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LT6558IGN 데이터시트(PDF) 9 Page - Linear Technology |
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LT6558IGN 데이터시트(HTML) 9 Page - Linear Technology |
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9 / 12 page ![]() LT6558 9 6558f V+ IN 2.5k 9.1k 6558 F01 I = VPIN16 RSET Figure 1. Simplified Programmable Input Bias Circuit Diagram no-signal amplifier input bias condition according to the following relationship: V Vk R BIAS IN PIN SET () •. = 16 91 where VPIN16 = 0.044V typical. For single 5V supply operation, a 158Ω programming resistor is generally optimal. In applications that demand maximum amplifier linearity, or if external biasing is preferred (in DC-coupled applications, for example), the internal biasing circuitry may be disabled by leaving Pin 16 open. With BCV (Pin 16) open, input loading is ap- proximately 450kΩ. Shutdown Control The LT6558 may be placed into a shutdown mode, where all three amplifier sections are deactivated and power sup- ply draw is reduced to approximately 10µA. When the EN pin is left open, an internal 40k pull-up resistor brings the pin to V+ and the part enters the shutdown mode. Pulling the pin more than approximately 1.5V below V+ will en- able the LT6558 (see Figure 2 for equivalent circuit). The pull-down current required to activate the part is typically 125µA. In most applications, the EN pin is simply con- nected to ground (for continuous operation) or driven directly by a CMOS-level logic gate (see Figure 3 for examples). Response time is typically 50ns for enabling, and 1µs for shutdown. In shutdown mode, the feedback resistors remain connected between the output pins and the individual ground (or V– connected) pins. V+ 40k BIAS CIRCUITRY EN 6558 F02 Figure 2. Simplified Shutdown Circuit Diagram LT6558 V+ V+ 2 (3a) Open Drain or Open Collector 1 EN DISABLE LT6558 2 6558 F03 (3b) CMOS Gate with Shared Supply 1 EN DISABLE Figure 3. Suitable Shutdown Pin Drive Circuits Programmable Input Bias The LT6558 contains circuitry that provides a user-pro- grammed bias voltage to the inputs of all three amplifier sections. The internal biasing feature is designed to mini- mize external component count in AC-coupled applica- tions, but may be defeated if external biasing is desired. Figure 1 shows the simplified equivalent circuit feeding the noninverting input of each amplifier. A programming resistor from Pin 16 to GND (Pin 2) establishes the nominal APPLICATIONS INFORMATION |
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