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WM8213SCDS/V 数据表(PDF) 21 Page - Wolfson Microelectronics plc |
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WM8213SCDS/V 数据表(HTML) 21 Page - Wolfson Microelectronics plc |
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21 / 38 page ![]() Production Data WM8213 w PD Rev 4.1 July 2008 21 CALCULATING THE OUTPUT CODE FOR A GIVEN INPUT The following equations describe the processing of the video and reset level signals through the WM8213. The values of V1, V2 and V3 are often calculated in reverse order during device setup. The PGA value is written first to set the input Voltage range, the Offset DAC is then adjusted to compensate for any Black/Reset level offsets and finally the RLC DAC value is set to position the reset level correctly during operation. Note: Refer to Applications Note WAN0123 for detailed information on device calibration procedures. INPUT SAMPLING BLOCK: INPUT SAMPLING AND REFERENCING If CDS = 1, (i.e. CDS operation) the previously sampled reset level, VRESET, is subtracted from the input video. V1 = VIN - VRESET Eqn. 1 If CDS = 0, (non-CDS operation) the simultaneously sampled voltage on pin VRLC is subtracted instead. V1 = VIN - VVRLC Eqn. 2 If VRLCDACPD = 1, VVRLC is an externally applied voltage on pin VRLC/VBIAS. If VRLCDACPD = 0, VVRLC is the output from the internal RLC DAC. VVRLC = (VRLCSTEP ∗ RLC DAC[3:0]) + VRLCBOT Eqn. 3 VRLCSTEP is the step size of the RLC DAC and VRLCBOT is the minimum output of the RLC DAC. OFFSET DAC BLOCK: OFFSET (BLACK-LEVEL) ADJUST The resultant signal V1 is added to the Offset DAC output. V2 = V1 + {260mV ∗ (DAC[7:0]-127.5) } / 127.5 Eqn. 4 PGA NODE: GAIN ADJUST The signal is then multiplied by the PGA gain. V3 = V2 ∗ (0.66 + PGA[8:0]x7.34/511) Eqn. 5 ADC BLOCK: ANALOGUE-DIGITAL CONVERSION The analogue signal is then converted to a 16-bit unsigned number, with input range configured by PGAFS[1:0]. D1[15:0] = INT{ (V3 /VFS) ∗ 65535} + 32767 PGAFS[1:0] = 00 or 01 Eqn. 6 D1[15:0] = INT{ (V3 /VFS) ∗ 65535} PGAFS[1:0] = 11 Eqn. 7 D1[15:0] = INT{ (V3 /VFS) ∗ 65535} + 65535 PGAFS[1:0] = 10 Eqn. 8 where the ADC full-scale range, VFS = 2V when LOWREFS=0 and VFS = 1.2V when LOWREFS=1. OUTPUT INVERT BLOCK: POLARITY ADJUST The polarity of the digital output may be inverted by control bit INVOP. D2[15:0] = D1[15:0] (INVOP = 0) Eqn. 9 D2[15:0] = 65535 – D1[15:0] (INVOP = 1) Eqn. 10 |
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