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AD5293 Datasheet(PDF) 22 Page - Analog Devices |
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AD5293 Datasheet(HTML) 22 Page - Analog Devices |
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22 / 24 page ![]() AD5293 Data Sheet Rev. E | Page 22 of 24 APPLICATIONS INFORMATION HIGH VOLTAGE DAC The AD5293 can be configured as a high voltage DAC, with an output voltage as high as 33 V. The circuit is shown in Figure 51. The output is + × × = 1 2 1 V 2 . 1 1024 ) ( R R D D VOUT (4) where D is the decimal code from 0 to 1023. AD5293 U2 AD8512 V+ V– AD8512 VOUT VDD U1B VDD RBIAS ADR512 D1 R2 R1 B 20kΩ U1A Figure 51. High Voltage DAC PROGRAMMABLE VOLTAGE SOURCE WITH BOOSTED OUTPUT For applications that require high current adjustments, such as a laser diode or tunable laser, a boosted voltage source can be considered (see Figure 52). W SIGNAL CC RBIAS LD VIN A B VOUT U1 AD5293 U3 2N7002 U2 IL OP184 Figure 52. Programmable Boosted Voltage Source In this circuit, the inverting input of the op amp forces VOUT to be equal to the wiper voltage set by the digital potentiometer. The load current is then delivered by the supply via the N-channel FET (U3). The N-channel FET power handling must be adequate to dissipate (VIN − VOUT) × IL power. This circuit can source a maximum of 100 mA with a 33 V supply. HIGH ACCURACY DAC It is possible to configure the AD5293 as a high accuracy DAC by optimizing the resolution of the device over a specific reduced voltage range. This is achieved by placing external resistors on either side of the RDAC, as shown in Figure 53. The improved ±1% resistor tolerance specification greatly reduces error associated with matching to discrete resistors. 3 1024 ) 1024 ( 1 1024 3 ) ( ) ( ) ( R R R V R R D V AB D DD AB D OUT + × + × × + = − (5) AD5293 U1 VOUT B R2 20kΩ R1 R3 ±1% OP1177 V+ V– VDD VDD U2 Figure 53. Optimizing Resolution VARIABLE GAIN INSTRUMENTATION AMPLIFIER The AD8221 in conjunction with the AD5293 and the ADG1207, as shown in Figure 54, make an excellent instrumentation amplifier for use in data acquisition systems. The data acquisition system is low distortion and low noise enable it to condition signals in front of a variety of ADCs. AD8221 AD5293 +VIN1 VDD VOUT VSS ADG1207 +VIN4 –VIN1 –VIN4 Figure 54. Data Acquisition System The gain can be calculated by using Equation 6, as follows: AB R D D G × + = ) 1024 ( kΩ 4 . 49 1 ) ( (6) |
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