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CAV424 Folha de dados(PDF) 7 Page - WOLFSPEED, INC.

Nome de Peças CAV424
Descrição Electrónicos  C/V-converter for single and differential capacitive input signals
PDF  14 Pages
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Fabricante Electrônico  WOLFSPEED [WOLFSPEED, INC.]
Página de início  https://www.wolfspeed.com/
Logo WOLFSPEED - WOLFSPEED, INC.

CAV424 Folha de dados(HTML) 7 Page - WOLFSPEED, INC.

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CAV424
C/V-converter for single and differential capacitive input signals
July 2014 – Rev. 3.0
Page 7/14
www.analogmicro.de
FUNCTIONAL DESCRIPTION
1. Oscillator
To generate a clock for the integrator blocks, the oscillator block charges and discharges the external oscilla-
tor capacitance COSC periodically with a constant current given by:
OSC
REF
OSC
R
V
I
=
(1)
where VREF is the reference voltage and ROSC is the oscillator current resistor.
The time dependent voltage at the oscillator capacitance is illustrated in Figure 3. COSC is charged with IOSC
beginning at the oscillator’s lower threshold VOSC,LOW until the upper threshold VOSC,HIGH is reached. Then the
current’s direction is reversed and COSC is discharged until the lower threshold is reached again.
This leads to a triangular voltage signal at COSC with the frequency fOSC:
OSC
OSC
OSC
OSC
OSC
OSC
C
R
C
V
I
f
=
=
2
.
4
5
.
2
2
(2)
with ∆VOSC = 2.1 V and VREF = 2.5 V (@ VCC = 5 V).
2. Measurement and Reference Integrators
The measurement and reference integrator blocks are the core part of the measurement path. At these
symmetrically built integrators the connected capacitances’ values are converted into a voltage signal. Both
integrators are driven by the oscillator block and charge and discharge the connected capacitances with
constant current.
As illustrated in Figure 4, for half a period the measurement capacitance CM is charged with ICM and the ref-
erence capacitance CR is charged with ICR, which are given by
CM
REF
CM
R
V
I
=
and
CR
REF
CR
R
V
I
=
(3)
where RCM and RCR are the measurement and reference integrator current resistors. The capacitances CM
and CR are charged to a maximum voltage of VCM and VCR respectively, which can be calculated as follows:
CLAMP
M
OSC
CM
CM
V
C
f
I
V
+
=
2
and
CLAMP
R
OSC
CR
CR
V
C
f
I
V
+
=
2
(4)
with VCLAMP = 1.2 V, which is the minimum integrator voltage.
Figure 3: Oscillator voltage signal over time



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