Home Data Acquisition - Digital to Analog Converters (DAC)AD767SD/883B Datasheets | Data Acquisition - Digital to Analog Converters (DAC) IC DAC 12BIT 24CERDIP
QPL or Military Specs are for reference only. Parts are not for military use. See Terms and Conditions.
Base Part Number:
AD767
Alternative Models
Analog Devices
5962-8776301LX
priceUSD 110.900
Max Supply Voltage16.5 V
Min Supply Voltage10.8 V
Number of DAC Channels2
Polarity-
Integral Nonlinearity (INL)1 LSB
InterfaceParallel
Settling Time1.5 µs
Number of Bits-
Number of Pins24
Case/PackageCDIP
Authorized Distributors1
Analog Devices
AD7538BQ
priceUSD 25.660
Max Supply Voltage15.75 V
Min Supply Voltage11.4 V
Number of DAC Channels1
Polarity-
Integral Nonlinearity (INL)1 LSB
InterfaceParallel
Settling Time1.5 µs
Number of Bits14
Number of Pins24
Case/PackageCDIP
Authorized Distributors1
Analog Devices
AD767AD
priceUSD 34.610
Max Supply Voltage16.5 V
Min Supply Voltage11.4 V
Number of DAC Channels1
PolarityBipolar, Unipolar
Integral Nonlinearity (INL)1 LSB
InterfaceParallel
Settling Time2 µs
Number of Bits12
Number of Pins24
Case/PackageCDIP
Authorized Distributors4
Descriptions
DAC 1-CH Current Steering 12-bit 24-Pin SBCDIP Tube:Chip One Stop Global Microprocessor-Compatible 12-Bit D/A Converter:UTSource The AD767 is a complete voltage output 12-bit digital-to-analog converter including high stability buried Zener reference and input latch on a single chip. The converter uses 12 precision high-speed biopolar current steering switches and a laser-trimmed thin-film resistor network to provide high accuracy. Microprocessor compatibility is achieved by the on-chip latch. The design of the input latch allows direct interface to 12-bit buses. The latch responds to strobe pulses as short as 40 ns, allowing use with the fastest available microprocessors. The functional completeness and high performance of the AD767 result from a combination of advanced switch design, high-speed biopolar manufacturing process, and the proven laser wafer-trimming (LWT) technology. The subsurface (buried) Zener diode on the chip provides a low-noise voltage reference which has long-term stability and temperature drift characteristics comparable to the best discrete reference diodes. The laser trimming process which provides the excellent linearity is also used to trim the absolute value of the redference as well as its temperature coefficient. The AD767 is thus well suited for wide temperature range performance with ±½ LSB maximum linearity error and guaranteed monotonicity over the full temperature range. Typical full-scale gain is 5 ppm/ºC.:Analog Devices
FEATURES
Converting digital signals to analog signals such as audio or video? This AD767SD/883B DAC converter provided from Analog Devices will do just that! This device's digital interface is parallel. This device is based on Current Steering architecture. It has a voltage output. This DAC has a resolution of 12bit. Its typical dual supply voltage is ±12|±15 V, with a minimum of ±11.4 V and maximum of ±16.5 V. This DAC has a temperature range of -55 °C to 125 °C. This device comes in tube packaging. This device uses dual power supplies.
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QPL or Military Specs are for reference only. Parts are not for military use. See Terms and Conditions.
Base Part Number:
AD767
DAC 1-CH Current Steering 12-bit 24-Pin SBCDIP Tube:Chip One Stop Global Microprocessor-Compatible 12-Bit D/A Converter:UTSource The AD767 is a complete voltage output 12-bit digital-to-analog converter including high stability buried Zener reference and input latch on a single chip. The converter uses 12 precision high-speed biopolar current steering switches and a laser-trimmed thin-film resistor network to provide high accuracy. Microprocessor compatibility is achieved by the on-chip latch. The design of the input latch allows direct interface to 12-bit buses. The latch responds to strobe pulses as short as 40 ns, allowing use with the fastest available microprocessors. The functional completeness and high performance of the AD767 result from a combination of advanced switch design, high-speed biopolar manufacturing process, and the proven laser wafer-trimming (LWT) technology. The subsurface (buried) Zener diode on the chip provides a low-noise voltage reference which has long-term stability and temperature drift characteristics comparable to the best discrete reference diodes. The laser trimming process which provides the excellent linearity is also used to trim the absolute value of the redference as well as its temperature coefficient. The AD767 is thus well suited for wide temperature range performance with ±½ LSB maximum linearity error and guaranteed monotonicity over the full temperature range. Typical full-scale gain is 5 ppm/ºC.:Analog Devices
FEATURES
Converting digital signals to analog signals such as audio or video? This AD767SD/883B DAC converter provided from Analog Devices will do just that! This device's digital interface is parallel. This device is based on Current Steering architecture. It has a voltage output. This DAC has a resolution of 12bit. Its typical dual supply voltage is ±12|±15 V, with a minimum of ±11.4 V and maximum of ±16.5 V. This DAC has a temperature range of -55 °C to 125 °C. This device comes in tube packaging. This device uses dual power supplies.
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