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TruStability® Board Mount Pressure Sensors HSC Series—High Accuracy, Compensated/Amplified ±1.6 mbar to ±10 bar | ±160 Pa to ±1 MPa | ±0.5 inH2O to ±150 psi Digital or Analog Output Datasheet

sensing.honeywell.com TruStability® Board Mount Pressure Sensors The TruStability® High Accuracy Silicon Ceramic (HSC) Series is a piezoresistive silicon pressure sensor offering a ratiometric analog or digital output for reading pressure over the specified full scale pressure span and temperature range. The HSC Series is fully calibrated and temperature compensated for sensor offset, sensitivity, temperature effects, and non- linearity using an on-board Application Specific Integrated Circuit (ASIC). Calibrated output values for pressure are updated at approximately 1 kHz for analog and 2 kHz for digital. The HSC Series is calibrated over the temperature range of 0 °C to 50 °C [32 °F to 122 °F]. The sensor is characterized for operation from a single power supply of either 3.3 Vdc or 5.0 Vdc. These sensors measure absolute, gage, or differential pressures. The absolute versions have an internal vacuum reference and an output value proportional to absolute pressure. Gage versions are referenced to atmospheric pressure and provide an output proportional to pressure variations from atmosphere. Differential versions allow measurement of pressure between the two pressure ports. The TruStability ® pressure sensors are intended for use with non-corrosive, non-ionic gases, such as air and other dry gases. Available options extend the performance of these sensors to non-corrosive, non-ionic liquids for pressure ranges above 40 mbar | 4 kPa | 20 inH2O. All products are designed and manufactured according to ISO 9001 standards. stability • accuracy • flexibility • small size What makes our sensors better?

  • Stability and reliability
  • Industry-leading accuracy of ±0.25 %FSS BFSL
  • Port and housing options simplify integration
  • Wide pressure range, from ±1.6 mbar to ±10 bar | ±160 Pa to ±1 MPa | ±0.5 inH2O to ±150 psi
  • Small package size
  • Extremely low power consumption Table of Contents Pressure Range Specifications Dimensional Drawings TruStability® Board Mount Pressure Sensors

sensing.honeywell.com ProPrietAry Honeywell teCHnology Combines high sensitivity with high overpressure and burst pressure while providing industry leading stability—performance factors that are difficult to achieve in the same product; this gives the customer more flexibility in sensor implementation and reduces the customer design requirements for protecting the sensor without sacrificing the ability to sense very small changes in pressure. ProteCteD By MUltiPle gloBAl PAtentS inDUStry-leADing long-terM StABility Even after long-term use and thermal extremes, the sensor’s stability remains best in class:

  • Minimizes system calibration needs.
  • Improves system performance.
  • Helps support system uptime by minimizing the need to service or replace the sensor during its application life. totAl error BAnD (teB) Honeywell specifies TEB—the most comprehensive, clear, and meaningful measurement—that provides the sensor’s true performance over a compensated range of 0 °C to 50 °C [32 °F to 122 °F] (see Figure 1):
  • Minimizes individually testing and calibrating every sensor, decreasing manufacturing time and process costs.
  • Improves system accuracy.
  • Provides enhanced sensor interchangeability—there is minimal part-to-part variation in accuracy.

Features

Pressure Non-Repeatability All Possible Errors Offset Full Scale Span Thermal Effect on Offset Thermal Effect on Span Thermal Hysteresis Total Error Band Accuracy= Pressure Non-Linearity Figure 1. TEB Components for TruStability® Board Mount Pressure Sensors

sensing.honeywell.com Extremely tight accuracy of ±0.25 %FSS BFSL (Full Scale Span Best Fit Straight Line) reduces software needed to correct system inaccuracies, minimizing system design time:

