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MAT02FH 数据表(PDF) 8 Page - Analog Devices |
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MAT02FH 数据表(HTML) 8 Page - Analog Devices |
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8 / 12 page ![]() MAT02 –8– REV. C by various offsetting techniques. Protective diodes across each base-to-emitter junction would normally be needed, but these diodes are built into the MAT02. External protection diodes are therefore not needed. For the circuit shown in Figure 19, the operational amplifiers make I1 = VX/R1, I2 = VY/R2, I3 = VZ/R3, and IO = VO/RO. The output voltage for this one-quadrant, log-antilog multiplier/di- vider is ideally: VO = R3RO R1R2 V XVY V Z (VX, VY, VZ > 0) (4) If all the resistors (RO, R1, R2, R3) are made equal, then VO = VXVY/VZ. Resistor values of 50 kΩ to 100 kΩ are recommended assuming an input range of 0.1 V to +10 V. ERROR ANALYSIS The base-to-emitter voltage of the MAT02 in its forward active operation is: VBE = kT q In IC IS + rBEIC, VCB ~ 0 (5) The first term comes from the idealized intrinsic transistor equation previously discussed (see equation (1)). With the oscilloscope ac coupled, the temperature dependent term becomes a dc offset and the trace represents the deviation from true log conformity. The bulk resistance can be calculated from the voltage deviation ∆V O and the change in collector cur- rent (9 mA): rBE = ∆V O 9 mA × 1 100 (3) This procedure finds rBE for Side A. Switching R1 and R2 will provide the rBE for Side B. Differential rBE is found by making R1 = R2. APPLICATIONS: NONLINEAR FUNCTIONS MULTIPLIER/DIVIDER CIRCUIT The excellent log conformity of the MAT02 over a very wide range of collector current makes it ideal for use in log-antilog circuits. Such nonlinear functions as multiplying, dividing, squaring, and square-rooting are accurately and easily imple- mented with a log-antilog circuit using two MAT02 pairs (see Figure 19). The transistor circuit accepts three input currents (I1, I2, and I3) and provides an output current IO according to IO = I1I2/I3. All four currents must be positive in the log-antilog circuit, but negative input voltages can be easily accommodated Figure 19. One-Quadrant Multiplier/Divider |
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