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SSM2163 датащи(PDF) 12 Page - Analog Devices |
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SSM2163 датащи(HTML) 12 Page - Analog Devices |
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12 / 16 page ![]() SSM2163 REV. 0 –12– VCC VDD AGND ACOM DGND VEE VSS SSM2163 TTL/CMOS LOGIC CIRCUITS +5V POWER SUPPLY +5V GND 10 µF 0.1 µF 0.1 µF 10 µF + + Figure 24. Use Separate Traces to Reduce Power Supply Noise Even if the system includes separate analog and digital power supplies, both the analog and digital power pins of the SSM2163 should be connected to the analog supply. While this connection will inject a small amount of digital noise into the analog ground, the effect is small due to the SSM2163’s low digital logic input currents and capacitances. If, on the other hand, the SSM2163’s digital supply pins are connected to a digital power supply, then noise from the digital supply will be coupled into the SSM2163 and degrade performance. APPLICATIONS An 8-Input, 2-Output Mixer A single-chip, 8-input, 2-output mixer using the SSM2163 is shown in Figure 25. With this circuit, any of the eight channels can be attenuated by 0 dB to –63 dB and mixed into the right, left, or both outputs under software control. 10µF 10µF 10µF 10µF 10µF 10µF 10µF 10µF + + + + + + + + 5 22 7 20 9 18 11 16 27 26 25 24 28 14 15 3 NC 4 10 +5V + 10µF 0.1µF LEFT CHANNEL OUTPUT RIGHT CHANNEL OUTPUT VIN1 VDD VCC VOUTL VOUTR DATA OUT SHIELD SHIELD SHIELD SHIELD SHIELD AGND ACOM DGND VSS VEE 212 1 6 8 19 21 23 17 13 10µF 0.1µF + VIN2 VIN3 VIN4 VIN5 VIN6 VIN7 VIN8 DATA IN CLK WRITE LD SYSMUTE SSM2163 INPUT 1 LEFT INPUT 2 LEFT INPUT 3 LEFT INPUT 4 LEFT INPUT 1 RIGHT INPUT 2 RIGHT INPUT 3 RIGHT INPUT 4 RIGHT DATA IN CLOCK CHIP SELECT SYSTEM MUTE Figure 25. An 8-Input, 2-Output Mixer This circuit demonstrates ac coupling of the inputs. As previously mentioned, this eliminates level shifting concerns from previous stages. The circuit of Figure 25 also demonstrates single +5 V supply operation. The output of the ACOM supply-splitter, Pin 13, provides the pseudo-ground reference which is required when operating from a single supply. ATTENUATOR MIXER SWITCH CHANNEL SELECT MIXER BUFFER AMP AGND MIXER SUMMING AMPLIFIER VOUT VIN VOUT VCC R1 R2 VEE R1=R2 ACOM 10µF 0.1µF VEE Σ Figure 23. Single-Supply Pseudo-Ground Reference (ACOM) Generator For single supply operation, the inputs can either be ac-coupled, as shown in Figure 25, or referenced to the pseudo-ground out- put. AC coupling eliminates dc offset and offset drift differentials between the input source and the SSM2163. In addition, ac coupling reduces the risk of “clicks” when switching between multiple dc-coupled inputs which have different reference levels. Since the input coupling capacitors are in series with the 10 k Ω input of the attenuator, the impedance of these capacitors will influence low frequency gain. The inexpensive 10 µF aluminum electrolytic capacitors shown will limit the gain error to 0.66 dB at 20 Hz. If the entire system is operating from a single supply, then typically the input voltage is already referenced to the midpoint of the supply. In this case, the SSM2163 can be referenced to the same midpoint reference source, as shown in Figure 22c. This connection will eliminate dc offset errors caused by having the input signal common and the SSM2163 analog common referenced to different voltages. DC offset errors can also be eliminated, of course, by using the ac coupling technique discussed above. Dual-Supply Operation The SSM2163 will also operate from dual supplies, ranging from ±4 V to ±7 V. (See Figure 22a.) In this case, input signals can be referenced to power supply ground. The ACOM output (Pin 13) is left open (no connection) for dual supply operation. Supply Decoupling Optimizing the performance of the SSM2163, or any low noise device, requires careful attention to power supply decoupling. Since the SSM2163 can operate from a single +5 V supply, it seems convenient to simply tap into the digital logic power supply. Unfortunately, the logic supply is often a switch-mode design, which generates noise in the 20 kHz to 1 MHz range. In addition, fast logic gates can generate glitches hundred of millivolts in amplitude due to wiring resistances and inductances. If a separate analog power supply is not available, the SSM2163 can be powered directly from the system power supply. Separate power and ground traces should be provided for the analog section, if possible. This arrangement, shown in Figure 24, will isolate the analog section from the logic switching transients. Even if a separate power supply trace is not available, however, generous supply bypassing will reduce supply line induced noise. Local supply bypassing, consisting of a 10 µF tantalum electrolytic in parallel with a 0.1 µF ceramic capacitor, is recommended in all applications. (See the SSM2163 Power Supply Connections figures.) |
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