hcpl-7800a-300 ETC-unknow, hcpl-7800a-300 Datasheet - Page 14

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hcpl-7800a-300

Manufacturer Part Number
hcpl-7800a-300
Description
High Isolation Amplifiers
Manufacturer
ETC-unknow
Datasheet

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Figure 26. Recommended Application Circuit.
Figure 27. Dependence of Safety-
Limiting Parameters on Ambient
Temperature.
Applications Information
Functional Description
Figure 28 shows the primary
functional blocks of the HCPL-
7800. In operation, the sigma-
delta analog-to-digital converter
converts the analog input signal
into a high-speed serial bit
stream, the time average of which
is directly proportional to the
input signal. This high speed
stream of digital data is encoded
and optically transmitted to the
detector circuit. The detected
400
300
200
100
MOTOR
0
0
20
T
+
R
40
A
SENSE
– TEMPERATURE – °C
OUTPUT POWER, P
INPUT POWER, P
60
-
HV+
HV-
80
100
120
IN
C1
0.1 µF
GATE DRIVE
FLOATING
POSITIVE
SUPPLY
140
CIRCUIT
S
78L05
U1
S
160
39
175
R5
180
OUT
C2
0.1 µF
signal is decoded and converted
into accurate analog voltage
levels, which are then filtered to
produce the final output signal.
To help maintain device accuracy
over time and temperature,
internal amplifiers are chopper-
stabilized. Additionally, the
encoder circuit eliminates the
effects of pulse-width distortion of
the optically transmitted data by
generating one pulse for every
edge (both rising and falling) of
C3
0.01 µF
1
2
3
4
HCPL-7800
U2
8
7
6
5
+5 V
C4
0.1 µF
75 pF
2.00 K
2.00 K
C6
R2
R1
the converter data to be
transmitted, essentially converting
the widths of the sigma-delta
output pulses into the positions
of the encoder output pulses. A
significant benefit of this coding
scheme is that any non-ideal
characteristics of the LED (such
as non-linearity and drift over
time and temperature) have little,
if any, effect on the performance
of the HCPL-7800.
R4
10.0 K
10.0 K
+
-
75 pF
+15 V
U3
-15 V
C5
R3
MC34081
C8
0.1 µF
C7
0.1 µF
V
OUT
1-229

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