ADI AD652JP

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AD652JP

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Description:
Monolithic Synchronous Voltage-to-Frequency Converter

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The AD652JP is Monolithic Synchronous Voltage-to-Frequency Converter , it is part of series. they are designed to work as ADI chip.AD652JP with pin details manufactured by . The AD652JP is available in Package,it is part of the electronic component Chips.that includes Series. they are designed to operate as ADI chip.it is with Operating Temperature .AD652JP with original stock manufactured by . The AD652JP is available in Package.Generally IC chips offer Mounting Style features such as SMD/SMT, Package Case of AD652JPis designed to work in , it's Operating Temperature is .The AD652JP is available in Package, is part of the ADI chip and belong to RF Semiconductors.AD652JP with EDA / CAD Models manufactured by . The AD652JP is available in Package, is part of the RF Semiconductors.The AD652JP is ADI chip with package manufactured by . The AD652JP is available in Package, is part of the Monolithic Synchronous Voltage-to-Frequency Converter.
AD652JP More Descriptions
Voltage to Frequency & Frequency to Voltage IC SYNC V/F CONVERTR
IC V-F CONV SYNCH MONO 5V 20PLCC
French Electronic Distributor since 1988
VFC Sync 2MHz 20-Pin PLCC Tube
The AD652 Synchronous Voltage-to-Frequency Converter (SVFC) is a powerful building block for precision analog-to-digital conversion, offering typical nonlinearity of 0.002% (0.005% maximum) at a 100 kHz output frequency. The inherent monotonicity of the transfer function and wide range of clock frequencies allows the conversion time and resolution to be optimized for specific applications. The AD652 uses a variation of the popular charge-balancing technique to perform the conversion function. The AD652 uses an external clock to define the full-scale output frequency, rather than relying on the stability of an external capacitor. The result is a more stable, more linear transfer function, with significant application benefits in both single and multichannel systems. Gain drift is minimized using a precision low drift reference and low TC on-chip thin-film scaling resistors. Furthermore, the initial gain error is reduced to less than 0.5% by the use of laser-wafer-trimming. The analog and digital sections of the AD652 have been designed to allow operation from a single-ended power source, simplifying its use with isolated power supplies. The AD652 is available in five performance grades. The 20-pin PLCC packaged JP and KP grades are specified for operation over the 0°C to 70°C commercial temperature range. The 16- pin cerdip-packaged AQ and BQ grades are specified for operation over the -40°C to 85°C industrial temperature range, and the AD652SQ is available for operation over the full -55°C to 125°C extended temperature range.
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