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MC10319MOTON/a10avaiHigh Speed8-Bit Analog-to-Digital Converter
MC10319DWMOTN/a1avaiHigh Speed8-Bit Analog-to-Digital Converter


MC10319 ,High Speed8-Bit Analog-to-Digital ConverterOrder this document from Analog Marketing** ** * The MC10319 is an 8–bit high speed parallel flash ..
MC10319DW ,High Speed8-Bit Analog-to-Digital ConverterMAXIMUM RATINGSRating Symbol Value UnitSupply Voltage V + 7.0 VdcCC(A),(D)V – 7.0EEPositive Supply ..
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MC33887PNB ,5.0 A H-Bridge with Load Current FeedbackBlock Diagram 33887 MOTOROLA ANALOG INTEGRATED CIRCUIT DEVICE DATA2 For More Information On This ..
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MC10319-MC10319DW
High Speed8-Bit Analog-to-Digital Converter
ORDERING INFORMATION
Order this document from Analog Marketing
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The MC10319 is an 8–bit high speed parallel flash A/D converter. The
device employs an internal Grey Code structure to eliminate large output
errors on fast slewing input signals. It is fully TTL compatible, requiring a 5.0 V supply and a wide tolerance negative supply of – 3.0 to – 6.0 V.
Three–state TTL outputs allow direct drive of a data bus or common I/O
memory.
The MC10319 contains 256 parallel comparators across a precision input
reference network. The comparator outputs are fed to latches and then to an
encoder network, to produce an 8–bit data byte plus an overrange bit. The
data is latched and converted to 3–state LS–TTL outputs. The overrange bit
is always active to allow for either sensing of the overrange condition or ease
of interconnecting a pair of devices to produce a 9–bit A/D converter.
Applications include video display and radar processing, high speed
instrumentation and TV broadcast encoding. Internal Grey Code for Speed and Accuracy, Binary Outputs 8–Bit Resolution/9–Bit Typical Accuracy Easily Interconnected for 9–Bit Conversion 3–State LS–TTL Outputs with True/Complement Enable Inputs 25 MHz Sampling Rate Wide Input Range: 1.0 to 2.0 Vpp, between ± 2.0 V Low Input Capacitance: 50 pF Low Power Dissipation: 618 mW No Sample/Hold Required for Video Bandwidth Signals Single Clock Cycle Conversion
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