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LM613 数据表(PDF) 15 Page - National Semiconductor (TI) |
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LM613 数据表(HTML) 15 Page - National Semiconductor (TI) |
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15 / 22 page ![]() Typical Performance Distributions (Continued) Application Information VOLTAGE REFERENCE Reference Biasing The voltage reference is of a shunt regulator topology that models as a simple zener diode. With current I r flowing in the “forward” direction there is the familiar diode transfer func- tion. I r flowing in the reverse direction forces the reference voltage to be developed from cathode to anode. The cath- ode may swing from a diode drop below V − to the reference voltage or to the avalanche voltage of the parallel protection diode, nominally 7V. A 6.3V reference with V + = 3V is allowed. The reference equivalent circuit reveals how V r is held at the constant 1.2V by feedback, and how the FEEDBACK pin passes little current. To generate the required reverse current, typically a resistor is connected from a supply voltage higher than the reference voltage. Varying that voltage, and so varying I r, has small ef- fect with the equivalent series resistance of less than an ohm at the higher currents. Alternatively, an active current source, such as the LM134 series, may generate I r. Capacitors in parallel with the reference are allowed. See the Reference AC Stability Range typical curve for capacitance values — from 20 µA to 3 mA any capacitor value is stable. With the reference’s wide stability range with resistive and capacitive loads, a wide range of RC filter values will perform noise filtering. Adjustable Reference The FEEDBACK pin allows the reference output voltage, V ro, to vary from 1.24V to 6.3V. The reference attempts to hold V r at 1.24V. If Vr is above 1.24V, the reference will con- duct current from Cathode to Anode; FEEDBACK current al- ways remains low. If FEEDBACK is connected to Anode, then V ro = Vr = 1.24V. For higher voltages FEEDBACK is held at a constant voltage above Anode — say 3.76V for V ro = 5V. Connecting a resistor across the constant V r generates a current I=R1/V r flowing from Cathode into FEEDBACK node. A Thevenin equivalent 3.76V is generated from FEED- BACK to Anode with R2=3.76/I. Keep I greater than one thousand times larger than FEEDBACK bias current for <0.1% error — I ≥32 µA for the military grade over the military temperature range (I ≥5.5 µA for a 1% untrimmed error for a commercial part). Voltage Reference Broad-Band Noise Distribution DS009226-26 DS009226-29 FIGURE 1. Voltage Associated with Reference (current source I r is external) DS009226-30 FIGURE 2. Reference Equivalent Circuit DS009226-31 FIGURE 3. 1.2V Reference DS009226-32 FIGURE 4. Thevenin Equivalent of Reference with 5V Output www.national.com 15 |
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