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MC14099BMOTON/a19avai8-Bit Addressable Latches
MC14099BMOTOROLAN/a22avai8-Bit Addressable Latches


MC14099B ,8-Bit Addressable LatchesELECTRICAL CHARACTERISTICS (Voltages Referenced to V )SSÎÎÎÎÎÎ − 55CÎÎ 25CÎÎÎÎÎ 125CÎÎÎV VDDChar ..
MC14099B ,8-Bit Addressable LatchesMaximum ratings applied to the device are individual stress limit values (notnormal operating condi ..
MC14099BCL ,8-Bit Addressable LatchesMAXIMUM RATINGS* (Voltages Referenced to V )SSÎÎMC14099BCP PlasticMC14099BCL CeramicSymbol Paramete ..
MC14099BCL ,8-Bit Addressable LatchesMaximum Ratings are those values beyond which damage to the device may occur.ÎÎΆTemperature Derati ..
MC14099BCP ,8-Bit Addressable LatchesMAXIMUM RATINGS* (Voltages Referenced to V )SSÎÎMC14099BCP PlasticMC14099BCL CeramicSymbol Paramete ..
MC14106B ,Hex Schmitt Triggernoise immunity or to “square up” slowly changing waveforms.MARKING
MC68HC000CFN10 ,Microprocessor, sixteen 32-bit data and address registers, 16-Mbyte direct addressing range, memory-mapped input/output (I/O), 14 addressing modes, 10MHzfeatures:• MC68HC001/MC68EC000/MC68SEC000— Statically selectable 8- or 16-bit data bus• MC68HC000/M ..
MC68HC000CFN12 ,Microprocessor, sixteen 32-bit data and address registers, 16-Mbyte direct addressing range, memory-mapped input/output (I/O), 14 addressing modes, 12MHz Order this document by M68000UMAD/ADCommunications and AdvancedConsumer Technologi ..
MC68HC000CFN12 ,Microprocessor, sixteen 32-bit data and address registers, 16-Mbyte direct addressing range, memory-mapped input/output (I/O), 14 addressing modes, 12MHzfeatures:• MC68HC001/MC68EC000/MC68SEC000— Statically selectable 8- or 16-bit data bus• MC68HC000/M ..
MC68HC000CFN12 ,Microprocessor, sixteen 32-bit data and address registers, 16-Mbyte direct addressing range, memory-mapped input/output (I/O), 14 addressing modes, 12MHzfeatures:• MC68HC001/MC68EC000/MC68SEC000— Statically selectable 8- or 16-bit data bus• MC68HC000/M ..
MC68HC000CFN16 ,Microprocessor, sixteen 32-bit data and address registers, 16-Mbyte direct addressing range, memory-mapped input/output (I/O), 14 addressing modes, 16MHzfeatures:• MC68HC001/MC68EC000/MC68SEC000— Statically selectable 8- or 16-bit data bus• MC68HC000/M ..
MC68HC000CFN16 ,Microprocessor, sixteen 32-bit data and address registers, 16-Mbyte direct addressing range, memory-mapped input/output (I/O), 14 addressing modes, 16MHzfeatures: • Sixteen 32-Bit Data and Address Registers• 16-Mbyte Direct Addressing Range• Program Co ..


MC14099B
8-Bit Addressable Latches
MC14099B
8-Bit Addressable Latches
The MC14099B is an 8−bit addressable latch. Data is entered in
serial form when the appropriate latch is addressed (via address pins
A0, A1, A2) and write disable is in the low state. For the MC14099B
the input is a unidirectional write only port.
The data is presented in parallel at the output of the eight latches
independently of the state of Write Disable, Write/Read or Chip
Enable.
A Master Reset capability is available on both parts.
Features
Serial Data Input Parallel Output Master Reset Supply Voltage Range = 3.0 Vdc to 18 Vdc Capable of Driving Two Low−power TTL Loads or One Low−Power
Schottky TTL Load over the Rated Temperature Range MC14099B pin for pin compatible with CD4099B Pb−Free Packages are Available*
MAXIMUM RATINGS (Voltages Referenced to VSS)

Maximum ratings are those values beyond which device damage can occur.
Maximum ratings applied to the device are individual stress limit values (not
normal operating conditions) and are not valid simultaneously. If these limits are
exceeded, device functional operation is not implied, damage may occur and
reliability may be affected. Temperature Derating:
Plastic “P and D/DW” Packages: – 7.0 mW/�C From 65�C To 125�C
This device contains protection circuitry to guard against damage due to high
static voltages or electric fields. However, precautions must be taken to avoid
applications of any voltage higher than maximum rated voltages to this
high−impedance circuit. For proper operation, Vin and Vout should be constrained
to the range VSS � (Vin or Vout) � VDD.
Unused inputs must always be tied to an appropriate logic voltage level
(e.g., either VSS or VDD). Unused outputs must be left open.
*For additional information on our Pb−Free strategy and soldering details, please
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