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VRE202CA Datasheet(PDF) 3 Page - Cirrus Logic |
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VRE202CA Datasheet(HTML) 3 Page - Cirrus Logic |
3 / 4 page VRE202 VRE202DS 3 P r o d u c t I n n o v a t i o n F r o m Temperature oC VRE202C VOUT vs. TEMPERATURE QUIESCENT CURRENT VS. TEMP Temperature oC JUNCTION TEMP. RISE VS. OUTPUT CURRENT Output Current (mA) PSRR VS. FREQUENCY Frequency (Hz) 0.25 -0.25 Temperature oC VRE202CA VOUT vs. TEMPERATURE 0.2 -0.2 2. TYPICAL PERFORMANCE CURVES 3. THEORY OF OPERATION The following discussion refers to the block diagram in Figure 1. A FET current source is used to bias a 6.3 V zener diode. The zener voltage is divided by the resistor network R1 and R2. This voltage is then applied to the noninvert- ing input of the operational amplifier which amplifies the voltage to produce a 2.5 V output. The gain is determined by the resistor networks R3 and R4: G=1 + R4/R3. The 6.3 V zener diode is used because it is the most stable diode over time and temperature. The current source provides a closely regulated zener current, which determines the slope of the references’ volt- age vs. temperature function. By trimming the zener current a lower drift over temperature can be achieved. But since the voltage vs. temperature function is nonlinear this compensation technique is not well suited for wide tem- perature ranges. A nonlinear compensation network of thermistors and resistors is used in the VRE series voltage references. this proprietary network eliminates most of the nonlinearity in the voltage vs. temperature function. Then by adjusting the slope, a very stable voltage over wide temperature ranges is produced. This network is less than 2% of the overall network resistance so it has a negligible effect on long term stability. By using highly stable resistors in our network, a voltage reference is produced that also has very good long term stability. |
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