  • Avoids additional customer calibration.
  • Helps to improve system efficiency.
  • Often simplifies software development. HigH BUrSt PreSSUreS
  • Promotes system reliability and reduces potential system downtime.
  • Can simplify the design process. HigH working PreSSUre rAngeS Allows ultra-low pressure sensors to be used continuously well above the calibrated pressure range. inDUStry-leADing flexiBility Modular, flexible design with many package styles (with the same industry- leading stability), pressure ports, and options simplify integration into the device manufacturer’s application. wiDe vAriety of PreSSUre rAngeS From ±1.6 mbar to ±10 bar | ±160 Pa to ±1 MPa | ±0.5 inH2O to 150 psi provide support for many unique applications. MeetS iPC/JeDeC J-StD-020D.1 MoiStUre SenSitivity level 1 reqUireMentS
  • Allows the customer to avoid the thermal and mechanical damage during solder reflow attachment and/or repair that lesser rated products would incur.
  • Allows unlimited floor life when stored as specified (<30 ºC/85 %RH), simplifying storage and reducing scrap.
  • Never requires lengthy bakes prior to reflow.
  • Stable and usable shortly after reflow process allows for lean manufacturing. oPtionAl internAl DiAgnoStiC fUnCtionS
  • May reduce the need for redundant sensors in the system.
  • Detects most internal failures including burst sensors. energy effiCient Extremely low power consumption (less than 10 mW, typ.):
  • Reduces system power requirements.
  • Enables extended battery life.
  • Optional sleep mode available upon special request.

sensing.honeywell.com oUtPUt: rAtioMetriC AnAlog; i2C- or SPi-CoMPAtiBle 14-Bit DigitAl oUtPUt (Min. 12-Bit SenSor reSolUtion) Accelerates performance through reduced conversion requirements and the convenience of direct interface to microprocessors. SMAll Size Miniature 10 mm x 10 mm [0.39 in x 0.39 in] package is very small when compared to many board mount pressure sensors:

  • Occupies less area on the PCB.
  • Typically allows for easy placement on crowded PCBs or in small devices. reACH AnD roHS CoMPliAnt liqUiD MeDiA oPtion
  • Provides robustness in environments with condensing humidity.
  • Compatible with a variety of non-ionic fluids.
  • Available for pressure ranges above 40 mbar | 4 kPa | 20 inH 20.

sensing.honeywell.com MeDiCAl

  • Airflow MonitorS
  • AneStHeSiA MACHineS
  • BlooD AnAlySiS MACHineS
  • gAS CHroMAtogrAPHy
  • gAS flow inStrUMentAtion
  • kiDney DiAlySiS MACHineS
  • oxygen ConCentrAtorS
  • PneUMAtiC ControlS
  • reSPirAtory MACHineS
  • SleeP APneA eqUiPMent
  • ventilAtorS
  • SPiroMeterS
  • neBUlizerS
  • HoSPitAl rooM Air PreSSUre inDUStriAl
  • BAroMetry
  • flow CAliBrAtorS
  • gAS CHroMAtogrAPHy
  • gAS flow inStrUMentAtion
  • HvAC
  • life SCienCeS
  • PneUMAtiC Control
  • vAv (vAriABle Air volUMe) Control
  • CloggeD HvAC filter DeteCtion
  • HvAC trAnSMitterS
  • inDoor Air qUAlity Potential Applications

table 1. Absolute Maximum ratings1 1Absolute maximum ratings are the extreme limits the device will withstand without damage. table 2. environmental Specifications 1Life may vary depending on specific application in which the sensor is utilized.

6 KPA | 1 PSI AND ABOVE)

  • Ensure liquid media is applied to Port 1 only; Port 2 is not compatible with liquids.
  • Ensure liquid media contains no particulates. All TruStability® sensors are dead-ended devices. Particulates can accumulate inside the sensor, causing damage or affecting sensor output.
  • Recommend that the sensor be positioned with Port 1 facing downwards; any particulates in the system are less likely to enter and settle within the pressure sensor if it is in this position.
  • Ensure liquid media does not create a residue when dried; build-up inside the sensor may affect sensor output. Rinsing of a dead-ended sensor is difficult and has limited effectiveness for removing residue.
  • Ensure liquid media are compatible with wetted materials. Non-compatible liquid media will degrade sensor performance and may lead to sensor failure. Failure to comply with these instructions may result in product damage.

table 4. Sensor Pressure types Absolute Output is proportional to the difference between applied pressure and a built-in vacuum reference. Differential Output is proportional to the difference between the pressures applied to each port (Port 1 – Port 2). Gage Output is proportional to the difference between applied pressure and atmospheric (ambient) pressure. table 3. wetted Materials1 1Contact Honeywell Customer Service for detailed material information.

