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OPA992 датащи(PDF) 23 Page - Texas Instruments

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номер детали OPA992
подробное описание детали  OPAx992 40-V Rail-to-Rail Input/Output, Low Offset Voltage, Low Noise Op Amp
PDF  70 Pages
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производитель  TI [Texas Instruments]
домашняя страница  http://www.ti.com
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7.3.3 Thermal Protection
The internal power dissipation of any amplifier causes its internal (junction) temperature to rise. This
phenomenon is called self heating. The absolute maximum junction temperature of the OPAx992 is 150°C.
Exceeding this temperature causes damage to the device. The OPAx992 has a thermal protection feature that
reduces damage from self heating. The protection works by monitoring the temperature of the device and
turning off the op amp output drive for temperatures above 170°C. Figure 7-4 shows an application example
for the OPA2992 that has significant self heating because of its power dissipation (0.954 W). In this example,
both channels have a quiescent power dissipation while one of the channels has a significant load. Thermal
calculations indicate that for an ambient temperature of 55°C, the device junction temperature reaches 180°C.
The actual device, however, turns off the output drive to recover towards a safe junction temperature. Figure 7-4
shows how the circuit behaves during thermal protection. During normal operation, the device acts as a buffer so
the output is 3 V. When self heating causes the device junction temperature to increase above the internal limit,
the thermal protection forces the output to a high-impedance state and the output is pulled to ground through
resistor RL. If the condition that caused excessive power dissipation is not removed, the amplifier will oscillate
between a shutdown and enabled state until the output fault is corrected. Please note that thermal performance
can vary greatly depending on the package selected and the PCB layout design. This example uses the thermal
performance of the SOIC (8) package.
170ºC
3 V
0 V
30 V
RL
100
VIN
3 V
+
3 V
–
I
OUT = 30 mA
OPA2992
One channel has load
Consider IQ of two channels
TA = 55°C
PD = 0.954W
JA = 131°C/W
TJ = 131°C/W × 0.954W + 55°C
TJ = 180°C (expected)
+
–
Figure 7-4. Thermal Protection
7.3.4 Capacitive Load and Stability
The OPAx992 features an output stage capable of driving moderate capacitive loads, and by leveraging an
isolation resistor, the device can easily be configured to drive larger capacitive loads. Increasing the gain
enhances the ability of the amplifier to drive greater capacitive loads; see Figure 7-5 and Figure 7-6. The
particular op amp circuit configuration, layout, gain, and output loading are some of the factors to consider when
establishing whether an amplifier will be stable in operation.
Capacitive Load (pF)
0
80
160
240
320
400
480
560
0
10
20
30
40
50
60
70
D030
RISO = 0:, Overshoot (+)
RISO = 0:, Overshoot (-)
RISO = 50:, Overshoot (+)
RISO = 50:, Overshoot (-)
Figure 7-5. Small-Signal Overshoot vs Capacitive
Load (20-mVpp Output Step, G = +1)
Capacitive Load (pF)
0
80
160
240
320
400
480
560
0
10
20
30
40
50
60
70
D029
RISO = 0:, Overshoot (+)
RISO = 0:, Overshoot (-)
RISO = 50:, Overshoot (+)
RISO = 50:, Overshoot (-)
Figure 7-6. Small-Signal Overshoot vs Capacitive
Load (20-mVpp Output Step, G = -1)
www.ti.com
OPA992, OPA2992, OPA4992
SBOSA10D – JUNE 2021 – REVISED AUGUST 2022
Copyright © 2022 Texas Instruments Incorporated
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Product Folder Links: OPA992 OPA2992 OPA4992



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