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TSB712 Folha de dados(PDF) 22 Page - STMicroelectronics

Nome de Peças TSB712
Descrição Electrónicos  Precision rail-to-rail input / output 36 V, 22 MHz op-amps
PDF  34 Pages
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Fabricante Electrônico  STMICROELECTRONICS [STMicroelectronics]
Página de início  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

TSB712 Folha de dados(HTML) 22 Page - STMicroelectronics

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5.8
Unused channel
When one of the two channels of the TSB7192 and TSB7192A is not used, it must be properly connected in order
to avoid internal oscillations that can negatively impact the signal integrity on the other channel, as well as the
current consumption. Two different configurations can be used:
Gain configuration: the channel can be set in gain at which the stability is guaranteed (+10/-9 or more). The
input can be set to any voltage within the Vicm operating range.
Comparator configuration: the channel can be set to a comparator configuration (without negative feedback).
In this case, positive and negative inputs can be set to any value provided that these values are significantly
different (100 mV or more, to avoid oscillations between positive and negative state) and the differential
input is lower than the maximum specified in the operating range (maximum 2 V), or the input current is
limited to less than 10 mA to avoid damaging the circuit.
5.9
Maximum power dissipation
The usable output load current drive is limited by the maximum power dissipation allowed by the device package.
The absolute maximum junction temperature for the TSB7191, TSB7191A, TSB7192 and TSB7192A is 150 °C.
The junction temperature can be estimated as follows:
TJ=PD×Rtℎ−ja+TA
(10)
TJ is the die junction temperature
PD is the power dissipated in the package
Rth-ja is the junction to ambient thermal resistance of the package
TA is the ambient temperature
The power dissipated in the package PD is the sum of the quiescent power dissipated and the power dissipated
by the output stage transistor. It is calculated as follows:
PD= VCC×ICC + VCC+−VOUT ×ILoad
(11)
when the op-amp sources the current
PD= VCC×ICC + VOUT−VCC− ×ILoad
(12)
when the op-amp is sinks the current.
Do not exceed the 150 °C maximum junction temperature for the device. Exceeding the junction temperature limit
can cause degradation in the parametric performance or even destroy the device.
5.10
PCB layout recommendations
Particular attention must be paid to the layout of the PCB tracks connected to the amplifier, load, and power
supply. The power and ground traces are critical as they must provide adequate energy and grounding for all
circuits. The best practice is to use short and wide PCB traces to minimize voltage drops and parasitic
inductance. In addition, to minimize parasitic impedance over the entire surface, a multi-via technique that
connects the bottom and top layer ground planes together in many locations is often used. The copper traces
connecting the output pins to the load and supply pins should be as wide as possible to minimize trace resistance.
5.11
Decoupling capacitor
In order to ensure op-amp full functionality, it is mandatory to place a decoupling capacitor of at least 22 nF as
close as possible to the op-amp supply pin. A good decoupling helps to reduce electromagnetic interference
impact.
TSB7191, TSB7191A, TSB7192, TSB7192A
Unused channel
DS12641 - Rev 5
page 22/34



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