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ADAV400KSTZ 数据表(PDF) 21 Page - Analog Devices |
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ADAV400KSTZ 数据表(HTML) 21 Page - Analog Devices |
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21 / 36 page ![]() ADAV400 Rev. 0 | Page 21 of 36 Table 14. Target/Slew RAM Ramp Type Settings Settings Ramp Type 00 Linear 01 Constant dB 10 RC 11 Constant time The following sections detail how the control port writes to the target/slew RAM to control the time constant and ramp type parameters. Ramp Types [1:3]—Linear, Constant dB, RC (34-Bit Write) The target word for the first three ramp types is broken into three parts. The 34-bit command is written with six leading 0s to extend the data write to five bytes. The parts of the target RAM write are • Ramp type (2 bits). • Time constant (4 bits). 0000 = fastest 1111 = slowest • Data (28 bits): 5.23 format. Ramp Type 4—Constant Time (34-Bit Write) The target word for the constant time ramp type is written in five parts, with the 34-bit command written with six leading 0s to extend the data write to five bytes. The parts of the constant time target RAM write are • Ramp type (2 bits). • Update step (1 bit). Set to 1 when a new target is loaded to trigger a step value update. The value is automatically reset after the step value is updated. • Number of steps (3 bits). The number of steps needed to slew to the target value is set by these three bits, with the number of steps equal to 23-bit setting + 6. 000 = 64 001 = 128 010 = 256 011 = 512 100 = 1024 101 = 2048 110 = 4096 111 = 8196 • Data (16 bits): 2.14 format. • Reserved (12 bits). When writing to the RAM, set all of these bits to 0. Target/Slew RAM Initialization On reset, the target/slew RAM initializes to preset values. The target RAM initializes to a linear ramp type with a time constant of 5 and the data set to 1.0. The slew RAM initializes to a value of 1.0. These defaults result in a full-scale (1.0 to 0.0) ramp time of 21.3 ms. Linear Update A linear update is the addition or subtraction of a constant value, referred to as a step. The equation to describe this step size is () 20 10 13 5 2 2 − × = CONST t Step The result of the equation is normalized to a 5.23 data format. This produces a time constant range from 6.75 ms to 213.4 ms. (–60 dB relative to 0 dB full scale). An example of this kind of update is shown in Figure 23 and Figure 24. All slew RAM figure examples, except the half-scale constant time ramp plot (Figure 29), show an increasing or decreasing ramp between –80 dB and 0 dB (full scale). All figures except the constant time plots (Figure 28 and Figure 29) use a time constant of 0x7 (0x0 being the fastest and 0xF being the slowest). TIME (ms) 1.0 0.4 0.6 0.8 0.2 0 –0.4 –0.2 –1.0 –0.8 –0.6 35 25 15 5 20 10 030 Figure 23. Slew RAM—Linear Update Increasing Ramp –1.0 –0.8 –0.6 –0.4 –0.2 0 0.2 0.4 0.6 0.8 1.0 35 25 15 5 TIME (ms) 20 10 030 Figure 24. Slew RAM—Linear Update Decreasing Ramp |
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