table 5. Analog operating Specifications

3.3 Vdc

5.0 Vdc

1Sensors are either 3.3 Vdc or 5.0 Vdc based on the catalog listing selected. 2Ratiometricity of the sensor (the ability of the device output to scale to the supply voltage) is achieved within the specified operating voltage. 3The sensor is not reverse polarity protected. Incorrect application of supply voltage or ground to the wrong pin may cause electrical failure. 4Operating temperature range: The temperature range over which the sensor will produce an output proportional to pressure. all errors due to pressure non-linearity, pressure hysteresis, and non-repeatability. 7Orientation sensitivity: The maximum change in offset of the sensor due to a change in position or orientation relative to Earth’s gravitational field. 8Full Scale Span (FSS): The algebraic difference between the output signal measured at the maximum (Pmax.) and minimum (Pmin.) limits of the pressure range. 9Insignificant for pressure ranges above 40 mbar | 4 kPa | 20 inH2O.

table 7. Sensor output at Significant Percentages (Digital versions only) table 6. Digital operating Specifications 1Sensors are either 3.3 Vdc or 5.0 Vdc based on the catalog listing selected. 2Ratiometricity of the sensor (the ability of the device output to scale to the supply voltage) is achieved within the specified operating voltage. 3The sensor is not reverse polarity protected. Incorrect application of supply voltage or ground to the wrong pin may cause electrical failure. 4Operating temperature range: The temperature range over which the sensor will produce an output proportional to pressure. all errors due to pressure non-linearity, pressure hysteresis, and non-repeatability. 7Orientation sensitivity: The maximum change in offset of the sensor due to a change in position or orientation relative to Earth’s gravitational field. 8Full Scale Span (FSS): The algebraic difference between the output signal measured at the maximum (Pmax.) and minimum (Pmin.) limits of the pressure range. 9Insignificant for pressure ranges above 40 mbar | 4 kPa | 20 inH2O.

figure 2. transfer function limits1 1Transfer Function “A” is shown. See Figure 4 for other available transfer function options.

figure 3. total error Band values for full Scale Span Pressure ranges

figure 4. nomenclature and order guide special options,150 psi gage pressure range, analog output type, 10% to 90% of Vsupply transfer function, 3.3 Vdc supply voltage.

2 I2C, Address 0x28

3 I2C, Address 0x38

4 I2C, Address 0x48

5 I2C, Address 0x58

6 I2C, Address 0x68

7 I2C, Address 0x78

sensor is defined. See the graphical representations of the transfer function in the product datasheet, Figure 2. For other available transfer functions contact Honeywell Customer Service. 2SPI output function is not available in SIP package. 3Custom pressure ranges are available. Contact Honeywell Customer Service for more information. 4See the explanation of sensor pressure types in the product datasheet, Table 4. 5See the CAUTION in this document. 6Options T and V are only available on pressure ranges ±60 mbar to ±10 bar | ±6 kPa to ±1 MPa | ±1 psi to ±150 psi.

0 Pa to 250 Pa

0 Pa to 400 Pa

0 Pa to 600 Pa

the graphical representations of the transfer function in Figure 2. For other available transfer functions contact Honeywell Customer Service. 2SPI output function is not available in SIP package. 3Custom pressure ranges are available. Contact Honeywell Customer Service for more information. 4See the explanation of sensor pressure types in Table 4. 5See the CAUTION in this document. 6Options T and V are only available on pressure ranges ±60 mbar to ±10 bar | ±6 kPa to ±1 MPa | ±1 psi to ±150 psi.

table 8. Pressure range Specifications for ±1.6 mbar to ±10 bar exposure to any pressure beyond the burst pressure. span, pressure non-linearity, pressure hysteresis, repeatability, thermal effect on offset, thermal effect on span, and thermal hysteresis (see Figure 1). for a minimum of 24 hours after an auto-zero operation. Includes all errors due to full scale span, pressure non-linearity, pressure hysteresis, and thermal effect on span.

table 9. Pressure range Specifications for ±160 Pa to ±1 MPa exposure to any pressure beyond the burst pressure. span, pressure non-linearity, pressure hysteresis, repeatability, thermal effect on offset, thermal effect on span, and thermal hysteresis (see Figure 1). for a minimum of 24 hours after an auto-zero operation. Includes all errors due to full scale span, pressure non-linearity, pressure hysteresis, and thermal effect on span.

