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MP3V5004GC6U Pressure Sensors: Datasheet, Pinout, Specification [FAQ]

  • Contents

Product Overview

The MP3V5004G series piezoresistive transducer is a state-of-the-art monolithic silicon pressure sensor  designed for a wide range of applications, but particularly those employing a microcontroller or microprocessor with A/D inputs. This sensor combines a highly sensitive implanted strain gauge with advanced micromachining techniques, thin-film metallization, and bipolar processing to provide an accurate, high level analog output signal that is proportional to the applied pressure.

 

This blog will introduce MP3V5004GC6U systematically from its features, pinout to its specifications, applications, also including MP3V5004GC6U datasheet and so much more.

 

Catalog

Product Overview

MP3V5004GC6U Features

MP3V5004GC6U Pinout

Minimum Recommended Footprint For Small Outline Packages

MP3V5004GC6U Applications

MP3V5004GC6U Operating Characteristics

MP3V5004GC6U Maximum Ratings

On-chip Temperature Compensation and Calibration

Pressure (p1)/Vacuum (p2) Side Identification Table

MP3V5004GC6U Package

MP3V5004GC6U Specification

MP3V5004GC6U Manufacturer

MP3V5004GC6U Datasheet

Using Warnings

MP3V5004GC6U FAQ

 

MP3V5004GC6U Features

  • Temperature Compensated from 10°C to 60°C
  • Available in Gauge Surface Mount  (SMT) Configuration
  • Durable Thermoplastic (PPS) Package

 

MP3V5004GC6U Pinout

The following figure is the diagram of MP3V5004GC6U pinout.

 

MP3V5004GC6U Pinout

MP3V5004GC6U Pinout

 

Surface mount board layout is a critical portion of the total design. The footprint for the semiconductor package must be the correct size to ensure proper solder connection interface between the board and the package. With the correct pad geometry, the packages will self-align when subjected to a solder reflow process. It is always recommended to fabricate boards with a solder mask layer to avoid bridging and/or shorting between solder pads, especially on tight tolerances and/or tight layouts.

 

MP3V5004GC6U Applications

  • Washing Machine Water Level
  • Ideally Suited for Microprocessor or Microcontroller-Based Systems

 

MP3V5004GC6U Operating Characteristics

Characteristic

Symbol

Min

Typ

Max

Unit

Pressure Range

POP

0

3.92

400

kPa mm H2O

Supply Voltage(1)

VS

2.7

3.0

3.3

VDC

Supply Current

IS

10

mAdc

Span at 306 mm H2O (3 kPa)(2)

VFSS

1.8

V

Offset(3) (4)

VOFF

0.45

0.6

0.75

V

Sensitivity

V/P

0.6

5.9

V/kPa mV/mm H2O

Accuracy(4) (5) 0 to 100 mm H2O (10 to 60°C)

100 to 400 mm H2O (10 to 60°C)

±1.5

±2.5

%VFSS

%VFSS

 

1.Device is ratiometric within this specified excitation range.

2.Span is defined as the algebraic difference between the output voltage at specified pressure and the output voltage at the minimum rated pressure.

3.Offset (Voff) is defined as the output voltage at the minimum rated pressure.

4.Accuracy (error budget) consists of the following:

Linearity: Output deviation from a straight line relationship with pressure over the specified pressure range.

Temperature Hysteresis: Output deviation at any temperature within the operating temperature range, after the temperature is cycled to and from the minimum or maximum operating temperature points, with zero differential pressure applied.

Pressure Hysteresis: Output deviation at any pressure within the specified range, when this pressure is cycled to and from the minimum or maximum rated pressure, at 25°C.

Offset Stability: Output deviation, after 1000 temperature cycles, -30° to 100°C, and 1.5 million pressure cycles, with minimum rated pressure applied.

TcSpan: Output deviation over the temperature range of 10° to 60°C, relative to 25°C.

TcOffset: Output deviation with minimum rated pressure applied, over the temperature range of 10° to 60°C, relative to 25°C. Variation from Nominal: The variation from nominal values, for Offset or Full Scale Span, as a percent of VFSS, at 25°C.

  1. Auto-Zero at Factory Installation: Due to the sensitivity of the MP3V5004G, external mechanical stresses and mounting position can affect the zero pressure output reading. Auto-zeroing is defined as storing the zero pressure output reading and subtracting this from the device's output during normal operations. Reference AN1636 for specific information. The specified accuracy assumes a maximum temperature change of ±5°C between auto-zero and measurement.

 

MP3V5004GC6U Maximum Ratings

Rating

Symbol

Value

Units

Maximum Pressure (P1 > P2)

PMAX

16

kPa

Storage Temperature

TSTG

–30 to +100

°C

Operating Temperature

TA

0 to +85

°C

 

  1. Exposure beyond the specified limits may cause permanent damage or degradation to thedevice.

 

Figure 1 shows a block diagram of the internal circuitry integrated on a pressure sensor chip.

