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Part Number: SN74HCS00
The Logic Industry’s Smallest Leaded Package; SOT-23-THIN (DYY)
Many companies still rely solely on optical verification methods to ensure their components have been successfully soldered and are unwilling or not yet able…
Part Number: SN74HCS00 Other Parts Discussed in Thread: SN74LVC74A , SN74LVC1G74 I noticed all 74HCS gates and some other functions all have a Cpd of 10pF in your datasheets.
Now in other families like 74HC or 74LVC , their Cpd's vary a lot depending on…
Part Number: SN74HCS00-Q1 Other Parts Discussed in Thread: SN74HCS72-Q1 , Hi, TI experts!
Datasheets for SN74HCS00-Q1 and SN74HCS72-Q1 provide input high and low thresholds variations but only for 25 degrees.
Could you help me to estimate minimum high and…
Part Number: SN74HCS00-Q1 Hello Logic team,
What exactly is the difference between two Logic Families SN74HC S00 & SN74HC 132 ?
From datasheets, both parts look similar except minor differences in electrical parameters (like Supply current, ESD Rating…
Part Number: SN74HCS00 Other Parts Discussed in Thread: SN74HCS86 ,
I see that there is a SPICE behavioral model for the SN74HCS86. This has been very useful in TINA/P-SPICE simulation.
Would it be possible to get a similar model for the SN74HCS00 NAND…
Part Number: SN74HCS00-Q1 Hello Team, following question from customer:
- Ínput switching thresholds:
Vcc = 2.5V but our datasheet only shows data for 2V, 4.5V and 6V.
Spec for 2V is VT+min 0.7V (means 35%VCC) and VT+max 1.5V (means 75%VCC)
…
Part Number: SN74HCS00 Hi,
Is it possible to use this part with 3.3V logic input at VCC=5V?
According to Vt+ spec in datasheet, it has been specified as Vt+(max)=3.15v for VCC=4.5V & Vt+(max)=4.2v for VCC=6V and
There is no spec at VCC=5V.
Regards…
Hi Hans,
This device has a recommended supply voltage of up to 3.6V. Operating at a higher voltage is possible but will reduce reliability as all the datasheet specs are tested with a voltage supply up to 3.6V. I would recommend using the SN74HCS00-Q…