Clocking occurs on the low-to-high-level transition of CLK. All inputs include Schmitt-triggers, eliminating any erroneous data outputs due to slow-edged or noisy input signals.</p><p><br/></p><p><br/></p><p><br/></p><p><br/></p><p>characteristic</p><p><br/></p><p>• AEC-Q100 Qualified for automotive applications:</p><p>• Device temperature grade 1: –40°C to +125°C, TA</p><p>• Device HBM ESD Classification Level 2</p><p>• Device CDM ESD Classifcation Level C6</p><p><br/></p><p>• Wide operating voltage range: 2 V to 6 V</p><p>• Schmitt-trigger inputs allow for slow or noisy input signals</p><p>• Low power consumption</p><p>• Typical ICC of 100 nA</p><p>• Typical input leakage current of ±100 nA</p><p><br/></p><p>• ±7.8-mA output drive at 6 V</p>
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INA290A3IDCKR Texas Instruments <p>describe</p><p><br/></p><p>The INAx290 is an ultraprecision current sense amplifier that measures the voltage drop across a shunt resistor over a wide common-mode range of 2.7V to 120V. The combination of ultra-low offset voltage of ±12µV (max), small gain error of ±0.1% (max), and high DC CMRR of 160dB (typ) enables ultra-precise current measurement accuracy. With a high bandwidth of 1.1MHz (at a gain of 20V/V) and an AC CMRR of 85dB (at 50kHz), the INAx290 is suitable not only for DC current measurements but also for high-speed applications such as fast overcurrent protection.</p><p><br/></p><p>The INAx290 provides the ability to make ultra-precise current measurements by measuring the voltage drop across a shunt resistor over a wide common-mode range of 2.7V to 120V. The INAx290 devices are available in a very space-saving package. The single-channel INA290 device is available in an SC-70 package, the dual-channel INA2290 device is available in an MSOP-8 package, and the quad-channel INA4290 device is packaged in a 4mm x 4mm QFN package.</p><p><br/></p><p>The INAx290 operates from a single 2.7-V to 20-V supply, and the single-channel devices draw only 370 µA (typical) of supply current per channel. These devices have five gain options: 20V/V, 50V/V, 100V/V, 200V/V, and 500V/V. The low offset voltage of the zero-drift architecture enables the use of low-ohmic shunts for current sensing over the extended operating temperature range (-40°C to +125°C).</p><p><br/></p><p><br/></p><p><br/></p><p>The INAx290 is an ultraprecision current sense amplifier that measures the voltage drop across a shunt resistor over a wide common-mode range of 2.7V to 120V. The combination of ultra-low offset voltage of ±12µV (max), small gain error of ±0.1% (max), and high DC CMRR of 160dB (typ) enables ultra-precise current measurement accuracy. With a high bandwidth of 1.1MHz (at a gain of 20V/V) and an AC CMRR of 85dB (at 50kHz), the INAx290 is suitable not only for DC current measurements but also for high-speed applications such as fast overcurrent protection.</p><p><br/></p><p>The INAx290 provides the ability to make ultra-precise current measurements by measuring the voltage drop across a shunt resistor over a wide common-mode range of 2.7V to 120V. The INAx290 devices are available in a very space-saving package. The single-channel INA290 device is available in an SC-70 package, the dual-channel INA2290 device is available in an MSOP-8 package, and the quad-channel INA4290 device is packaged in a 4mm x 4mm QFN package.</p><p><br/></p><p>The INAx290 operates from a single 2.7-V to 20-V supply, and the single-channel devices draw only 370 µA (typical) of supply current per channel. These devices have five gain options: 20V/V, 50V/V, 100V/V, 200V/V, and 500V/V. The low offset voltage of the zero-drift architecture enables the use of low-ohmic shunts for current sensing over the extended operating temperature range (-40°C to +125°C).</p><p><br/></p><p><br/></p><p><br/></p><p><br/></p><p>characteristic</p><p><br/></p><p>• Wide Common Mode Voltage:</p><p>• Operating Voltage: 2.7V to 120V</p><p>• Withstand voltage: -20V to +122V</p><p><br/></p><p>• Excellent Common-Mode Rejection Ratio (CMRR):</p><p>• 160dB DC</p><p>• 85dB AC at 50kHz</p><p><br/></p><p>• Accuracy</p><p>• Gain:</p><p>• Gain Error: ±0.1% (Max)</p><p>• Gain Drift: ±5ppm/°C (Maximum)</p><p><br/></p><p>• Offset Voltage:</p><p>• Offset Voltage: ±12µV (Max)</p><p>• Temperature Drift: ±0.2µV/°C (Maximum)</p><p><br/></p><p><br/></p><p>• Available buffs:</p><p>• A1 device: 20V/V</p><p>• A2 devices: 50V/V</p><p>• A3 devices: 100V/V</p><p>• A4 device: 200V/V</p><p>• A5 device: 500V/V</p><p><br/></p><p>• High bandwidth: 1.1MHz</p><p>• Slew Rate: 2V/µs</p><p>• Quiescent Current: 370µA (per channel)</p>
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