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DAC7512E/250 |DAC7512E250TIN/a963avaiLow-Power Rail-To-Rail Output 12-Bit Serial Input DAC
DAC7512E/250G4 |DAC7512E250G4TEAXN/a825avaiLow-Power Rail-To-Rail Output 12-Bit Serial Input DAC 8-VSSOP -40 to 105
DAC7512E/2K5 |DAC7512E2K5BBN/a5263avaiLow-Power Rail-To-Rail Output 12-Bit Serial Input DAC
DAC7512N/250 |DAC7512N250TI ?N/a8avaiLow-Power Rail-To-Rail Output 12-Bit Serial Input DAC
DAC7512N/250G4 |DAC7512N250G4TI/BBN/a1565avaiLow-Power Rail-To-Rail Output 12-Bit Serial Input DAC 6-SOT-23 -40 to 105
DAC7512N/3K |DAC7512N3KBBN/a13888avaiLow-Power Rail-To-Rail Output 12-Bit Serial Input DAC
DAC7512N/3KG4 |DAC7512N3KG4TI/BBN/a3000avaiLow-Power Rail-To-Rail Output 12-Bit Serial Input DAC


DAC7512N/3K ,Low-Power Rail-To-Rail Output 12-Bit Serial Input DACMAXIMUM RATINGS ELECTROSTATICV to GND ...–0.3V to +6VDD DISCHARGE SENSITIVITYDigit ..
DAC7512N/3KG4 ,Low-Power Rail-To-Rail Output 12-Bit Serial Input DACFEATURES DESCRIPTION* microPOWER OPERATION: 135µA at 5V The DAC7512 is a low-power, single, 12-bit ..
DAC7513E/250 ,Low-Power Rail-To-Rail Output 12-Bit Serial Input DACFEATURESThe DAC7513 is a low-power, single, 12-bit buffered voltage* microPOWER OPERATION: 115µ A a ..
DAC7513E/250G4 ,Low-Power Rail-To-Rail Output 12-Bit Serial Input DACELECTRICAL CHARACTERISTICSV = +2.7V to +5.5V, R = 2kΩ to GND, and C = 200pF to GND, unless otherwis ..
DAC7513E/2K5 ,Low-Power Rail-To-Rail Output 12-Bit Serial Input DACELECTRICAL CHARACTERISTICSV = +2.7V to +5.5V, R = 2kΩ to GND, and C = 200pF to GND, unless otherwis ..
DAC7513E/2K5G4 ,Low-Power Rail-To-Rail Output 12-Bit Serial Input DAC 8-VSSOP -40 to 105MARKING ARTWORKTop View SOT23-8 MSOP-8D13NPin 1IdentifierLotTrace CodePin 1Bottom ViewModel CodePin ..
DLW5BSN102SQ2L , SMD/BLOCK Type EMI Suppression Filters
DLW5BSN102SQ2L , SMD/BLOCK Type EMI Suppression Filters
DLW5BSN191SQ2L , Common Mode Choke Coil Wire Wound Type for Large Current
DLW5BSN302SQ2L , SMD/BLOCK Type EMI Suppression Filters
DLW5BSN302SQ2L , SMD/BLOCK Type EMI Suppression Filters
DLW5BSN351SQ2L , SMD/BLOCK Type EMI Suppression Filters


DAC7512E/250-DAC7512E/250G4-DAC7512E/2K5-DAC7512N/250-DAC7512N/250G4-DAC7512N/3K-DAC7512N/3KG4
Low-Power Rail-To-Rail Output 12-Bit Serial Input DAC
APPLICA TIONS �PORTABLE BATTERY-POWERED
INSTRUMENTS
�DIGITAL GAIN AND OFFSET
ADJUSTMENT
�PROGRAMMABLE VOLTAGE AND
CURRENT SOURCES
Low-Power, Rail-to-Rail Output, 12-Bit Serial Input
DIGITAL-TO-ANALOG CONVERTER
DESCRIPTION

The DAC7512 is a low-power, single, 12-bit buffered voltage
output Digital-to-Analog Converter (DAC). Its on-chip preci-
sion output amplifier allows rail-to-rail output swing to be
achieved. The DAC7512 uses a versatile three-wire serial
interface that operates at clock rates up to 30MHz and is
compatible with standard SPI™ , QSPI™ , Microwire™ , and
DSP interfaces.
The reference for the DAC7512 is derived from the power
supply, resulting in the widest dynamic output range possible.
The DAC7512 incorporates a power-on reset circuit that
ensures that the DAC output powers up at 0V and remains
there until a valid write takes place in the device. The
DAC7512 contains a power-down feature, accessed over the
serial interface, that can reduce the current consumption of
the device to 50nA at 5V.
The low power consumption of this part in normal operation
makes it ideally suited to portable battery-operated equip-
ment. The power consumption is 0.7mW at 5V reducing to
1µW in power-down mode.
The DAC7512 is available in a SOT23-6 package and an
MSOP-8 package.
FEA TURES
microPOWER OPERATION: 135µA at 5V POWER-DOWN: 200nA at 5V, 50nA at 3V POWER SUPPLY: +2.7V to +5.5V TESTED MONOTONIC BY DESIGN POWER-ON RESET TO 0V THREE POWER-DOWN FUNCTIONS LOW POWER SERIAL INTERFACE WITH
SCHMITT-TRIGGERED INPUTS
ON-CHIP OUTPUT BUFFER AMPLIFIER,
RAIL-TO-RAIL OPERATION
SYNC INTERRUPT FACILITY SOT23-6 AND MSOP-8 PACKAGES
SPI and QSPI are registered trademarks of Motorola.
Microwire is a registered trademark of National Semiconductor.
DAC7512

SBAS156B – JULY 2002
Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of
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