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LCZP Datasheet(PDF) 12 Page - Linear Technology |
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LCZP Datasheet(HTML) 12 Page - Linear Technology |
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12 / 20 page ![]() LTC2641/LTC2642 12 26412f Power-On Reset The LTC2641/LTC2642 include a power-on reset circuit to ensure that the DAC ouput comes up in a known state. When VDD is first applied, the power-on reset circuit sets the output of the LTC2641 to zero-scale (code 0). The LTC2642 powers up to midscale (bipolar zero). Depend- ing on the DAC number of bits, the midscale code is: OPERATION 32,768 (LTC2642-16); 8,192 (LTC2642-14); or 2,048 (LTC2642-12). Clearing the DAC A 10ns (minimum) low pulse on the ⎯C⎯L⎯R pin asynchro- nously clears the DAC latch to code zero (LTC2641) or to midscale (LTC2642). APPLICATIONS INFORMATION Unipolar Configuration Figure 2 shows a typical unipolar DAC application for the LTC2641. Tables 1a, 1b and 1c show the unipolar binary code tables for 16-bit, 14-bit and 12-bit operation. 16-BIT DAC 1/2 LTC6078 5V/3V 5V/3V VREF 2.5V VDD LTC2641-16 UNIPOLAR VOUT 0V TO 2.5V 4.7 μF 0.1 μF REF 1 6 8 VOUT GND 26412 F02 0.1 μF 0.1 μF 7 5 4 3 2 CS SCLK DIN CLR LT®1019CS8-2.5 GND OUT 5V IN The external amplifier provides a unity-gain buffer. The LTC2642 can also be used in unipolar configuration by tying RFB and INV to REF. This provides power-up and clear to midscale. Table 1b. 14-Bit Unipolar Binary Code Table (LTC2641-14) DIGITAL INPUT BINARY NUMBER IN DAC LATCH ANALOG OUTPUT (VOUT) MSB LSB 1111 1111 1111 11xx VREF (16,383/16,384) 1000 0000 0000 00xx VREF (8,192/16,384) = VREF/2 0000 0000 0000 01xx VREF (1/16,384) 0000 0000 0000 00xx 0V Figure 2. 16-Bit Unipolar Output (LTC2641-16) Unipolar VOUT = 0V to VREF Table 1a. 16-Bit Unipolar Binary Code Table (LTC2641-16) DIGITAL INPUT BINARY NUMBER IN DAC LATCH ANALOG OUTPUT (VOUT) MSB LSB 1111 1111 1111 1111 VREF (65,535/65,536) 1000 0000 0000 0000 VREF (32,768/65,536) = VREF/2 0000 0000 0000 0001 VREF (1/65,536) 0000 0000 0000 0000 0V Table 1c. 12-Bit Unipolar Binary Code Table (LTC2641-12) DIGITAL INPUT BINARY NUMBER IN DAC LATCH ANALOG OUTPUT (VOUT) MSB LSB 1111 1111 1111 xxxx VREF (4,095/4,096) 1000 0000 0000 xxxx VREF (2,048/4,096) = VREF/2 0000 0000 0001 xxxx VREF (1/4,096) 0000 0000 0000 xxxx 0V |
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