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HS7541AJS Scheda tecnica(PDF) 6 Page - Sipex Corporation |
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HS7541AJS Scheda tecnica(HTML) 6 Page - Sipex Corporation |
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6 / 7 page ![]() HS7541A 12-Bit CMOS Multiplying DAC © Copyright 2000 Sipex Corporation 6 minal, may be anywhere between 10k Ω (the feedback resistor alone when all digital inputs are LOW) and 7.5k Ω (the feedback resistor in parallel with approximately 30k Ω of the R-2R ladder network resistance when any single bit is HIGH). Static accuracy and dynamic perfor- mance will be affected by these variations. UNIPOLAR OPERATION Figure 4 shows the connections to implement digital unipolar operation of the HS7541A. The reference voltage applied to V REF (pin17) may be positive or negative. The 2K Ω potentiometer tied to V REF, and the 1KΩ resistor in the feed- back loop are both optional; they are needed only when gain error must be trimmed to less than 0.3% FSR. They should track each other to better than 0.1%. It is not necessary that they track the resistors internal to the HS7541A. Figure 5. Bipolar Operation VREF (–10V) D11 (MSB) D0 (LSB) INPUT DATA 2K Ω GAIN TRIM 1K Ω VOUT – + RFB IO1 IO2 GND VREF VDD +15V 4 15 3 2 1 18 16 17 HS7541A – + 10K Ω 10K Ω 10K Ω 390 Ω 500 Ω As shown in the figure, the output current of the HS7541A is typically connected to an external op amp, with its non-inverting input tied to ground. The amplifier should be selected for low input bias current and low drift over tem- perature. To maintain the specified linearity, the amplifier’s input offset voltage should be mulled to less than ±200µV (0.1 LSB). BIPOLAR OPERATION Figure 5 shows the connections for bipolar operation of the HS7541A. The digital input coding is offset binary as shown in Table 2. As is the case for unipolar operation, the gain trim resistors can be omitted if minimum gain error is not required. The op amp selection criteria and offset nulling are the same as for unipolar operation. DIGITAL INPUT I 0UT 1111 1111 1111 -0.99975 x V REF 1000 0000 0000 -0.50000 x V REF 0111 1111 1111 -0.49975 x V REF 0000 0000 0000 0V Table 1. Unipolar Input Coding DIGITAL INPUT I 0UT 1111 1111 1111 -0.99951 x V REF 1000 0000 0001 -0.00049 x V REF 1000 0000 0000 0V 0100 0000 0000 +0.50000 x V REF 0000 0000 0000 +1.00000 x V REF Table 2. Bipolar Input Coding |
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