CD74HC4049 Series
6-ch, 2V to 6V inverters
Manufacturer: Texas Instruments
Link to Manufacturer Page: https://www.ti.com/
Catalog
6-ch, 2V to 6V inverters
Part | Number of Bits per Element | Logic Type | Voltage - Supply [Min] | Voltage - Supply [Max] | Supplier Device Package | Output Type | Mounting Type | Number of Elements | Operating Temperature [Min] | Operating Temperature [Max] | Current - Output High, Low | Package / Case | Package / Case | Package / Case [x] | Package / Case [x] |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Texas Instruments CD74HC4049M | 1 | Buffer, Inverting | 2 V | 6 V | 16-SOIC | Push-Pull | Surface Mount | 6 | -55 °C | 125 °C | 5.2 mA, 5.2 mA | 16-SOIC | 0.154 in, 3.9 mm Width | ||
Texas Instruments CD74HC4049PW | 1 | Buffer, Inverting | 2 V | 6 V | 16-TSSOP | Push-Pull | Surface Mount | 6 | -55 °C | 125 °C | 5.2 mA, 5.2 mA | 16-TSSOP | 0.173 " | 4.4 mm | |
Texas Instruments CD74HC4049NS | 1 | Buffer, Inverting | 2 V | 6 V | 16-SO | Push-Pull | Surface Mount | 6 | -55 °C | 125 °C | 5.2 mA, 5.2 mA | 16-SOIC (0.209", 5.30mm Width) | |||
Texas Instruments CD74HC4049PWR | 1 | Buffer, Inverting | 2 V | 6 V | 16-TSSOP | Push-Pull | Surface Mount | 6 | -55 °C | 125 °C | 5.2 mA, 5.2 mA | 16-TSSOP | 0.173 " | 4.4 mm | |
Texas Instruments CD74HC4049M96 | 1 | Buffer, Inverting | 2 V | 6 V | 16-SOIC | Push-Pull | Surface Mount | 6 | -55 °C | 125 °C | 5.2 mA, 5.2 mA | 16-SOIC | 0.154 in, 3.9 mm Width | ||
Texas Instruments CD74HC4049MT | 1 | Buffer, Inverting | 2 V | 6 V | 16-SOIC | Push-Pull | Surface Mount | 6 | -55 °C | 125 °C | 5.2 mA, 5.2 mA | 16-SOIC | 0.154 in, 3.9 mm Width | ||
Texas Instruments CD74HC4049E | 1 | Buffer, Inverting | 2 V | 6 V | 16-PDIP | Push-Pull | Through Hole | 6 | -55 °C | 125 °C | 5.2 mA, 5.2 mA | 16-DIP | 0.3 in, 7.62 mm |
Key Features
• Typical Propagation Delay: 6ns at VCC= 5V, CL= 15pF, TA= 25°CHigh-to-Low Voltage Level Converter for up to VI= 16VFanout (Over Temperature Range)Standard Outputs . . . . . . . . . . . . . . . 10 LSTTL LoadsBus Driver Outputs . . . . . . . . . . . . . 15 LSTTL LoadsWide Operating Temperature Range . . . –55°C to 125°CBalanced Propagation Delay and Transition TimesSignificant Power Reduction Compared to LSTTL Logic ICsHC Types2V to 6V OperationHigh Noise Immunity: NIL= 30%, NIH= 30% of VCCat VCC= 5VTypical Propagation Delay: 6ns at VCC= 5V, CL= 15pF, TA= 25°CHigh-to-Low Voltage Level Converter for up to VI= 16VFanout (Over Temperature Range)Standard Outputs . . . . . . . . . . . . . . . 10 LSTTL LoadsBus Driver Outputs . . . . . . . . . . . . . 15 LSTTL LoadsWide Operating Temperature Range . . . –55°C to 125°CBalanced Propagation Delay and Transition TimesSignificant Power Reduction Compared to LSTTL Logic ICsHC Types2V to 6V OperationHigh Noise Immunity: NIL= 30%, NIH= 30% of VCCat VCC= 5V
Description
AI
The ’HC4049 and ’HC4050 are fabricated with high-speed silicon gate technology. They have a modified input protection structure that enables these parts to be used as logic level translators which convert high-level logic to a low-level logic while operating off the low-level logic supply. For example, 15-V input pulse levels can be down-converted to 0-V to 5-V logic levels. The modified input protection structure protects the input from negative electrostatic discharge. These parts also can be used as simple buffers or inverters without level translation. The ’HC4049 and ’HC4050 are enhanced versions of equivalent CMOS types.
The ’HC4049 and ’HC4050 are fabricated with high-speed silicon gate technology. They have a modified input protection structure that enables these parts to be used as logic level translators which convert high-level logic to a low-level logic while operating off the low-level logic supply. For example, 15-V input pulse levels can be down-converted to 0-V to 5-V logic levels. The modified input protection structure protects the input from negative electrostatic discharge. These parts also can be used as simple buffers or inverters without level translation. The ’HC4049 and ’HC4050 are enhanced versions of equivalent CMOS types.