• Part: KK7440
  • Description: Dual 4-Input Positive-NAND Buffers
  • Manufacturer: Kodenshi AUK Group
  • Size: 300.64 KB
Download KK7440 Datasheet PDF
Kodenshi AUK Group
KK7440
KK7440 is Dual 4-Input Positive-NAND Buffers manufactured by Kodenshi AUK Group.
TECHNICAL DATA .. Dual 4-Input Positive-NAND Buffers LOGIC DIAGRAM ORDERING INFORMATION KK7440N Plastic KK7440D SOIC TA = -10° to 70° C for all packages PIN ASSIGNMENT PIN 14 =VCC PIN 7 = GND - No internal connection FUNCTION TABLE Inputs A L X X X H B X L X X H C X X L X H D X X X L H Output Y H H H H L X =don’t care .. MAXIMUM RATINGS- Symbol VCC VIN IOL Tstg - Parameter Supply Voltage Input Voltage Low Level Output Current Storage Temperature Range Value 7.0 5.5 48 -65 to +150 Unit V V m A °C Maximum Ratings are those values beyond which damage to the device may occur. Functional operation should be restricted to the Remended Operating Conditions. REMENDED OPERATING CONDITIONS Symbol VCC VIH VIL IOH IOL TA Supply Voltage High Level Input Voltage Low Level Input Voltage High Level Output Current Low Level Output Current Ambient Temperature Range -10 Parameter Min 4.75 2.0 0.8 -1.2 48 +70 Max 5.25 Unit V V V m A m A °C DC ELECTRICAL CHARACTERISTICS over full operating conditions Guaranteed Limit Symbol VIK VOH VOL II IIH IIL IOS- ICC Parameter Input Clamp Voltage High Level Output Voltage Low Level Output Voltage Input Current at Maximum Input Voltage High Level Input Current Low Level Input Current Short-Circuit Output Current Supply Current VCC = max Outputs High Outputs Low . Test Conditions VCC = min, IIN = -10 m A VCC = min, IOH =max VCC = min, IOL=max VCC = max, VIN= 5.5 V VCC = max, VIN = 2.4 V VCC = max, VIN = 0.4 V -18 2.4 0.4 1 40 -1.6 -70 8 27 Min Max -1.5 Unit V V V m A µA m A m A m A - Not more than one output should be shorted at a time, and duration of the short-circuit should not exceed one second .. AC ELECTRICAL CHARACTERISTICS (T = 25°C, VCC = 5.0 V, CL = 15 p F, RL = 130 Ω, Input tr = tf = 10 ns) Symbol t PLH t PHL Parameter Propagation Delay Time, Low to High Level Output (from Input to Output) Propagation Delay Time, High to Low Level Output...