No. | parte # | Fabricante | Descripción | Hoja de Datos |
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Texas Instruments |
Octal Buffer/Driver • Operates From 1.65 V to 3.6 V • Inputs Accept Voltages to 5.5 V • Specified From –40°C to +85°C and –40°C to +125°C • Maximum tpd of 5.9 ns at 3.3 V • Typical VOLP (Output Ground Bounce) < 0.8 V at VCC = 3.3 V, TA = 25°C • Typical VOHV (Output VOH |
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Texas Instruments |
High-Speed CMOS Logic Octal Buffer/Line Drivers • HC/HCT240 Inverting • HC/HCT241 Non-inverting • HC/HCT244 Non-inverting • Typical propagation delay = 8ns at VCC = 5 V, CL = 15 pF, TA = 25℃ for HC240 • Three-state outputs • Buffered inputs • High-current bus driver outputs • Fanout (over temperat |
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Texas Instruments |
High-Speed CMOS Logic Octal Buffer/Line Drivers • HC/HCT240 Inverting • HC/HCT241 Non-inverting • HC/HCT244 Non-inverting • Typical propagation delay = 8ns at VCC = 5 V, CL = 15 pF, TA = 25℃ for HC240 • Three-state outputs • Buffered inputs • High-current bus driver outputs • Fanout (over temperat |
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Texas Instruments |
High-Speed CMOS Logic Octal Buffer/Line Drivers • HC/HCT240 Inverting • HC/HCT241 Non-inverting • HC/HCT244 Non-inverting • Typical propagation delay = 8ns at VCC = 5 V, CL = 15 pF, TA = 25℃ for HC240 • Three-state outputs • Buffered inputs • High-current bus driver outputs • Fanout (over temperat |
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Texas Instruments |
Quad-Bus Transceiver Description • Typical Propagation Delay (A to B, B to A) of 7ns at VCC = 5V, CL = 15pF, TA = 25oC • Three-State Outputs • Buffered Inputs • Fanout (Over Temperature Range) - Standard Outputs . . . . . . . . . . . . . . . 10 LSTTL Loads - Bus Driver |
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Texas Instruments |
OCTAL BUFFERS AND LINE DRIVERS and bus-oriented receivers and transmitters. The ’HC240 devices are organized as two 4-bit buffers/drivers with separate output-enable (OE) inputs. When OE is low, the device passes inverted data from the A inputs to the Y outputs. When OE is high, |
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Texas Instruments |
Dual-Channel CODEC • Stereo 16-Bit Oversampling Sigma-Delta A/D Converter • Stereo 16-Bit Oversampling Sigma-Delta D/A Converter • Support Maximum Master Clock of 100 MHz to Allow DSPs Output Clock to be Used as a Master Clock • Selectable FIR/IIR Filter With Bypassing |
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Texas Instruments |
Synchronous Rectifier Controller •1 Secondary-Side SR Controller Optimized for 5-V to 24-V Output Discontinuous/Transition Mode Only Flyback Converters • Volt-Second Balance Control Enables Highest Rectifier Efficiency • Compatible with PSR and SSR Flyback Controllers • Ultra Low 11 |
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Texas Instruments |
Octal Buffers and Line Drivers • Wide Operating Voltage Range of 2 V to 6 V • High-Current Outputs Drive Up to 15 LSTTL Loads • 3-State Outputs Drive Bus Lines or Buffer Memory Address Registers • Low Power Consumption: ICC, 80-µA (Maximum) • Typical tpd = 11 ns • ±6-mA Output Dri |
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Texas Instruments |
Dual-Channel Synchronous Rectifier Controller • 230-V VD pins rating • 23-ns turn-off delay to support LLC operating above resonant frequency and up to 625-kHz switching frequency • Proportional gate drive to extend the SR conduction time • Adjustable turn-off threshold for minimum body diode co |
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Texas Instruments |
GREEN Rectifier Controller Device •1 Secondary-Side Controller Optimized for 5-V Systems • Up to 600-kHz Operating Frequency • VDS MOSFET-Sensing • 1.6-Ω Sink, 2.0-Ω Source Gate-Drive Impedances • Micro-Power Sleep Current for 90+ Designs • Automatic Light-Load Management • Synchrono |
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Texas Instruments |
High-Speed CMOS Logic Octal Buffer/Line Drivers • HC/HCT240 Inverting • HC/HCT241 Non-inverting • HC/HCT244 Non-inverting • Typical propagation delay = 8ns at VCC = 5 V, CL = 15 pF, TA = 25℃ for HC240 • Three-state outputs • Buffered inputs • High-current bus driver outputs • Fanout (over temperat |
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Texas Instruments |
Octal Buffers and Line Drivers • Wide Operating Voltage Range of 2 V to 6 V • High-Current Outputs Drive Up to 15 LSTTL Loads • 3-State Outputs Drive Bus Lines or Buffer Memory Address Registers • Low Power Consumption: ICC, 80-µA (Maximum) • Typical tpd = 11 ns • ±6-mA Output Dri |
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Texas Instruments |
High-Speed CMOS Logic Octal Buffer/Line Drivers • HC/HCT240 Inverting • HC/HCT241 Non-inverting • HC/HCT244 Non-inverting • Typical propagation delay = 8ns at VCC = 5 V, CL = 15 pF, TA = 25℃ for HC240 • Three-state outputs • Buffered inputs • High-current bus driver outputs • Fanout (over temperat |
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Texas Instruments |
Octal Bus Transceivers • Wide Operating Voltage Range of 2 V to 6 V • High-Current 3-State Outputs Drive Bus Lines Directly or Up to 15 LSTTL Loads • Low Power Consumption, 80-μA Max ICC • Typical tpd = 12 ns • ±6-mA Output Drive at 5 V • Low Input Current of 1 μA Max • On |
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Texas Instruments |
Quad-Bus Transceiver Description • Typical Propagation Delay (A to B, B to A) of 7ns at VCC = 5V, CL = 15pF, TA = 25oC • Three-State Outputs • Buffered Inputs • Fanout (Over Temperature Range) - Standard Outputs . . . . . . . . . . . . . . . 10 LSTTL Loads - Bus Driver |
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Texas Instruments |
OCTAL BUFFERS AND LINE DRIVERS and bus-oriented receivers and transmitters. The ’HC240 devices are organized as two 4-bit buffers/drivers with separate output-enable (OE) inputs. When OE is low, the device passes inverted data from the A inputs to the Y outputs. When OE is high, |
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Texas Instruments |
High Frequency Synchronous Rectifier Controller •1 Supports Topologies such as Active Clamp Flyback, QR, DCM, CCM Flyback and LLC • MOSFET VDS Sensing up to 230 V • Operating Frequency Up to 1 MHz – 1 MHz for UCC24612-1 – 800 kHz for UCC24612-2 • Wide VDD Range Allows for Direct Bias from 5-V to 2 |
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Texas Instruments |
High-Speed CMOS Logic Octal-Bus Transceiver Description • Buffered Inputs • Three-State Outputs • Bus Line Driving Capability • Typical Propagation Delay = 5V, CL = 15pF, TA = 25oC (A to B, B to A) 9ns at VCC • Fanout (Over Temperature Range) - Standard Outputs . . . . . . . . |
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Texas Instruments |
Octal Bus Transceivers •1 Wide Operating Voltage Range of 2 V to 6 V • High-Current 3-State Outputs Drive Bus Lines Directly or Up to 15 LSTTL Loads • Low Power Consumption, 80-μA Max ICC • Typical tpd = 12 ns • ±6-mA Output Drive at 5 V • Low Input Current of 1 μA Max • O |
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