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LTC1093CSW 数据表(PDF) 20 Page - Linear Technology |
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LTC1093CSW 数据表(HTML) 20 Page - Linear Technology |
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20 / 32 page ![]() 20 LTC1091/LTC1092 LTC1093/LTC1094 S APPLICATI I FOR ATIO Figure 3. Several LTC1094s Sharing One 3-Wire Serial Interface 8 CHANNELS 8 CHANNELS 8 CHANNELS 3 3 3 3 3-WIRE SERIAL INTERFACE TO OTHER PERIPHERALS OR LTC1094s 2 10 OUTPUT PORT SERIAL DATA MPU LTC1091-4 F03 LTC1094 CS LTC1094 CS LTC1094 CS Sharing the Serial Interface The LTC1094 can share the same 2- or 3-wire serial interface with other peripheral components or other LTC1094s (see Figure 3). In this case, the CS signals decide which LTC1094 is being addressed by the MPU. ANALOG CONSIDERATIONS 1. Grounding The LTC1091/LTC1092/LTC1093/LTC1094 should be used with an analog ground plane and single point grounding techniques. The AGND pin (GND on the LTC1091/LTC1092) should be tied directly to this ground plane. The DGND pin of the LTC1093/LTC1094 can also be tied directly to this ground plane because minimal digital noise is generated within the chip itself. The VCC pin should be bypassed to the ground plane with a 4.7 µF tantalum with leads as short as possible. AVCC and DVCC should be tied together on the LTC1094. The V– pin (LTC1093/LTC1094) should be bypassed with a 0.1 µF ceramic disk. For single supply applications, V – can be tied to the ground plane. It is also recommended that the REF – pin and the COM pin be tied directly to the ground plane. All analog inputs should be referenced directly to the single point ground. Digital inputs and outputs should be shielded from and/or routed away from the reference and analog circuitry. Figure 4. Example Ground Plane for the LTC1091 Figure 4 shows an example of an ideal LTC1091 ground plane design for a 2-sided board. Of course, this much ground plane will not always be possible, but users should strive to get as close to this ideal as possible. 2. Bypassing For good performance, VCC must be free of noise and ripple. Any changes in the VCC voltage with respect to analog ground during a conversion cycle can induce errors or noise in the output code. Because the VCC (VREF) pin of the LTC1091 defines the voltage span of the A/D converter, its bypassing is especially important. VCC noise and ripple can be kept below 1mV by bypassing the VCC pin directly to the analog ground plane with a 4.7 µF tantalum with leads as short as possible. AVCC and DVCC should be tied together on the LTC1094. Figures 5 and 6 show the effects of good and poor VCC bypassing. 1 2 3 4 S S 8 7 6 5 4.7 µF TANTALUM VCC LTC1091-4 F04 |
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