• Part: MC10H162
  • Description: Binary to 1-8 Decoder(High)
  • Manufacturer: onsemi
  • Size: 189.95 KB
Download MC10H162 Datasheet PDF
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MC10H162
MC10H162 is Binary to 1-8 Decoder(High) manufactured by onsemi.
Description The MC10H162 provides parallel decoding of a three bit binary word to one of eight lines. The MC10H162 is useful in high- speed multiplexer/ demultiplexer applications. The MC10H162 is designed to decode a three bit input word to one of eight output lines. The MC10H162 output will be high when selected while all other output are low. The enable inputs, when either or both are high, force all outputs low. The MC10H162 is a true parallel decoder. This eliminates unequal parallel path delay times found in other decoder designs. These devices are ideally suited for multiplexer/demultiplexer applications. Features http://onsemi. MARKING DIAGRAMS- 16 MC10H162L AWLYYWW CDIP- 16 L SUFFIX CASE 620A 1 - Propagation Delay, 1.0 ns Typical - Power Dissipation, 315 m W Typical (same as MECL 10K™) - Improved Noise Margin 150 m V (Over Operating Voltage and - - - Temperature Range) Voltage pensated MECL 10K patible Pb- Free Packages are Available- 16 MC10H162P AWLYYWWG 1 1 PDIP- 16 P SUFFIX CASE 648 10H162 ALYWG SOEIAJ- 16 CASE 966 1 20 20 1 PLLC- 20 FN SUFFIX CASE 775 A WL, L YY, Y WW, W G 10H162G AWLYYWW = Assembly Location = Wafer Lot = Year = Work Week = Pb- Free Package - For additional marking information, refer to Application Note AND8002/D. - For additional information on our Pb- Free strategy and soldering details, please download the ON Semiconductor Soldering and Mounting Techniques Reference Manual, SOLDERRM/D. ORDERING INFORMATION See detailed ordering and shipping information in the package dimensions section on page 4 of this data sheet. © Semiconductor ponents Industries, LLC, 2006 February, 2006 - Rev. 7 Publication Order Number: MC10H162/D LOGIC DIAGRAM E0 2 E1 15 VCC1 = Pin 1 VCC2 = Pin 16 VEE = Pin 8 A 7 TRUTH TABLE 6 Q0 5 Q1 4 Q2 3 Q3 13 Q4 B 9 12 Q5 11 Q6 C 14 10 Q7 E0 L L L L L L L L H X INPUTS E1 L L L L L L L L X H C L L L L H H H H X X B L L H H L L H H X X A L H L H L H L H X X Q0 H L L L L L L L L L Q1 L H L L L L L L L L...