Analog Devices Inc. AD7548KNZ
- Part Number:
- AD7548KNZ
- Manufacturer:
- Analog Devices Inc.
- Ventron No:
- 3025015-AD7548KNZ
- Description:
- IC DAC 12BIT MONO LC2MOS 20-DIP
- Datasheet:
- AD7548KNZ
Analog Devices Inc. AD7548KNZ technical specifications, attributes, parameters and parts with similar specifications to Analog Devices Inc. AD7548KNZ.
- Factory Lead Time8 Weeks
- Lifecycle StatusPRODUCTION (Last Updated: 3 months ago)
- Contact PlatingTin
- MountThrough Hole
- Mounting TypeThrough Hole
- Package / Case20-DIP (0.300, 7.62mm)
- Number of Pins20
- Operating Temperature0°C~70°C
- PackagingTube
- JESD-609 Codee3
- Pbfree Codeno
- Part StatusActive
- Moisture Sensitivity Level (MSL)1 (Unlimited)
- Number of Terminations20
- ECCN CodeEAR99
- SubcategoryOther Converters
- Max Power Dissipation450mW
- TechnologyCMOS
- Terminal PositionDUAL
- Number of Functions1
- Supply Voltage5V
- Terminal Pitch2.54mm
- Base Part NumberAD7548
- Pin Count20
- Output TypeCurrent - Unbuffered
- Operating Supply Voltage15V
- PolarityBipolar, Unipolar
- Max Supply Voltage15.75V
- Min Supply Voltage4.75V
- Power Dissipation10mW
- Number of Bits12
- Supply Current-Max3mA
- Max Output Voltage20V
- Min Input Voltage-10V
- ArchitectureR-2R
- Max Input Voltage10V
- Converter TypeD/A CONVERTER
- Reference TypeExternal
- Data InterfaceParallel
- Differential OutputNo
- Resolution1.5 B
- Voltage - Supply, Analog5V 11.4V~15.75V
- Min Output Voltage0V
- Voltage - Supply, Digital5V 11.4V~15.75V
- Settling Time1.5μs (Typ)
- Integral Nonlinearity (INL)0.5 LSB
- Input Bit CodeOFFSET BINARY
- Number of Converters1
- INL/DNL (LSB)±0.5 (Max), ±0.5 (Max)
- Height5.33mm
- Length26.9mm
- Width7.11mm
- REACH SVHCNo SVHC
- RoHS StatusROHS3 Compliant
- Lead FreeContains Lead
AD7548KNZ Overview
The product features a Through Hole mount and comes in a 20-DIP (0.300, 7.62mm) package. It is packaged in a tube for easy handling and storage. The JESD-609 Code is e3, indicating compliance with industry standards. The Moisture Sensitivity Level (MSL) is 1, which means it has an unlimited shelf life. The product has 20 terminations and utilizes CMOS technology. It operates at a supply voltage of 15V and has a maximum supply current of 3mA. The data interface is parallel, allowing for efficient data transfer.
AD7548KNZ Features
20-DIP (0.300, 7.62mm) package
20 pin count
20 pins
Minimal input voltage of -10V
AD7548KNZ Applications
There are a lot of Analog Devices Inc. AD7548KNZ Digital to Analog Converters (DAC)?applications.
Waveform Reconstruction
Mobile Communications
Instrumentation:
Audio Amplifier
Gain and offset adjustment
Low Power Systems
Industrial Process Control
Digital Radio Link
Synthesizers and Keyboards
General Purpose Trimming Adjustments
The product features a Through Hole mount and comes in a 20-DIP (0.300, 7.62mm) package. It is packaged in a tube for easy handling and storage. The JESD-609 Code is e3, indicating compliance with industry standards. The Moisture Sensitivity Level (MSL) is 1, which means it has an unlimited shelf life. The product has 20 terminations and utilizes CMOS technology. It operates at a supply voltage of 15V and has a maximum supply current of 3mA. The data interface is parallel, allowing for efficient data transfer.
AD7548KNZ Features
20-DIP (0.300, 7.62mm) package
20 pin count
20 pins
Minimal input voltage of -10V
AD7548KNZ Applications
There are a lot of Analog Devices Inc. AD7548KNZ Digital to Analog Converters (DAC)?applications.
Waveform Reconstruction
Mobile Communications
Instrumentation:
Audio Amplifier
Gain and offset adjustment
Low Power Systems
Industrial Process Control
Digital Radio Link
Synthesizers and Keyboards
General Purpose Trimming Adjustments
AD7548KNZ More Descriptions
Digital to Analog Converters - DAC 12-Bit Multiplying IOUT
DAC 1-CH R-2R/Current Steering 12-bit 20-Pin PDIP N Tube
D/A Converter, 1 Func, Parallel, Word Input Loading, 1.5us Settling Time, PDIP20
12BIT DAC, I OUT 8BIT BUS, PDIP20; Resolution, Bits:12bit; Time, Settling:1.5µs; No. of DACs:1; Interface Type:Parallel, CMOS / TTL; Output Type:Current; Voltage, Supply Min:4.75V; Voltage, Supply Max:15.75V; Termination Type:Through Hole; Case Style:PDIP; No. of Pins:20; Operating Temperature Range:-40°C to 85°C; Base Number:7548; Linearity Error, ADC/DAC :0.5LSB; No. of Bits:12; Time, Conversion:1.5µs
The AD7548 is a 12-monolithic CMOS D/A converter for use with 8-bit bus microprocessors. Data is loaded in two bytes to input holding registers as shown in the block diagram opposite. The AD7548 can be configured to accept either left- or right-justified data, least significant byte or most significant byte first, using standard TTL compatible control inputs. A separate load DAC control input allows the user the choice of updating the analog output coincident with loading new data to the DAC input register or at any time after the data loading event. This feature is especially important in multi-DAC systems where simultaneous update of all DACs is required.
DAC 1-CH R-2R/Current Steering 12-bit 20-Pin PDIP N Tube
D/A Converter, 1 Func, Parallel, Word Input Loading, 1.5us Settling Time, PDIP20
12BIT DAC, I OUT 8BIT BUS, PDIP20; Resolution, Bits:12bit; Time, Settling:1.5µs; No. of DACs:1; Interface Type:Parallel, CMOS / TTL; Output Type:Current; Voltage, Supply Min:4.75V; Voltage, Supply Max:15.75V; Termination Type:Through Hole; Case Style:PDIP; No. of Pins:20; Operating Temperature Range:-40°C to 85°C; Base Number:7548; Linearity Error, ADC/DAC :0.5LSB; No. of Bits:12; Time, Conversion:1.5µs
The AD7548 is a 12-monolithic CMOS D/A converter for use with 8-bit bus microprocessors. Data is loaded in two bytes to input holding registers as shown in the block diagram opposite. The AD7548 can be configured to accept either left- or right-justified data, least significant byte or most significant byte first, using standard TTL compatible control inputs. A separate load DAC control input allows the user the choice of updating the analog output coincident with loading new data to the DAC input register or at any time after the data loading event. This feature is especially important in multi-DAC systems where simultaneous update of all DACs is required.
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