Honeywell TruStability HSC Series Pressure Sensors
Product Overview
The Honeywell TruStability HSC Series offers high-accuracy, compensated, and amplified board mount pressure sensors with ratiometric analog or digital output. Designed for a wide range of pressure measurements from 1.6 mbar to 10 bar (160 Pa to 1 MPa, 0.5 in H2O to 150 psi), these sensors are fully calibrated and temperature compensated for offset, sensitivity, and non-linearity via an on-board ASIC. They are ideal for applications requiring stability, reliability, and industry-leading accuracy down to 0.25 %FSS BFSL. Available in absolute, gage, and differential pressure types, the HSC Series is suitable for non-corrosive, non-ionic gases and, with specific options, non-corrosive, non-ionic liquids. Applications span medical devices like ventilators and oxygen concentrators, to industrial uses such as HVAC systems and barometry.
Product Attributes
- Brand: Honeywell
- Series: TruStability HSC
- Technology: Piezoresistive Silicon Ceramic (HSC)
- Certifications: ISO 9001 standards, Meets IPC/JEDEC J-STD-020E moisture sensitivity level 1 requirements, REACH and RoHS compliant
- Wetted Materials: High temperature polyamide (ports/covers), Alumina ceramic (substrate), Epoxy, silicone (adhesives), Ceramic, silicon, glass, solder (electronic components)
Technical Specifications
| Characteristic | Value | Unit |
|---|---|---|
| Pressure Measurement Types | Absolute, Gage, Differential | |
| Pressure Ranges | 1.6 mbar to 10 bar | 160 Pa to 1 MPa | 0.5 in H2O to 150 psi | |
| Compensated Temperature Range | 0 to 50 | C [F] |
| Operating Temperature Range | -20 to 85 | C [F] |
| Supply Voltage (Vsupply) | 3.0 to 3.6 (3.3 Vdc) or 4.75 to 5.25 (5.0 Vdc) | Vdc |
| Supply Current (Typical) | 2.1 to 3.5 (3.3 Vdc) or 2.7 to 4.6 (5.0 Vdc) | mA |
| Accuracy | 0.25 %FSS BFSL | |
| Total Error Band (TEB) | As specified in tables (e.g., 1% for some ranges) | %FSS |
| Output | Ratiometric Analog or 14-bit Digital (I2C or SPI) | |
| Digital Output Resolution | 12 bits (min. sensor resolution) | |
| Response Time (Analog) | 1 | ms |
| Response Time (Digital) | 0.46 | ms |
| Package Size | 10 mm x 10 mm [0.39 in x 0.39 in] | |
| ESD Susceptibility (HBM) | 3 | kV |
| Storage Temperature | -40 to 85 | C [F] |
| Working Pressure (Example: 1.6 bar diff) | -1.6 to 1.6 | bar |
| Over Pressure (Example: 1.6 bar diff) | 8 | bar |
| Burst Pressure (Example: 1.6 bar diff) | 16 | bar |
| Common Mode Pressure (Example: 1 bar abs) | 4 | bar |
| Moisture Sensitivity Level | 1 | IPC/JEDEC J-STD-020E |
| Power Consumption (Typ.) | < 10 | mW |
Available Packages
- DIP (Dual Inline Pin)
- SMT (Surface Mount Technology)
- SIP (Single In-Line Pin)
Available Pressure Ports
- No ports (NN)
- Dual axial barbed ports, opposite sides (AA)
- Single axial barbed port (AN)
- Single axial barbless port (LN)
- Fastener mount, dual axial barbed ports, opposite sides (FF)
- Fastener mount, single axial barbed port (FN)
- Ribbed fastener mount, single axial barbed port (GN)
- Fastener mount, dual axial ports, same side (NB)
- Single radial barbed port (RN)
- Dual radial barbed ports, same side (RR)
- Dual radial barbed ports, opposite sides (DR)
- Single radial barbless port (JN)
- Dual radial barbless ports, same side (JJ)
- Fastener mount dual radial barbed ports, same side (HH)
- Fastener mount single radial barbed port (HN)
- Manifold mount, outer diameter seal (MN)
- Manifold mount, inner diameter seal (SN)
Available Options
- Dry gases only, no diagnostics (N)
- Dry gases only, diagnostics on (D)
- Liquid media on Port 1, no diagnostics (T)
- Liquid media on Port 1, diagnostics on (V)
Available Output Types
- Analog (A)
- SPI (S)
- I2C (2, 3, 4, 5, 6, 7)
Available Supply Voltages
- 3.3 Vdc (3)
- 5.0 Vdc (5)
Available Transfer Functions
- A: 10% to 90% of Vsupply (analog), 214 counts (digital)
- B: 5% to 95% of Vsupply (analog), 214 counts (digital)
- C: 5% to 85% of Vsupply (analog), 214 counts (digital)
- F: 4% to 94% of Vsupply (analog), 214 counts (digital)
2410311045_Honeywell-HSCMRRV001PD2A3_C21442059.pdf
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