NSN 5962-01-390-6609

Part Details | DIGITAL MICROCIRCUIT

5962-01-390-6609 A microcircuit specifically designed to generate, modify, or process electrical signals which operate with two distinct or binary states. These states are commonly referred to as on and off, true and false, high and low, or "1" and "0".

Alternate Parts: 59628875701EX, 5962-8875701EX, 59628875701EC, 5962-8875701EC, 59628875701EB, 5962-8875701EB, 59628875701EA, 5962-8875701EA, 596288757, 5962-88757, CD54HCT4046AF3A, CD54HCT4046AF/3A, CD54HCT4046AF3A, CD54HCT4046AF/3A, 5962-01-390-6609, 01-390-6609, 5962013906609, 013906609

Supply Group (FSG) NSN Assigned NIIN Item Name Code (INC)
59MAY 24, 199401-390-660931779 ( MICROCIRCUIT, DIGITAL )
REFERENCE DRAWINGS & PICTURES
Cross Reference | NSN 5962-01-390-6609
Part Number Cage Code Manufacturer
5962-8875701EX67268DLA LAND AND MARITIMEDBA ENGINEERING AND TECHNICAL
5962-8875701EC67268DLA LAND AND MARITIMEDBA ENGINEERING AND TECHNICAL
5962-8875701EB67268DLA LAND AND MARITIMEDBA ENGINEERING AND TECHNICAL
5962-8875701EA67268DLA LAND AND MARITIMEDBA ENGINEERING AND TECHNICAL
5962-8875767268DLA LAND AND MARITIMEDBA ENGINEERING AND TECHNICAL
CD54HCT4046AF/3A1MY79INTERSIL COMMUNICATIONS INC.
CD54HCT4046AF/3A34371INTERSIL CORPORATIONDIV NA
Technical Data | NSN 5962-01-390-6609
Characteristic Specifications
OUTPUT LOGIC FORM COMPLEMENTARY-METAL OXIDE-SEMICONDUCTOR LOGIC
DESIGN FUNCTION AND QUANTITY1 PHASE LOCKED LOOP
VOLTAGE RATING AND TYPE PER CHARACTERISTICACV0.5 VOLTS MINIMUM AND ACV7.0 VOLTS MAXIMUM
CURRENT RATING PER CHARACTERISTICBACGA25.00 MILLIAMPERES NOMINAL
TIME RATING PER CHACTERISTICNSBABC0.00 NANOSECONDS AND NSCABC500.00 NANOSECONDS
OPERATING TEMP RANGE-55.0 TO +125.0 DEG CELSIUS
TERMINAL TYPE AND QUANTITY16 PRINTED CIRCUIT
TERMINAL SURFACE TREATMENT SOLDER
INCLOSURE CONFIGURATION DUAL-IN-LINE
INCLOSURE MATERIAL CERAMIC
BODY LENGTH0.840 INCHES MAXIMUM
BODY HEIGHT0.200 INCHES MAXIMUM
BODY WIDTH0.310 INCHES MAXIMUM
MAXIMUM POWER DISSIPATION RATING500.0 MILLIWATTS
STORAGE TEMP RANGE-65.0 TO +150.0 DEG CELSIUS