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AM422 Datasheet(PDF) 5 Page - Analog Microelectronics GmbH |
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AM422 Datasheet(HTML) 5 Page - Analog Microelectronics GmbH |
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5 / 10 page ![]() VOLTAGE/CURRENT CONVERTER AM422 analog microelectronics April 99 5/10 has to be connected between the resistors R5 and RL. In this case the IC supply voltage VCC depends on the voltage VS and the load resistor RL and can be calculated: VV I R CC S OUT L =− ⋅ (1) Basically the IC AM422 is composed of 3 functional sections as they shown in Figure 1: 1. An operational amplifier input which allows the adjustment of the output current range with the two external resistors R1 and R2. With the variation of the resistors the input voltage range and the output current range can be set. 2. A voltage controlled current output, with a wide current range is adjustable with external resis- tors RSET, R3 and R4. The resistors fix the output offset current, which depends on the reference voltage and corresponds to a minimal output current. The output current IOUT is supplied by the external transistor T1, driven by the output of the IC pin 3 (OUT). 3. A programmable voltage reference (VSET = N.C. or VSET = GND) can be used as an excitation for constant voltage sensors or as supply for other external devices. The output current is based on two partial currents: an adjustable offset current and a current relying on the input signal VIN. The transfer function of the AM422 is then () ( ) ( ) IV V I V I V OUTSET IN SETSET IN IN , =+ (2) For the adjustment of the AM422 two cases have to be differentiated. For input voltage ranges without an offset voltage (0...5V, 0...10V) the adjustment of the output current range is as follows: The minimum output current has to be set with an input voltage VIN = 0V. The output offset current becomes () () IV R V VV R RR R RR R SET IN SET REF REF SET SET == ⋅ − =⋅ +− ++ 0 1 2 2 00 43 34 () (3) With R3 = R4 and simplifications the set resistor RSET is R RR I V SET SET REF ≈ 4 04 (4) The output current range has to be set with the transfer function of the IC and can be calculated by ∆II I V R R RR OUT OUTmax SET INmax =− = + 2 0 2 12 (5) The relationship of R1/R2 becomes () R R V RI I INmax OUTmax SET 1 2 0 2 1 = − − (6) The adjustment of the IC using an input offset voltage (for example 0.5...4.5V) can be described as follows. For a desired change of the output current of ∆IOUT ∆ ∆ I V R OUT PIN = 4 0 2 ⇒∆ ∆ VR I PIN OUT 40 2 = (7) |
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