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參數資料
型號: LMC6684BIN
廠商: NATIONAL SEMICONDUCTOR CORP
元件分類: 運算放大器
英文描述: Low Voltage, Rail-To-Rail Input and Output CMOS
中文描述: QUAD OP-AMP, 3000 uV OFFSET-MAX, 1.2 MHz BAND WIDTH, PDIP16
封裝: PLASTIC, DIP-16
文件頁數: 13/24頁
文件大小: 750K
代理商: LMC6684BIN
Application Information
1.0 Input Common-Mode Voltage
Range
The LMC6681/2/4 has a rail-to-rail input common-mode volt-
age range. Figure 1 shows an input voltage exceeding both
supplies with no resulting phase inversion on the output.
The absolute maximum input voltage at V
+
= 3V is 300 mV
beyond either supply rail at room temperature. Voltages
greatly exceeding this absolute maximum rating, as in Figure
2 can cause excessive current to flow in or out of the input
pins, possibly affecting reliability. The input current can be
externally limited to
±
5 mA, with an input resistor, as shown
in Figure 3
2.0 Rail-to-Rail Output
The approximated output resistance of the LMC6681/2/4 is
50
sourcing, and 50
sinking at V
= 3V. The maximum
output swing can be estimated as a function of load using the
calculated output resistance.
3.0 Low Voltage Operation
The LMC6682 operates at supply voltages of 2.2V and 1.8V.
These voltages represent the End of Discharge voltages of
several popular batteries. The amplifier can operate from 1
Lead-Acid or Lithium Ion battery, or 2NiMH, NiCd, or
Carbon-Zinc batteries. Nominal and End of Discharge of
Voltage of several batteries are listed below.
Battery Type
Nominal Voltage
End of Discharge
Voltage
1V
1V
1.8V
1.3V
1.1V
1.7V–2.4V
NiMH
NiCd
Lead-Acid
Silver Oxide
Carbon-Zinc
Lithium
At V
= 2.2V, the LMC6681/2/4 has a rail-to-rail input
common-mode voltage range. Figure 4 shows an input volt-
age extending to both supplies and the resulting output.
1.2V
1.2V
2V
1.6V
1.5V
2.6V–3.6V
The amplifier is operational at V
=1.8V, with guaranteed in-
put common-mode voltage range, output swing, and CMRR
specs. Figure 5 shows the response of the LMC6681/2/4 at
V
S
= 1.8V.
DS012042-5
FIGURE 1. An Input Signal Exceeds the LMC6681/2/4
Power Supply Voltages with No Output Phase
Inversion
DS012042-6
FIGURE 2. A
±
7.5V Input Signal Greatly
Exceeds the 3V Supply in
Figure 3
,
Causing No Phase Inversion Due to R
I
DS012042-7
FIGURE 3. Input Current Protection for
Voltages Exceeding the Supply Voltage
DS012042-8
FIGURE 4. The Input Common-Mode Voltage
Range Extends to Both Supplies at V
S
= 2.2V
DS012042-9
FIGURE 5. Response of the LMC6681/2/4
at V
S
= 1.8V
www.national.com
13
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