Anterwell Technology Ltd.
Large Original stock of IC Electronics Components, Transistors, Diodes etc.
High Quality, Reasonable Price, Fast Delivery.
Product Details:
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Supply Voltage: | +36 V | Maximum Junction Temperature: | +150 °C |
---|---|---|---|
Storage Temperature: | −60 To +150 °C | Operating Temperature: | −40 To +85 °C |
Channel Separation: | -120 DB | Power Bandwidth: | 120 KHz |
High Light: | electronic integrated circuit,linear integrated circuits |
Stock Offer (Hot Sell)
Part No. | Quantity | Brand | D/C | Package |
IRFP064NPBF | 13257 | IR | 15+ | TO-247 |
IRFP150NPBF | 3754 | IR | 15+ | TO-247 |
IRFP240PBF | 6364 | VISHAY | 16+ | TO-247 |
IRFP26N60L | 4590 | VISHAY | 11+ | TO-247 |
IRFP2907PBF | 3962 | IR | 15+ | TO-247 |
IRFP460APBF | 5016 | VISHAY | 15+ | TO-247 |
IRFP4668PBF | 4165 | IR | 16+ | TO-247 |
IRFP9240PBF | 2375 | VISHAY | 13+ | TO-247 |
IRFPC50APBF | 4918 | VISHAY | 06+ | TO-247 |
IRFR024NTRPBF | 10083 | IR | 12+ | TO-252 |
IRFR1018ETR | 7234 | IR | 13+ | TO-252 |
IRFR3411TR | 4797 | IR | 14+ | TO-252 |
IRFR3607TRPBF | 6094 | IR | 13+ | TO-252 |
IRFR3910TRPBF | 12197 | IR | 16+ | TO-252 |
IRFR420ATRLPBF | 9002 | VISHAY | 09+ | TO-252 |
IRFR5410TR | 26000 | IR | 16+ | TO-252 |
IRFR9014TRPBF | 12907 | IR | 08+ | TO-252 |
IRFR9120NTRPBF | 9018 | IR | 14+ | TO-252 |
IRFRC20TRLPBF | 21285 | IR | 08+ | TO-252 |
IRFS640B | 4032 | FSC | 02+ | TO-220F |
IRFS7530 | 4561 | IR | 15+ | TO-263-7 |
IRFS7734TRLPBF | 4532 | 16+ | TO-263 | |
IRFU210PBF | 15534 | VISHAY | 14+ | TO-251 |
IRFU9110PBF | 10154 | IR | 05+ | TO-251 |
IRFZ44NPBF | 13775 | IR | 15+ | TO-220 |
IRFZ44S | 21356 | IR | 10+ | TO-263 |
IRFZ46NPBF | 8150 | IR | 16+ | TO-220 |
IRFZ48NPBF | 4963 | IR | 16+ | TO-220 |
IRG4BC30UD | 4673 | IR | 13+ | TO-220 |
IRG4PC50S | 9467 | IR | 13+ | TO-247 |
MC33078, MC33079
Low Noise Dual/Quad Operational Amplifiers
The MC33078/9 series is a family of high quality monolithic amplifiers employing Bipolar technology with innovative high performance concepts for quality audio and data signal processing applications. This family incorporates the use of high frequency PNP input transistors to produce amplifiers exhibiting low input voltage noise with high gain bandwidth product and slew rate.
The all NPN output stage exhibits no deadband crossover distortion, large output voltage swing, excellent phase and gain margins, low open loop high frequency output impedance and symmetrical source and sink AC frequency performance.
The MC33078/9 family offers both dual and quad amplifier versions and is available in the plastic DIP and SOIC packages (P and D suffixes).
Features
• Dual Supply Operation: 5.0 V to 18 V
• Low Voltage Noise: 4.5 nV/ Hz
• Low Input Offset Voltage: 0.15 mV
• Low T.C. of Input Offset Voltage: 2.0 V/°C
• Low Total Harmonic Distortion: 0.002%
• High Gain Bandwidth Product: 16 MHz
• High Slew Rate: 7.0 V/s
• High Open Loop AC Gain: 800 @ 20 kHz
• Excellent Frequency Stability
• Large Output Voltage Swing: +14.1 V/ −14.6 V
• ESD Diodes Provided on the Inputs
• Pb−Free Packages are Available Fig
MAXIMUM RATINGS
Rating | Symbol | Value | Unit |
Supply Voltage (VCC to VEE) | VS | +36 | V |
Input Differential Voltage Range | VIDR | Note 1 | V |
Input Voltage Range | VIR | Note 1 | V |
Output Short Circuit Duration (Note 2) | tSC | Indefinite | sec |
Maximum Junction Temperature | TJ | +150 | °C |
Storage Temperature | Tstg | −60 to +150 | °C |
ESD Protection at any Pin MC33078 − Human Body Model − Machine Model MC33079 − Human Body Model − Machine Model |
Vesd |
600 200 550 150 |
V |
Maximum Power Dissipation | PD | Note 2 | mW |
Operating Temperature Range | TA | −40 to +85 | °C |
Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are stress ratings only. Functional operation above the Recommended Operating Conditions is not implied. Extended exposure to stresses above the Recommended Operating Conditions may affect device reliability.
1. Either or both input voltages must not exceed the magnitude of VCC or VEE.
2. Power dissipation must be considered to ensure maximum junction temperature (TJ) is not exceeded (see Figure 2).
Figure 1. Representative Schematic Diagram (Each Amplifier)
Figure 2. Maximum Power Dissipation versus Temperature
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