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LTC2292 Folha de dados(PDF) 19 Page - Linear Technology |
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LTC2292 Folha de dados(HTML) 19 Page - Linear Technology |
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19 / 28 page ![]() LTC2293/LTC2292/LTC2291 19 229321f APPLICATIO S I FOR ATIO Reference Operation Figure 9 shows the LTC2293/LTC2292/LTC2291 refer- ence circuitry consisting of a 1.5V bandgap reference, a difference amplifier and switching and control circuit. The internal voltage reference can be configured for two pin selectable input ranges of 2V (±1V differential) or 1V (±0.5V differential). Tying the SENSE pin to VDD selects the 2V range; tying the SENSE pin to VCM selects the 1V range. The 1.5V bandgap reference serves two functions: its output provides a DC bias point for setting the common mode voltage of any external input circuitry; additionally, the reference is used with a difference amplifier to gener- ate the differential reference levels needed by the internal ADC circuitry. An external bypass capacitor is required for the 1.5V reference output, VCM. This provides a high frequency low impedance path to ground for internal and external circuitry. The difference amplifier generates the high and low refer- ence for the ADC. High speed switching circuits are connected to these outputs and they must be externally bypassed. Each output has two pins. The multiple output pins are needed to reduce package inductance. Bypass capacitors must be connected as shown in Figure 9. Each ADC channel has an independent reference with its own bypass capacitors. The two channels can be used with the same or different input ranges. Other voltage ranges between the pin selectable ranges can be programmed with two external resistors as shown in Figure 10. An external reference can be used by applying its output directly or through a resistor divider to SENSE. It is not recommended to drive the SENSE pin with a logic device. The SENSE pin should be tied to the appropriate level as close to the converter as possible. If the SENSE pin is driven externally, it should be bypassed to ground as close to the device as possible with a 1µF ceramic capacitor. For the best channel matching, connect an external reference to SENSEA and SENSEB. Figure 10. 1.5V Range ADC Figure 9. Equivalent Reference Circuit VCM REFH SENSE TIE TO VDD FOR 2V RANGE; TIE TO VCM FOR 1V RANGE; RANGE = 2 • VSENSE FOR 0.5V < VSENSE < 1V 1.5V REFL 2.2µF 2.2µF INTERNAL ADC HIGH REFERENCE BUFFER 0.1µF 229321 F09 4Ω DIFF AMP 1µF 1µF INTERNAL ADC LOW REFERENCE 1.5V BANDGAP REFERENCE 1V 0.5V RANGE DETECT AND CONTROL LTC2293/LTC2292/LTC2291 VCM SENSE 1.5V 0.75V 2.2µF 12k 1µF 12k 229321 F10 LTC2293 LTC2292 LTC2291 Input Range The input range can be set based on the application. The 2V input range will provide the best signal-to-noise perfor- mance while maintaining excellent SFDR. The 1V input range will have better SFDR performance, but the SNR will degrade by 3.8dB. See the Typical Performance Charac- teristics section. Driving the Clock Input The CLK inputs can be driven directly with a CMOS or TTL level signal. A sinusoidal clock can also be used along with a low jitter squaring circuit before the CLK pin (Figure 11). |
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