table 10. Pressure range Specifications for 0.5 inH2o to 150 psi Pmax.) in which case the sensor may not provide a valid output until pressure is returned to within the operating pressure range. Tested to 1 million cycles, minimum. exposure to any pressure beyond the burst pressure. for a minimum of 24 hours after an auto-zero operation. Includes all errors due to full scale span, pressure non-linearity, pressure hysteresis, and thermal effect on span.

figure 5. All Available Standard Configurations (Dimensional drawings on pages noted below.)

figure 5. All Available Standard Configurations (Continued; dimensional drawings on pages noted below.)

figure 6. DiP Package Dimensional Drawings (for reference only: mm [in].)

figure 6. DiP Package Dimensional Drawings (continued)

figure 6. DiP Package Dimensional Drawings (continued)

8 X 0,46

8 X 0,461

figure 7. SMt Package Dimensional Drawings (for reference only: mm [in].)

figure 7. SMt Package Dimensional Drawings (continued)

figure 7. SMt Package Dimensional Drawings (continued)

8 X 1,28

figure 8. SiP Package Dimensional Drawings (for reference only: mm [in].) figure 7. SMt Package Dimensional Drawings (continued)

figure 8. SiP Package Dimensional Drawings (continued)

figure 8. SiP Package Dimensional Drawings (continued)

figure 8. SiP Package Dimensional Drawings (continued)

figure 8. SiP Package Dimensional Drawings (continued)

4 X 0,51

figure 8. SiP Package Dimensional Drawings (continued)

table 11. Pinouts for DiP and SMt Packages table 12. Pinouts for SiP Packages figure 9. recommended PCB Pad layouts

table 13. truStability® Board Mount Pressure Sensors Portfolio overview down to ±1% Full Scale Span max. down to ±2% Full Scale Span max.

sensing.honeywell.com ADDitionAl inforMAtion The following associated literature is available at sensing.honeywell.com:

  • Product line guide
  • Product range guide
  • Product nomenclature tree
  • Installation instructions
  • Application information
  • Technical notes: - I2C Communications with Honeywell Digital Output Pressure Sensors - SPI Communications with Honeywell Digital Output Pressure Sensors wArrAnty/reMeDy Honeywell warrants goods of its manufacture as being free of defective materials and faulty workmanship. Honeywell’s standard product warranty applies unless agreed to otherwise by Honeywell in writing; please refer to your order acknowledgement or consult your local sales office for specific warranty details. If warranted goods are returned to Honeywell during the period of coverage, Honeywell will repair or replace, at its option, without charge those items it finds defective. t he foregoing is buyer’s sole remedy and is in lieu of all other warranties, expressed or implied, including those of merchantability and fitness for a particular purpose. i n no event shall Honeywell be liable for consequential, special, or indirect damages. While we provide application assistance personally, through our literature and the Honeywell website, it is up to the customer to determine the suitability of the product in the application. Specifications may change without notice. The information we supply is believed to be accurate and reliable as of this printing. However, we assume no responsibility for its use. WARNING PERSONAL INJURY DO NOT USE these products as safety or emergency stop devices or in any other application where failure of the product could result in personal injury. Failure to comply with these instructions could result in death or serious injury. WARNING MISUSE OF DOCUMENTATION
  • The information presented in this product sheet is for reference only. Do not use this document as a product installation guide.
  • Complete installation, operation, and maintenance information is provided in the instructions supplied with each product. Failure to comply with these instructions could result in death or serious injury.

Honeywell serves its customers through a worldwide network of sales offices, representatives and distributors. For application assistance, current specifications, pricing or name of the nearest Authorized Distributor, contact your local sales office or email us at info.sc@honeywell.com . Visit us on the Web at sensing.honeywell.com Phone and Fax: Asia Pacific +65 6355-2828 +65 6445-3033 Fax Europe +44 (0) 1698 481481 +44 (0) 1698 481676 Fax Latin America +1-305-805-8188 +1-305-883-8257 Fax USA/Canada +1-800-537-6945 +1-815-235-6847 +1-815-235-6545 Fax Sensing and Control Honeywell

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