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DAC5687IPZP データシート(PDF) 49 Page - Texas Instruments |
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DAC5687IPZP データシート(HTML) 49 Page - Texas Instruments |
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49 / 72 page ![]() www.ti.com Input Clock Synchronization of Multiple DAC5687s CDC7005 # 1 Y0 Y0 Y0 Y0 Y1 Y1 Y1 Y1 Y2 Y2 Y2 Y2 Y3 Y3 Y3 Y3 CDC7005 # 2 Y0 Y0 Y0 Y0 Y1 Y1 Y1 Y1 Y2 Y2 Y2 Y2 Y3 Y3 Y3 Y3 DAC5687 # 1 CLK1 CLK1C CLK2 CLK2C DAC5687 # 2 CLK1 CLK1C CLK2 CLK2C DAC5687 # 3 CLK1 CLK1C CLK2 CLK2C DAC5687 # 4 CLK1 CLK1C CLK2 CLK2C Ref Ref f INPUT f INPUT f DAC f INPUT f DAC f INPUT f DAC f INPUT f DAC f INPUT f DAC f INPUT f DAC f INPUT f DAC f INPUT f DAC Reference Operation DAC5687 SLWS164B – FEBRUARY 2005 – REVISED JUNE 2005 Table 13. Initial State of CMIX After Reset (continued) Fix Mix Selection phstr_del(1:0) Initial State at PHSTR fS4 10 180 degree shift fS/4 11 270 degree shift For applications where multiple DAC5687 chips are used, clock synchronization is best achieved by using dual-clock mode with the FIFO disabled or the PLL-clock mode. In the dual-clock mode with FIFO disabled, an appropriate clock PLL such as the CDC7005 is required to provide the DAC and input rate clocks that meet the skew requirement t_align (see Figure 47). An example for synchronizing multiple DAC5687 devices in dual clock mode with two CDC7005 is shown in Figure 55. When using the internal PLL-clock mode, synchronization of multiple using PHSTR is completely deterministic due to the phase/frequency detector in the PLL feedback loop. All chips using the same CLK1/CLK1C input clock will have identical internal clocking phases. Figure 55. Block Diagram for Clock Synchronization of Multiple DAC5687 Devices in Dual-Clock Mode The DAC5687 comprises a bandgap reference and control amplifier for biasing the full-scale output current. The full-scale output current is set by applying an external resistor RBIAS to pin BIASJ. The bias current IBIAS through resistor RBIAS is defined by the on-chip bandgap reference voltage and control amplifier. The full-scale output current equals 16 times this bias current. The full-scale output current IOUTFS can thus be expressed as: IOUTFS = 16 × IBIAS = 16 × VEXTIO / RBIAS where VEXTIO is the voltage at terminal EXTIO. The bandgap reference voltage delivers an accurate voltage of 1.2 V. This reference is active when terminal EXTLO is connected to AGND. An external decoupling capacitor CEXT of 0.1 µF should be connected externally to terminal EXTIO for compensation. The bandgap reference can additionally be used for external reference operation. In that case, an external buffer with high impedance input should be applied in order to limit the bandgap load current to a maximum of 100 nA. The internal reference can be disabled and overridden by an external reference by connecting EXTLO to AVDD. Capacitor CEXT may hence be omitted. Terminal EXTIO thus serves as either input or output node. 49 |
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