onsemi, Operational Amplifier, 16 MHz, 8-Pin 36 V SOIC

RS Stock No.: 689-6721PBrand: onsemiManufacturers Part No.: MC33078DR2G
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Technical Document

Specifications

Brand

onsemi

Product Type

Operational Amplifier

Mount Type

Surface

Package Type

SOIC

Number of Channels

2

Pin Count

8

GBP - Gain Bandwidth Product

16MHz

Minimum Supply Voltage

36V

Maximum Supply Voltage

36V

Input Bias Current

750 nA

Minimum Operating Temperature

-40°C

Vos - Input Offset Voltage

2 mV

Slew Rate

7V/μs

Maximum Operating Temperature

85°C

Width

4 mm

Series

MC33078

Height

1.5mm

Length

5mm

Standards/Approvals

No

Output Current

29mA

Automotive Standard

No

Input Offset Current

150 nA

Product details

MC33078, MC33079, Low Noise Dual/Quad Operational Amplifiers, ON Semiconductor

The MC33078/9 series is a family of monolithic op-amps employing Bipolar technology with for audio and data signal processing applications.

They use high frequency PNP input transistors to produce amplifiers with low input voltage noise, high gain bandwidth product and slew rate.

The MC33078/9 family is available in both dual and quad versions in either plastic DIP or SOIC packages (P and D suffixes).

Dual Supply Operation: ±5 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 μV/ C
Low Total Harmonic Distortion: 0.002%
High Gain Bandwidth Product: 16 MHz
High Slew Rate: 7 V/μs
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

Operational Amplifiers, ON Semiconductor

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Stock information temporarily unavailable.

€ 13.96

€ 0.279 Each (Supplied on a Reel) (Exc. VAT)

onsemi, Operational Amplifier, 16 MHz, 8-Pin 36 V SOIC
Select packaging type

€ 13.96

€ 0.279 Each (Supplied on a Reel) (Exc. VAT)

onsemi, Operational Amplifier, 16 MHz, 8-Pin 36 V SOIC

Stock information temporarily unavailable.

Select packaging type

QuantityUnit pricePer Reel
50 - 95€ 0.279€ 1.40
100 - 495€ 0.242€ 1.21
500 - 995€ 0.212€ 1.06
1000+€ 0.194€ 0.97

Ideate. Create. Collaborate

JOIN FOR FREE

No hidden fees!

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  • Download and use our DesignSpark software for your PCB and 3D Mechanical designs
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Click here to find out more

Technical Document

Specifications

Brand

onsemi

Product Type

Operational Amplifier

Mount Type

Surface

Package Type

SOIC

Number of Channels

2

Pin Count

8

GBP - Gain Bandwidth Product

16MHz

Minimum Supply Voltage

36V

Maximum Supply Voltage

36V

Input Bias Current

750 nA

Minimum Operating Temperature

-40°C

Vos - Input Offset Voltage

2 mV

Slew Rate

7V/μs

Maximum Operating Temperature

85°C

Width

4 mm

Series

MC33078

Height

1.5mm

Length

5mm

Standards/Approvals

No

Output Current

29mA

Automotive Standard

No

Input Offset Current

150 nA

Product details

MC33078, MC33079, Low Noise Dual/Quad Operational Amplifiers, ON Semiconductor

The MC33078/9 series is a family of monolithic op-amps employing Bipolar technology with for audio and data signal processing applications.

They use high frequency PNP input transistors to produce amplifiers with low input voltage noise, high gain bandwidth product and slew rate.

The MC33078/9 family is available in both dual and quad versions in either plastic DIP or SOIC packages (P and D suffixes).

Dual Supply Operation: ±5 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 μV/ C
Low Total Harmonic Distortion: 0.002%
High Gain Bandwidth Product: 16 MHz
High Slew Rate: 7 V/μs
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

Operational Amplifiers, ON Semiconductor

Ideate. Create. Collaborate

JOIN FOR FREE

No hidden fees!

design-spark
design-spark
  • Download and use our DesignSpark software for your PCB and 3D Mechanical designs
  • View and contribute website content and forums
  • Download 3D Models, Schematics and Footprints from more than a million products
Click here to find out more