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WM8141CFT/V датащи(PDF) 17 Page - Wolfson Microelectronics plc |
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WM8141CFT/V датащи(HTML) 17 Page - Wolfson Microelectronics plc |
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17 / 31 page ![]() Production Data WM8141 WOLFSON MICROELECTRONICS LTD PD Rev 3.0 October 2000 17 STB DNA RNW OP[11:4] Address Data Hi-Z Hi-Z Driven by WM8141 Driven Externally Normal Output Data Driven by WM8141 Normal Output Data Figure 14 Parallel Interface Register Write PARALLEL INTERFACE: REGISTER READ-BACK Figure 15 shows register read-back in parallel mode. Read-back is initiated by writing the 6-bit address (a5, 1, a3, a2, a1, a0) into OP[9:4] by pulsing the STB pin low. Note that a4 = 1 and pins RNW and DNA are low. When RNW and DNA are high and STB is strobed again, the contents (d7, d6, d5, d4, d3, d2, d1, d0) of the corresponding register (a5, 0, a3, a2, a1, a0) will be output on OP[11:4], LSB on pin OP[4]. Until STB is pulsed low, the current contents of the ADC (shown as Normal Output Data) will be present on OP[11:4]. Note that the register data becomes available on the output data pins so OEB should be held low when read-back data is expected. STB DNA RNW OP[11:4] Address Hi-Z Driven by WM8141 Driven Externally Hi-Z Normal Output Data Read Data Driven by WM8141 Normal Output Data Figure 15 Parallel Interface Register Read-back TIMING REQUIREMENTS To use this device a master clock (MCLK) of up to 12MHz and a per-pixel synchronisation clock (VSMP) of up to 6MHz are required. These clocks drive a timing control block, which produces internal signals to control the sampling of the video signal. MCLK to VSMP ratios and maximum sample rates for the various modes are shown in Table 5. PROGRAMMABLE VSMP DETECT CIRCUIT The VSMP input is used to determine the sampling point and frequency of the WM8141. Under normal operation a pulse of 1 MCLK period should be applied to VSMP at the desired sampling frequency (as shown in the mode timing diagrams) and the input sample will be taken on the first rising MCLK edge after VSMP has gone low. However, in certain applications such a signal may not be readily available. The programmable VSMP detect circuit in the WM8141 allows the sampling point to be derived from any signal of the correct frequency, such as a CCD shift register clock, when applied to the VSMP pin. When enabled, by setting the VSMPDET control bit, the circuit detects either a rising or falling edge (determined by POSNNEG control bit) on the VSMP input pin and generates an internal VSMP pulse. This pulse can optionally be delayed by a number of MCLK periods, specified by the VDEL[2:0] bits. Figure 16 shows the internal VSMP pulses that can be generated by this circuit for a typical clock input signal. The internal VSMP pulse is then applied to the timing control block in place of the normal VSMP pulse provided from the input pin. The sampling point then occurs on the first rising MCLK edge after this internal VSMP pulse, as shown in the mode timing diagrams. |
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