MC33074P

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Quad Op Amps with wide voltage range

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MC33074P DataSheet

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MC33074P Details

The MC33074P is a quad operational amplifier chip designed for low power applications in consumer electronics, featuring wide bandwidth, high slew rate, fast settling time, and wide single supply operation. This device is ideal for industrial automation systems, data acquisition and monitoring, process measurement and control, power generation and distribution, telecommunications equipment, safety and security systems, medical equipment and devices, robotics and automated machinery, environmental monitoring solutions.

Pinout

  • VCC (1): Positive Power Supply
  • GND (2): Ground
  • IN+ (3): Non-inverting Input
  • IN- (4): Inverting Input
  • VOUT (5): Output

Key Features

  • Wide bandwidth: 10 Hz to 1 MHz
  • High slew rate: 0.5 V/μs
  • Fast settling time: 100 μs
  • Wide single supply operation: 4.75 V to 32 V

Applications

  • Industrial automation systems
  • Data acquisition and monitoring
  • Process measurement and control
  • Power generation and distribution
  • Telecommunications equipment
  • Safety and security systems
  • Medical equipment and devices
  • Robotics and automated machinery
  • Environmental monitoring solutions

Where to Use

The MC33074P is suitable for applications that require low power consumption, high bandwidth, and fast settling time. It is ideal for systems where a quad operational amplifier is needed.

How to Use

Connect the MC33074P to your system by wiring the VCC pin to the positive power supply, GND pin to ground, IN+ and IN- pins to the input signal, and VOUT pin to the output.

Ensure proper power supply connections and ensure that the device is used within its specified operating conditions.

Application Circuit

The application circuit diagram for the MC33074P illustrates how to connect the operational amplifier to a system. It includes connections for power supply, ground, input signal, and output.

(Tip: For detailed circuit diagram connections and usage guide, refer to the datasheet.)

Equivalents

  • OPA2344: A similar quad operational amplifier from Texas Instruments offering comparable features and performance.
  • LTC6240-5.0: An alternative quad operational amplifier from Linear Technology with equivalent functionality.

Complementary

The MC33074P can be complemented by the LM324, which offers additional features such as higher gain and lower noise, suitable for more demanding applications.

When selecting complementary operational amplifiers, ensure that their features and specifications align with your specific application requirements for optimal performance and compatibility.

Frequently Asked Questions

Q: What is the maximum bandwidth of the MC33074P?

A: The MC33074P has a maximum bandwidth of 1 MHz.

Q: Can the MC33074P be used in medical equipment and devices?

A: Yes, the MC33074P is suitable for use in medical equipment and devices where low power consumption and high bandwidth are required.

Specifications

The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.

Status Obsolete Compliance PbAHP
Package Type PDIP-14 Case Outline 646-06
MSL Type NA MSL Temp (°C) 0
Container Type TUBE Container Qty. 500
ON Target N Rail to Rail No
Channels 4 VS Min (V) 3
VS Max (V) 44 Iq Typ (mA) 1.9
VOS Max (mV) 3 GBW Typ (MHz) 4.5
SR Typ (V/µs) 10 IO Typ (mA) 30
ΔVOS/ΔT (μV/C) 10 eN (nV/√Hz) 32
Ibias Typ (pA) 100000 CMRR Typ (dB) 97
Architecture Bipolar Temperature Range (°C) -40 to 85
Pricing ($/Unit) Price N/A

Datasheet PDF

Datasheets record the features, absolute maximum ratings, applications and more of the device, which benefit a lot as an overall guide to the specific application of the part.

Preliminary Specification MC33074P PDF Download

FAQs

What is MC33074P?

The MC33074P is a quad operational amplifier IC manufactured by ON Semiconductor. It consists of four independent operational amplifiers in a single package, making it suitable for applications requiring multiple amplification stages or signal processing.

How Does MC33074P Work?

The MC33074P operates as four separate operational amplifiers that can amplify input signals independently. It can be used in various configurations such as inverting, non-inverting, summing, and differential amplifiers. The IC features high input impedance, low input bias current, and rail-to-rail output capability, offering flexibility in signal conditioning applications.

How Many Pins does MC33074P have and What are the Functions of the Pinout Configuration?

The MC33074P is housed in a 14-lead PDIP (Plastic Dual In-line Package) package. The pinout configuration includes:

  • VCC+: Positive power supply pin.
  • VCC-: Negative power supply pin.
  • IN-1 to IN-4: Inverting input pins for each operational amplifier.
  • IN+1 to IN+4: Non-inverting input pins for each operational amplifier.
  • OUT1 to OUT4: Output pins for each operational amplifier.

What are the Pros and Cons of MC33074P?

Pros:

  • Quad Amplifier: Contains four independent operational amplifiers in a single package, saving board space and cost.
  • Wide Voltage Range: Operates with a wide supply voltage range, enhancing compatibility with different systems.
  • Low Input Bias Current: Suitable for high impedance applications where low input currents are critical.
  • Rail-to-Rail Output: Ensures maximum output swing even at low supply voltages.
  • Versatile: Can be used in a variety of signal processing and amplification circuits.

Cons:

  • Higher Power Consumption: When compared to single amplifier ICs, quad amplifiers may consume more power.
  • Complexity: Using all four amplifiers in a single package may require careful consideration of signal routing and noise.
  • Packaging: The 14-lead PDIP package may not be as space-efficient as smaller SMD packages.

Are There Any Equivalents/Alternatives to MC33074P for Recommendation?

  • The LM324 from Texas Instruments and the LM348 from Texas Instruments are popular alternatives to the MC33074P.
  • Equivalent parts to the MC33074P include the LM224 from Texas Instruments and the NJM324D from NJR.

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