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CD4010CMFAIRCHILDN/a2500avaiHex Buffers (Non-Inverting)
CD4010CMFN/a8avaiHex Buffers (Non-Inverting)
CD4010CNFAIN/a902avaiHex Buffers (Non-Inverting)


CD4010CM ,Hex Buffers (Non-Inverting)Electrical CharacteristicsTest Conditions LimitsSymbol Characteristics (Volts) −40°C +25°C +85°CUni ..
CD4010CM ,Hex Buffers (Non-Inverting)FeaturesThe CD4010C hex buffers are monolithic complementary

CD4010CM-CD4010CN
Hex Buffers (Non-Inverting)
CD4010C Hex Buffers (Non-Inverting) October 1987 Revised June 2000 CD4010C Hex Buffers (Non-Inverting) General Description Features The CD4010C hex buffers are monolithic complementaryWide supply voltage range: 3.0V to 15V MOS (CMOS) integrated circuits. The N- and P-channelLow power: 100 nW (typ.) enhancement mode transistors provide a symmetrical cir- High noise immunity: 0.45 V (typ.) DD cuit with output swings essentially equal to the supply volt- High current sinking: 8 mA (min.) at V = 0.5V age. This results in high noise immunity over a wide supply O voltage range. No DC power other than that caused by capability: and V = 10V DD leakage current is consumed during static conditions. All inputs are protected against static discharge. These gates Applications may be used as hex buffers, CMOS to DTL or TTL inter- face or as CMOS current drivers. Conversion ranges are • Automotive from 3V to 15V providing V ≤ V . The devices also CC DDData terminals have buffered outputs which improve transfer characteris- Instrumentation tics by providing very high gain. Medical electronics Alarm system Industrial controls Remote metering Computers Ordering Code: Order Number Package Number Package Description CD4010CM M16A 16-Lead Small Outline Integrated Circuit (SOIC), JEDEC MS-012, 0.150” Narrow CD4010CN N16E 16-Lead Plastic Dual-In-Line Package (PDIP), JEDEC MS-001, 0.300” Wide Devices also available in Tape and Reel. Specify by appending the suffix letter “X” to the ordering code. Connection Diagram Schematic Diagram Pin Assignments for DIP and SOIC Hex COS/MOS to DTL or TTL converter (inverting). Connect V to DTL or TTL supply. CC Connect V to COS/MOS supply. DD Top View © 2000 DS005945
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