 

Figure 1. Fully Integrated Pressure Sensor Schematic

Figure 1. Fully Integrated Pressure Sensor Schematic

 

On-chip Temperature Compensation  and Calibration

The performance over temperature is achieved by integrating the shear-stress strain gauge, temperature compensation, calibration and signal conditioning circuitry onto a single monolithic chip.

 

Figure 2 illustrates the gauge configuration in the basic chip carrier (Case 482A). A fluorosilicone gel isolates the die surface and wire bonds from the environment, while allowing the pressure signal to be transmitted to the silicon diaphragm. 

 

The MP3V5004G series sensor operating characteristics are based on the use of dry air as pressure media. Media, other than dry air, may have adverse effects on sensor performance and long-term reliability. Internal reliability and qualification test for dry air, and other media, are available from the factory. Contact the factory for information regarding media tolerance in your application.

 

Figure 3 shows the recommended decoupling circuit for interfacing the output of the MP3V5004G to the A/D input of the microprocessor or microcontroller. Proper decoupling of

the power supply is recommended.

 

Figure 4 shows the sensor output signal relative to pressure input. Typical, minimum and maximum output curves are shown for operation over a temperature range of 10°C to 60°C using the decoupling circuit shown in Figure 3 The output will saturate outside of the specified pressure range.

 

Figure 2. Cross Sectional Diagram SSOP (not to scale)

Figure 2. Cross Sectional Diagram SSOP (not to scale)

 

Figure 3. Recommended Power Supply Decoupling and Output Filtering.

Figure 3. Recommended Power Supply Decoupling and Output Filtering.

 

Figure 4. Output vs. Pressure Differential at ±2.5% VFSS

Figure 4. Output vs. Pressure Differential at ±2.5% VFSS

 

Pressure (p1)/Vacuum (p2) Side Identification Table

Freescale Semiconductor designates the two sides of the pressure sensor as the Pressure (P1) side and the Vacuum (P2) side. The Pressure (P1) side is the side containing silicone gel which isolates the die from the environment. The Freescale Semiconductor pressure sensor is designed to operate with positive differential pressure applied, P1 > P2. The Pressure (P1) side may be identified by using the table below.

 

Part Number

Case Type

Pressure (P1) Side Identifier

MP3V5004GC6U/T1

482A

Side with Port Attached

MP3V5004GP

1369

Side with Port Attached

MP3V5004DP

1351

Side with Part Marking

MP3V5004GVP

1368

Stainless Steel Cap

 

MP3V5004GC6U Package

The following diagram shows the MP3V5004GC6U package.

 

MP3V5004GC6U Package

MP3V5004GC6U Package

MP3V5004GC6U Package

 

MP3V5004GC6U Specification

Product Attribute Attribute Value
Manufacturer: NXP
Product Category: Board Mount Pressure Sensors
Pressure Type: Gauge
Operating Pressure: 0 Pa to 3.92 kPa
Output Type: Analog
Mounting Style: SMD/SMT
Operating Supply Voltage: 2.7 V to 3.3 V
Port Type: Single Axial Barbless
Package / Case: SOP-8
Minimum Operating Temperature: 0 C
Maximum Operating Temperature: + 85 C
Series:Series: MPXx5004
Packaging: Tube
Operating Supply Current: Operating Supply Current: 10 mA
Port Size: 3.17 mm
Product Type: Pressure Sensors

 

MP3V5004GC6U Manufacturer

NXP Semiconductors enables secure connections and infrastructure for a smarter world, advancing solutions that make lives easier, better and safer. As the world leader in secure connectivity solutions for embedded applications, NXP is driving innovation in the secure connected vehicle, end-to-end security and privacy and smart connected solutions markets.

 

MP3V5004GC6U Datasheet

You can download MP3V5004GC6U datasheet from the link given below:

MP3V5004GC6U Datasheet

 

Using Warnings

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

MP3V5004GC6U FAQ

What type of sensor is the MP3V5004G series piezoresistive transducer?

Monolithic silicon pressure sensor.

 

What kind of analog output signal does the piezoresistive transducer provide?

High level analog output signal.

 

How does a pressure sensor work?

Pressure transducers have a sensing element of constant area and respond to force applied to this area by fluid pressure. The force applied will deflect the diaphragm inside the pressure transducer. The deflection of the internal diaphragm is measured and converted into an electrical output.

 

Where are pressure sensors used?

Pressure sensors are used for control and monitoring in thousands of everyday applications. Pressure sensors can also be used to indirectly measure other variables such as fluid/gas flow, speed, water level, and altitude.

 

What is an example of a pressure sensor?

A common example of this is when a tire pressure gauge is used to measure the air pressure in an automobile tire.

MP3V5004GC6U Documents & Media

Download datasheets and manufacturer documentation for NXP USA Inc. MP3V5004GC6U.
Environmental Information

MP3V5004GC6U PCB Symbol, Footprint & 3D Model

NXP USA Inc. MP3V5004GC6U

NXP USA Inc.

Pressure Sensor 0.57 PSI (3.92 kPa) Vented Gauge Male - 0.13" (3.17mm) Tube 0.6 V ~ 3 V 8-SMD, Gull Wing, Top Port

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