Details, datasheet, quote on part number: HSCMRRN060MGSA3
PartHSCMRRN060MGSA3
CategorySensors, Transducers
TitlePressure Sensors, Transducers 0 ~ 60 mbar PSI SPI
Description
CompanyHoneywell Sensing and Control
DatasheetDownload HSCMRRN060MGSA3 datasheet
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Specifications 
Operating Pressure0 ~ 60 mbar
OutputSPI
Package / Case8-SMD, Dual Ports, Same side
Pressure TypeGauge
Port SizeMale, 0.076" (1.93mm) Tube, Dual
Termination StylePCB
Voltage - Supply3 V ~ 3.6 V
Operating Temperature-20C ~ 85C
Lead Free StatusLead Free
RoHS StatusRoHS Compliant

 

Features, Applications

DESCRIPTION The TruStability High Accuracy Silicon Ceramic (HSC) Series is a piezoresistive silicon pressure sensor offering a 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 2 kHz. The HSC Series is calibrated over the temperature range to 122 F]. The sensor is characterized for operation from a single power supply of either 3.3 Vdc or 5.0 Vdc. FEATURES Industry-leading long-term stability Extremely tight accuracy of 0.25% FSS BFSL (Full Scale Span Best Fit Straight Line) Total error band of 1% full scale span maximum Modular and flexible design offers customers a variety of package styles and options, all with the same industryleading performance specifications Miniature x 0.39 in] package Low operating voltage Extremely low power consumption C- or SPI-compatible 14-bit digital output (min. 12-bit sensor resolution)

These sensors measure absolute, differential, and gage pressures. The absolute versions have an internal vacuum reference and an output value proportional to absolute pressure. Differential versions allow application of pressure to either side of the sensing diaphragm. Gage versions are referenced to atmospheric pressure and provide an output proportional to pressure variations from atmosphere. The TruStability pressure sensors are intended for use with non-corrosive, non-ionic gases, such as air and other dry gases. An available option extends the performance of these sensors to non-corrosive, non-ionic liquids. All products are designed and manufactured according to ISO 9001 standards.

Precision ASIC conditioning and temperature compensated over 122 F] temperature range RoHS compliant Virtually insensitive to mounting orientation Internal diagnostic functions increase system reliability Also available with analog output Absolute, differential and gage types Pressure ranges from 1 psi to 150 psi (60 mbar to 10 bar) Custom calibration available Various pressure port options Liquid media option

POTENTIAL APPLICATIONS 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 Table 1. Absolute Maximum Ratings Parameter Supply voltage (Vsupply) Voltage on any pin Digital interface clock frequency: 2 IC SPI ESD susceptibility (human body model) Storage temperature Soldering time and temperature: Lead solder temperature (SIP, DIP) Peak reflow temperature (SMT) Table 2. Operating Specifications Parameter 2 Supply voltage (Vsupply) : 3.3 Vdc 5.0 Vdc

Industrial: Barometry Flow calibrators Gas chromatography Gas flow instrumentation HVAC Life sciences Pneumatic controls

Supply current: 3.3 Vdc supply 5.0 Vdc supply 4 Compensated temperature range 5 Operating temperature range Startup time (power up to data ready) Response time I C voltage level low I C voltage level high Pull up on SDA and SCL 6 Accuracy 7 Total error band Output resolution

F] ms Vsupply kOhm %FSS BFSL 8 %FSS bits

Table 3. Environmental Specifications Parameter Humidity: Dry gases only (See "Options N and D" in Figure 1.) Liquid media (See "Options T and V" in Figure 1.) Vibration Shock 9 Life Solder reflow Table 4. Wetted Materials Parameter Covers Substrate Adhesives Electronic components

Characteristic to 95% RH, non-condensing 100% condensing or direct liquid media on Port 1 MIL-STD-202F, Curve (20.7 g random) MIL-STD-202F, Method 213B, Condition F 1 million cycles minimum J-STD-020-C

Port 1 (Pressure Port) high temperature polyamide alumina ceramic epoxy, silicone ceramic, glass, solder, silicon

Port 2 (Reference Port) high temperature polyamide alumina ceramic epoxy, silicone silicon, glass, gold, solder

Notes: 1. Absolute maximum ratings are the extreme limits the device will withstand without damage. 2. Ratiometricity of the sensor (the ability of the digital device to maintain performance parameters independent of supply voltage) is achieved within the specified operating voltage for each option. 3. The sensor is not reverse polarity protected. Incorrect application of supply voltage or ground to the wrong pin may cause electrical failure. 4. The compensated temperature range is the temperature range over which the sensor will produce an output proportional to pressure within the specified performance limits. 5. The operating temperature range is the temperature range over which the sensor will produce an output proportional to pressure but may not remain within the specified performance limits. 6. Accuracy: The maximum deviation in output from a Best Fit Straight Line (BFSL) fitted to the output measured over the pressure range C [77 F]. Includes all errors due to pressure non-linearity, pressure hysteresis, and non-repeatability. 7. Total Error Band: The maximum deviation from the ideal transfer function over the entire compensated temperature and pressure range. Includes all errors due to offset, full scale span, pressure non-linearity, pressure hysteresis, repeatability, thermal effect on offset, thermal effect on span, and thermal hysteresis. 8. Full Scale Span (FSS) is the algebraic difference between the output signal measured at the maximum (Pmax.) and minimum (Pmin.) limits of the pressure range. (See Figure 1 for ranges.) 9. Life may vary depending on specific application in which sensor is utilized. 10. Contact Honeywell Customer Service for detailed material information.

PRODUCT DAMAGE 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 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.


 

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