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RC4200 Ver la hoja de datos (PDF) - Fairchild Semiconductor

Número de pieza
componentes Descripción
Fabricante
RC4200
Fairchild
Fairchild Semiconductor Fairchild
RC4200 Datasheet PDF : 23 Pages
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RC4200
PRODUCT SPECIFICATION
Electrical Characteristics (continued)
(Over operating temperature range, VS = -15V unless otherwise noted)
4200A
4200
Parameters
Test Conditlons
Min. Typ. Max. Min. Typ. Max. Units
Frequency Response,
-3dB point
Supply Voltage
4.0
4.0
MHz
-18 -15 -9.0 -18 -15 -9.0 V
Supply Current
I1 = I2 = I4 = 150 µA
TA = +25°C
4.0
4.0 mA
Notes:
1. Refer to Figure 6 for example.
2. The input circuits tend to become unstable at I1, I2, I4 < 50 µA and linearity decreases when I1, I2, I4 > 250 µA
(eq. @ I1 = I2 = 500 µA, nonlinearity error 0.5%).
3. These specifications apply with output (I3) connected to an op amp summing junction. If desired, the output (I3) at pin (4) can
be used to drive a resistive load directly. The resistive load should be less than 700and must be pulled up to a positive
supply such that the voltage on pin (4) stays within a range of 0 to +5V.
Applications Discussion
Current Multiplier/ Divider
The basic design criteria for all circuit configurations using
the RC4200 multiplier is contained in equation (1), that is,
I3
=
I---1--I---2-
I4
The current-product-balance equation restates this as:
I1I2 = I3I4 (6)
R1
VX
8
R4
5
+
I1
+
I4
+VZ
I1 =
VX
R1
7
I4 =
VZ
R4
RC4200
VY
R2
1
+
I2
I2 =
VY
R2
2
3
4
I3
6
Ammeter
A
VS
65-4200-02
Figure 1. Current Multiplier/Divider
Dynamic Range and Stability
The precision dynamic range for the RC4200 is from +50
µA
to +250 µA inputs for I1, I2 and I4. Stability and accuracy
degrade if this range is exceeded.
To improve the stability for input currents less than 50 µA,
filter circuits (RSCS) are added to each input (see Figure 2).
R1
VX
RS
CS
R2
VY
RS
CS
RS = 10k Ohms
CS = 0.005 µF
8
5
I1
I4
7
RC4200
1
I2
2
3
4
I3
6
VS
R4
+VZ
RS
CS
RO
VO
+VS
A1
+
VS
65-4200-03
Figure 2. Current Multiplier/Divider with Filters
Amplifier A1 is used to convert the I3 current to an output
voltage.
Multiplier: Vz = constant 0
Divider: Vy = constant 0
4
REV. 1.2.1 6/14/01

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