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LV573

System Logic Semiconductor
Part Number LV573
Manufacturer System Logic Semiconductor
Description OCTAL D-TYPE TRANSPARENT LATCH (3-State)
Published Mar 30, 2005
Detailed Description SL74LV573 OCTAL D-TYPE TRANSPARENT LATCH (3-State) By pinning SL74LV573 are compatible with SL74HC573 and SL74HCT573 ser...
Datasheet PDF File LV573 PDF File

LV573
LV573


Overview
SL74LV573 OCTAL D-TYPE TRANSPARENT LATCH (3-State) By pinning SL74LV573 are compatible with SL74HC573 and SL74HCT573 series.
Input voltage levels are compatible with stadard CMOS levels.
• Output voltage levels are compatible with input levels of CMOS, NMOS and TTL ICS • Voltage supply range from 1.
2 to 5.
5 V • LOW input current: 1.
0 µÀ; 0.
1 µÀ at Ò = 25 °Ñ • Output current 8 mÀ • Latch current: not less than150 mÀ at Ò = 125 °Ñ • ESD acceptable value: not less than 2000 V as per HBM and not less than 200 V as per MM ORDERING INFORMATION SL74LV573N Plastic DIP SL74LV573D SOIC TA = -40° to 125° C for all packages FUNCTION TABLE Inputs OE L L L H LE H H L X D H L X X Outputs Q H L no change Z PIN ASSIGNMENT OE D0 D1 D2 D3 D4 D5 1 2 3 4 5 6 7 8 9 10 20 19 18 17 16 15 14 13 12 11 VCC Q0 Q1 Q2 Q3 Q4 Q5 Q6 Q7 LE H -HIGH voltage level L - LOW voltage level X - don’t care Z - High impedance state D6 D7 GND SLS System Logic Semiconductor SL74LV573 ABSOLUTE MAXIMUM RATINGS Symbol Vcc Iik, Iok Io Icc IGND Tstg PD Parameter Supply voltage Input diode current Output diode current Output current bus drivers DC Vcc or GND current for types bus driver outputs GND current Storage temperature range Power dissipation per package: DIP SO Rating -0.
5 to +7.
0 ±20 ±50 ±35 ±70 ±50 -65 to +150 750 500 Unit V mA mA mA mA mÀ î Conditions VI<-0.
5 V or VI>Vcc>+0.
5 V V0<-0.
5 V or VI>Vcc>+0.
5 V -0.
5 V5 V Ñ mW Notes: Power dissipation value decreases for: DIP - 12 mW °C the range from 70 to 125°Ñ SO - 8 mW °C the range from 70 to 125°Ñ RECOMMENDED OPERATING CONDITIONS Symbol Vcc VI Vî T tr,tf Parameter Supply voltage Input voltage Output voltage Operating temperature range Input rise and fall times Min 1.
0 0 0 -40 Max 5.
5 Vcc Vcc +125 500 200 100 50 Unit V V V o Conditions C Vcc= 1.
0 Vcc= 2.
0 Vcc= 2.
7 Vcc= 3.
6 ÷ 2.
0 V ÷ 2.
7 V ÷ 3.
6 V ÷ 5.
5 V ns/V Note - The IC function down to Vññ = 1.
0 V (input levels - VIL=0 V, VIH=Vcc); DC characterisics are guaranteed at Vcc=1.
2 ÷ 5...



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