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HM722 数据表(PDF) 9 Page - Shenzhen Huazhimei Semiconductor Co., Ltd

部件名 HM722
功能描述  12MHz, High Slew Rate, RRIO CMOS Operational Amplifiers
PDF  13 Pages
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制造商  HMSEMI [Shenzhen Huazhimei Semiconductor Co., Ltd]
网页  http://www.hmsemi.com/
标志 HMSEMI - Shenzhen Huazhimei Semiconductor Co., Ltd

HM722 数据表(HTML) 9 Page - Shenzhen Huazhimei Semiconductor Co., Ltd

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9
Application Notes (continued)
Figure 5. Differential Amplifier
Figure 6. Instrumentation Amplifier
Typical Application Circuits
The CF and RISO serve to counteract the loss of phase
margin by feeding the high frequency component of the
output signal back to the amplifier’s inverting input, thereby
preserving phase margin in the overall feedback loop.
For no-buffer configuration, there are two others ways to
increase the phase margin: (a) by increasing the amplifier’s
gain, or (b) by placing a capacitor in parallel with the
feedback resistor to counteract the parasitic capacitance
associated with inverting node.
POWER SUPPLY LAYOUT AND BYPASS
The H
M72x family operates from either a single +2.3V to
+5.5V supply or dual ±1.15V to ±3.00V supplies. For
single-supply operation, bypass the power supply VS with a
ceramic capacitor (i.e. 0.01μF to 0.1μF) which should be
placed close (within 2mm for good high frequency
performance) to the VS pin. For dual-supply operation, both
the VS+ and the VS– supplies should be bypassed to ground
with separate 0.1μF ceramic capacitors. A bulk capacitor
(i.e. 2.2μF or larger tantalum capacitor) within 100mm to
provide large, slow currents and better performance. This
bulk capacitor can be shared with other analog parts.
Good PC board layout techniques optimize performance by
decreasing the amount of stray capacitance at the op-amp’s
inputs and output. To decrease stray capacitance, minimize
trace lengths and widths by placing external components as
close to the device as possible. Use surface-mount
components whenever possible. For the op-amp, soldering
the part to the board directly is strongly recommended. Try
to keep the high frequency big current loop area small to
minimize the EMI (electromagnetic interfacing).
GROUNDING
A ground plane layer is important for the H
M72x circuit
design. The length of the current path speed currents in an
inductive ground return will create an unwanted voltage
noise. Broad ground plane areas will reduce the parasitic
inductance.
INPUT-TO-OUTPUT COUPLING
To minimize capacitive coupling, the input and output signal
traces should not be parallel. This helps reduce unwanted
positive feedback.
Figure 4. Indirectly Driving Heavy Capacitive Load with DC
Accuracy
DIFFERENTIAL AMPLIFIER
The circuit shown in Figure 5 performs the difference
function. If the resistors ratios are equal R4/R3 =R2/R1, then:
VOUT =(Vp –Vn) × R2/R1 +VREF
INSTRUMENTATION AMPLIFIER
The H
M72x family is well suited for conditioning sensor
signals in battery-powered applications. Figure 6 shows a
two op-amp instrumentation amplifier, using the H
M72x op-
amps. The circuit works well for applications requiring
rejection of common-mode noise at higher gains. The
reference voltage (VREF) is supplied by a low-impedance
source. In single voltage supply applications, the VREF is
typically VS/2.
BUFFERED CHEMICAL SENSORS
The H
M72x family has input bias current in the pA range.
This is ideal in buffering high impedance chemical sensors,
such as pH probes. As an example, the circuit in Figure 7
eliminates expansive low-leakage cables that that is
required to connect a pH probe (general purpose
combination pH probes, e.g Corning 476540) to metering
ICs such as ADC, AFE and/or MCU. An H
M72x op-amp
11
12
2
2
=(
)(1
)
OUT
REF
G
RR
VV
V
V
RR

Vp
VOUT
R2
Vn
VREF
R4
R1
R3
Figure 7. Buffered pH Probe
H 72x
H 72x
H 72x
H 72x
H 72x
HM721, HM722, HM724
12MHz, High Slew Rate, RRIO CMOS Operational Amplifiers



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