Details, datasheet, quote on part number: MC33274P
DatasheetDownload MC33274P datasheet
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Features, Applications

Single Supply, High Slew Rate Low Input Offset Voltage, Bipolar Operational Amplifiers

The MC33272/74 series of monolithic operational amplifiers are quality fabricated with innovative Bipolar design concepts. This dual and quad operational amplifier series incorporates Bipolar inputs along with a patented ZipRTrim element for input offset voltage reduction. The MC33272/74 series of operational amplifiers exhibits low input offset voltage and high gain bandwidth product. Dualdoublet frequency compensation is used to increase the slew rate while maintaining low input noise characteristics. Its all NPN output stage exhibits no deadband crossover distortion, large output voltage swing, and an excellent phase and gain margin. It also provides a low open loop high frequency output impedance with symmetrical source and sink AC frequency performance. The MC33272/74 series is specified over to +85C and are available in plastic DIP and SOIC surface mount packages. Input Offset Voltage Trimmed 100 V (Typ)

Low Input Bias Current: 300 nA Low Input Offset Current: 3.0 nA High Input Resistance: 16 M Low Noise: 18 nV/ @ 1.0 kHz High Gain Bandwidth Product: 24 MHz @ 100 kHz High Slew Rate: 10 V/s Power Bandwidth: 160 kHz Excellent Frequency Stability Unity Gain Stable: w/Capacitance Loads 500 pF Large Output Voltage Swing: 14.6 V Low Total Harmonic Distortion: 0.003% Power Supply Drain Current: 2.15 mA per Amplifier Single or Split Supply Operation: 18 V ESD Diodes Provide Added Protection to the Inputs

Op Amp Function Dual Device MC33272AD MC33272AP Quad = 40 Operating Temperature Range Package SO8 Plastic DIP SO14 Plastic DIP

Rating Supply Voltage Input Differential Voltage Range Input Voltage Range Output Short Circuit Duration (Note 2) Maximum Junction Temperature Storage Temperature Maximum Power Dissipation Symbol VCC to VEE VIDR VIR tSC TJ Tstg PD Value +36 (Note 1) (Note 1) Indefinite to +150 (Note 2) Unit V sec C mW

NOTES: 1. Either or both input voltages should not exceed VCC or VEE. 2. Power dissipation must be considered to ensure maximum junction temperature (TJ) is not exceeded (see Figure 2).

DC ELECTRICAL CHARACTERISTICS (VCC +15 V, VEE = 25C, unless otherwise noted.)

Characteristics Input Offset Voltage (RS 10 , VCM 0 V) (VCC +15 V, VEE to +85C (VCC 5.0 V, VEE = +25C Average Temperature Coefficient of Input Offset Voltage 10 , VCM to +85C Input Bias Current (VCM to +85C Input Offset Current (VCM to +85C Common Mode Input Voltage Range (VIO = 5.0 mV, = +25C Large Signal Voltage Gain (VO to +85C Output Voltage Swing (VID 1.0 V) (VCC +15 V, VEE 10 k (VCC 5.0 V, VEE 2.0 k Common Mode Rejection (Vin 15 V) Power Supply Rejection VCC/VEE 5.0 V Output Short Circuit Current (VID 1.0 V, Output to Ground) Source Sink Power Supply Current Per Amplifier (VO 0 V) (VCC +15 V, VEE to +85C (VCC 5.0 V, VEE 6 7 Figure 3 Symbol |VIO| 4, 5 VIO/T IIB |IIO| VICR VEE to (VCC 1.8) AVOL 10, 11 VOL VOH CMR PSR 80 ISC 25 17 ICC 2.0 nA V/C Min Typ Max Unit mV

AC ELECTRICAL CHARACTERISTICS (VCC +15 V, VEE = 25C, unless otherwise noted.)

Characteristics Slew Rate (Vin = 100 pF, +1.0 V) Gain Bandwidth Product = 100 kHz) AC Voltage Gain (RL = 20 kHz) Unity Gain Frequency (Open Loop) Gain Margin (RL = 0 pF) Phase Margin (RL = 0 pF) Channel Separation to 20 kHz) Power Bandwidth (VO = 20 Vpp, 2.0 k, THD 1.0%) Total Harmonic Distortion (RL to 20 kHz, = 3.0 Vrms, = +1.0) Open Loop Output Impedance (VO = 6.0 MHz) Differential Input Resistance (VCM 0 V) Differential Input Capacitance (VCM 0 V) Equivalent Input Noise Voltage (RS = 1.0 kHz) Equivalent Input Noise Current = 1.0 kHz) Figure Symbol SR GBW AVO m CS BWP THD |ZO| RIN CIN en in Min 8.0 17 Typ Max Unit V/s MHz dB MHz dB Degrees dB kHz M pF nV/ Hz pA/ Hz

Figure 1. Equivalent Circuit Schematic (Each Amplifier)


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