MAX5312EAE-T Maxim Integrated, MAX5312EAE-T Datasheet
MAX5312EAE-T
Specifications of MAX5312EAE-T
Related parts for MAX5312EAE-T
MAX5312EAE-T Summary of contents
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... Power-On Reset Sets DAC Output to 0V ♦ Schmitt Trigger Inputs for Direct Optocoupler Interface ♦ Serial-Data Output Allows Daisy Chaining of Devices ♦ Small 16-Pin SSOP Ordering Information PART TEMP RANGE MAX5312EAE -40°C to +85°C Pin Configuration TOP VIEW SCLK 1 DIN 2 CS ...
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Serial, Voltage-Output DAC ABSOLUTE MAXIMUM RATINGS V to AGND..........................................................-0.3V to +17V AGND ..........................................................-17V to +0. ..........................................................................+34V DGND ...........................................................-0.3V to +6V CC AGND to DGND.....................................................-0.3V to +0.3V SGND ...
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Serial, Voltage-Output DAC ELECTRICAL CHARACTERISTICS (DUAL SUPPLY) (continued +15V ±5 -15V ±5 unless otherwise noted. Typical values are MIN MAX PARAMETER SYMBOL ...
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Serial, Voltage-Output DAC ELECTRICAL CHARACTERISTICS (SINGLE SUPPLY +15V ±5 0V +5V ±10%, AGND = DGND = SGND = 0V unless otherwise noted. ...
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Serial, Voltage-Output DAC ELECTRICAL CHARACTERISTICS (SINGLE SUPPLY) (continued +15V ±5 0V +5V ±10%, AGND = DGND = SGND = 0V unless otherwise ...
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Serial, Voltage-Output DAC TIMING CHARACTERISTICS (V = +15V -15V or 0V +2.7V to +5.5V, AGND = DGND = SGND = unless otherwise noted. Typical ...
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Serial, Voltage-Output DAC (V = +15V -15V for bipolar graphs output unloaded +25°C, all graphs apply to both unipolar and bipolar, unless otherwise noted.) A INTERGRAL NONLINEARITY vs. INPUT CODE 0.5 ...
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Serial, Voltage-Output DAC (V = +15V -15V for bipolar graphs output unloaded +25°C, all graphs apply to both unipolar and bipolar, unless otherwise noted.) A BIPOLAR MAJOR CARRY GLITCH C = ...
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Serial, Voltage-Output DAC (V = +15V -15V for bipolar graphs output unloaded +25°C, all graphs apply to both unipolar and bipolar, unless otherwise noted.) A BIPOLAR NEGATIVE SUPPLY CURRENT vs. SUPPLY ...
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Serial, Voltage-Output DAC (V = +15V -15V for bipolar graphs output unloaded +25°C, all graphs apply to both unipolar and bipolar, unless otherwise noted.) A BIPOLAR OUTPUT VOLTAGE vs. OUTPUT CURRENT ...
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Serial, Voltage-Output DAC (V = +15V -15V for bipolar graphs output unloaded +25°C, all graphs apply to both unipolar and bipolar, unless otherwise noted.) A BIPOLAR STARTUP RESPONSE, C LOAD 20V/div ...
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Serial, Voltage-Output DAC PIN NAME Serial-Clock Input. Data is shifted from DIN into the internal register on the rising edge of SCLK. Data is 1 SCLK clocked out at DOUT on the falling edge of SCLK. SCLK is ...
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Serial, Voltage-Output DAC Detailed Description The MAX5312 12-bit DAC operates from either single or dual supplies. Dual ±12V to ±15V power supplies pro- vide a bipolar ±5V to ±10V output unipolar 0 to 10V output. Single ...
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Serial, Voltage-Output DAC Data in the shift register is transferred to the input register during the appropriate software command only. Data in the input register is transferred to the DAC register in one of two ways: using the ...
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Serial, Voltage-Output DAC CS0 CSS SCLK DIN MSB t CSE DOUT LDAC Figure 3. Serial-Interface Timing Diagram REF AGND DAC REGISTER UNI/BIP ...
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Serial, Voltage-Output DAC External Reference and Transfer Connect an external 2V to 5.25V reference to REF (the MAX6350 is recommended). Set the output voltage range with the reference and the input code by using the equations below. Unipolar ...
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Serial, Voltage-Output DAC REF 1 LSB = 4096 4095 4094 4093 4092 2049 2048 2047 hex DIGITAL INPUT CODE (LSB) Figure 5. Unipolar Transfer Function Applications Information A single +12V to ...
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Serial, Voltage-Output DAC SCLK CS CS MAX5312 SCLK DIN DOUT DIN Figure 7. Daisy Chaining Devices Chip Information TRANSISTOR COUNT: 3280 TECHNOLOGY: BiCMOS 18 ______________________________________________________________________________________ CS CS MAX5312 MAX5312 SCLK SCLK DIN DOUT DIN TO OTHER SERIAL DEVICES ...
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... Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are implied. Maxim reserves the right to change the circuitry and specifications without notice at any time. Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 408-737-7600 ____________________ 19 © 2003 Maxim Integrated Products ...