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MPXM2010GS датащи(PDF) 245 Page - Motorola, Inc |
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MPXM2010GS датащи(HTML) 245 Page - Motorola, Inc |
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245 / 670 page ![]() MPX5010 MPXV5010G SERIES 3–99 Motorola Sensor Device Data www.motorola.com/semiconductors ON–CHIP TEMPERATURE COMPENSATION, CALIBRATION AND SIGNAL CONDITIONING The performance over temperature is achieved by integrat- ing the shear–stress strain gauge, temperature compensa- tion, calibration and signal conditioning circuitry onto a single monolithic chip. Figure 2 illustrates the Differential or Gauge configuration in the basic chip carrier (Case 482). A fluorosilicone gel isolates the die surface and wire bonds from the environment, while allowing the pressure signal to be transmitted to the sensor diaphragm. The MPX5010 and MPXV5010G series pressure sensor operating characteristics, and internal reliability and qualifi- cation tests are based on use of dry air as the pressure me- dia. Media, other than dry air, may have adverse effects on sensor performance and long–term reliability. Contact the factory for information regarding media compatibility in your application. Figure 3 shows the recommended decoupling circuit for in- terfacing the integrated sensor to the A/D input of a micropro- cessor or microcontroller. Proper decoupling of the power supply is recommended. Figure 4 shows the sensor output signal relative to pres- sure input. Typical, minimum, and maximum output curves are shown for operation over a temperature range of 0 ° to 85 °C using the decoupling circuit shown in Figure 4. The output will saturate outside of the specified pressure range. Figure 2. Cross–Sectional Diagram SOP (Not to Scale) Figure 3. Recommended power supply decoupling and output filtering. For additional output filtering, please refer to Application Note AN1646. 1.0 mF IPS 470 pF OUTPUT Vs +5 V 0.01 mF GND Vout FLUOROSILICONE GEL DIE COAT WIRE BOND DIFFERENTIAL SENSING ELEMENT THERMOPLASTIC CASE STAINLESS STEEL CAP LEAD FRAME P1 P2 DIE BOND DIE DIFFERENTIAL PRESSURE (kPa) 5.0 4.0 3.0 2.0 0 11 7 3 0 9 5 4.5 3.5 2.5 1.5 1 1.0 0.5 10 6 28 4 TRANSFER FUNCTION: Vout = VS*(0.09*P+0.04) ± ERROR VS = 5.0 Vdc TEMP = 0 to 85 °C TYPICAL MAX MIN Figure 4. Output versus Pressure Differential Freescale Semiconductor, Inc. For More Information On This Product, Go to: www.freescale.com |
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