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MC33079YDTSTN/a5000avaiLow-noise op-amps


MC33079YDT ,Low-noise op-ampsAbsolute maximum ratings (AMR)Symbol Parameter Value UnitV Supply voltage ±18 or +36 VCC(1)V Differ ..
MC33091AP ,HIGH-SIDE TMOS DRIVEROrder this document by MC33091A/D** * The MC33091A is a High–Side TMOS Driver designed for use in h ..
MC33092ADW ,ALTERNATOR VOLTAGE REGULATORBlock Diagram Lamp Collector Source3 18FB UV V V1V 3V *ref CC CC Gateref Lamp Base 4 171 19 20 8 14 ..
MC33092ADW ,ALTERNATOR VOLTAGE REGULATOROrder this document by MC33092A/D * The MC33092A is specifically designed for voltage regulation a ..
MC33092DW ,ALTERNATOR VOLTAGE REGULATORBlock Diagram Lamp Collector Source3 18FB UV V V1V 3V *ref CC CC Gateref Lamp Base 4 171 19 20 8 14 ..
MC33092DW ,ALTERNATOR VOLTAGE REGULATOROrder this document by MC33092/D** * The MC33092 is specifically designed for voltage regulation a ..
MC74HC165ADT ,8-Bit Serial or Parallel-Input/Serial-Output Shift RegisterThe MC74HC165A is identical in pinout to the LS165. The deviceinputs are compatible with standard C ..
MC74HC165ADTR2 ,8-Bit Serial or Parallel-Input/Serial Output Shift RegisterELECTRICAL CHARACTERISTICS (C = 50 pF, Input t = t = 6 ns)L r fÎÎGuaranteed LimitÎÎÎÎÎΖ 55 toVCCÎÎ ..
MC74HC165ADTR2 ,8-Bit Serial or Parallel-Input/Serial Output Shift RegisterThe MC74HC165A is identical in pinout to the LS165. The deviceinputs are compatible with standard C ..
MC74HC165AFL1 ,8-Bit Serial or Parallel-Input/Serial-Output Shift RegisterELECTRICAL CHARACTERISTICS (C = 50 pF, Input t = t = 6 ns)L r fÎÎGuaranteed LimitÎÎÎÎÎÎV – 55 toCCÎ ..
MC74HC165AN ,8-Bit Serial or Parallel-Input/Serial-Output Shift Register
MC74HC165AN ,8-Bit Serial or Parallel-Input/Serial-Output Shift Register


MC33079YDT
Low-noise op-amps
November 2012 Doc ID 4468 Rev 5 1/11
MC33079

Low noise quad operational amplifier
Datasheet −
production data
Features
Low voltage noise: 4.5 nV/√Hz High gain bandwidth product: 15 MHz High slew rate: 7 V/µs Low distortion: 0.002% Large output voltage swing: +14.3 V/-14.6V Excellent frequency stability ESD protection 2kV
Description

The MC33079 device is a monolithic quad
operational amplifier particularly well suited for
audio applications.
It offers low voltage noise (4.5 nV/√Hz) and high
frequency performance (15 MHz gain bandwidth
product, 7 V/µs slew rate).
In addition the MC33079 device has a very low
distortion (0.002%) and excellent phase/gain
margins.
The output stage allows a large output voltage
swing and symmetrical source and sink currents.
Schematic diagram (1/4 MC33079) MC33079
2/11 Doc ID 4468 Rev 5 Schematic diagram (1/4 MC33079)
Figure 1. Schematic diagram (1/4 MC33079)
MC33079 Absolute maximum ratings and operating conditions
Doc ID 4468 Rev 5 3/11 Absolute maximum ratings and operating conditions


Table 1. Absolute maximum ratings (AMR)
Either or both input voltages must not exceed the magnitude of VCC+ or VCC-. Short-circuits can cause excessive heating. Destructive dissipation can result from simultaneous short-circuits on all amplifiers. Rth are typical values. Human body model: 100 pF discharged through a 1.5 kΩ resistor between two pins of the device, done for all couples of pin combinations with other pins floating. Machine model: a 200 pF cap is charged to the specified voltage, then discharged directly between two pins of the device with no external series resistor (internal resistor < 5Ω ), done for all couples of pin
combinations with other pins floating. Charged device model: all pins plus package are charged together to the specified voltage and then discharged directly to ground.
Table 2. Operating conditions
Electrical characteristics MC33079
4/11 Doc ID 4468 Rev 5
3 Electrical characteristics

Table 3. Electrical characteristics at VCC+ = +15 V, VCC- = -15 V, Tamb = 25 °C
(unless otherwise specified)
MC33079 Electrical characteristics
Doc ID 4468 Rev 5 5/11
Table 3. Electrical characteristics at VCC+ = +15 V, VCC- = -15 V, Tamb = 25 °C
(unless otherwise specified) (continued)
Electrical characteristics MC33079
6/11 Doc ID 4468 Rev 5



Figure 2. Supply current vs. supply voltage Figure 3. Output voltage vs. supply voltage id = ±1 V, RL = 600 Ω)
Figure 4. Equivalent input noise voltage
vs. frequency
Figure 5. Output short-circuit current
vs. output voltage
Figure 6. Output voltage vs. supply voltage
(Vid = ±1 V, RL = 2 kΩ)
Figure 7. THD + noise vs. frequency
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