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XPC0.3DH

Description
XPC DIFF GAUGE VACCUM GAUGE
CategoryThe sensor   
File Size181KB,8 Pages
ManufacturerHoneywell
Websitehttp://www.ssec.honeywell.com/
Environmental Compliance
Download Datasheet Parametric View All

XPC0.3DH Overview

XPC DIFF GAUGE VACCUM GAUGE

XPC0.3DH Parametric

Parameter NameAttribute value
pressure typedifference
work pressure±0.3 PSI(±2.07 kPa)
Output typeWheatstone bridge
output0 mV ~ 20 mV(12V)
Accuracy±0.5%
Voltage - Power3 V ~ 16 V
Port size-
Port styleNo port
characteristicTemperature compensation
maximum pressure±3 PSI(±20.68 kPa)
Operating temperature-25°C ~ 85°C
Package/casing4-SIP module
Supplier device packaging-

XPC0.3DH Preview

Board Mount Pressure
Sensors Line Guide
The pressure is on. The answer is here.
No matter the need,
Honeywell has the microstructure, pressure sensor solution.
Our sensing element design consists of four piezoresistors
on a chemically etched silicon diaphragm. A pressure change
will cause a strain in the diaphragm and the buried resistors.
The resistor values will change in proportion to the stress
applied, which produces an electrical output. You will find our
components performing in potential applications including
dialysis equipment, blood analysis, centrofusion and oxygen and
nitrogen gas distribution, HVAC devices, data storage, process
controls, industrial machinery, pumps, and robotics. Honeywell is
always working harder, no matter the situation. Or the pressure.
FEATURES
TruStability™ RSC Series.
Features:
Enhanced performance
• Proprietary Honeywell technology
• Cost-effective, high volume solution
with variety of options • High burst and
working pressures • Enhanced reliability
• Easy to design in • Meets IPC/JEDEC
J-STD-020D.1 Moisture Sensitivity Level
1 requirements • Energy efficient
Benefits:
Output accelerates
performance through reduced conversion
requirements and direct interface to
microprocessors. High sensitivity with
high burst and overpressure while
providing industry-leading stability
(performance factors difficult to achieve
in the same sensor) provide flexibility
in implementation and minimize
requirements for protecting the sensor
without sacrificing ability to sense very
small changes in pressure. High burst
pressures promote system reliability,
minimize downtime, and can simplify
design; high working pressures allow
ultra-low sensors to be used continuously
above the calibrated pressure range.
Package is small when compared to
many similar sensors, occupying less area
on the PCB. Port and housing options
simplify integration. Wide pressure range
simplifies use. IPC/JEDEC J-STD-020D.1
Moisture Sensitivity Level 1 requirements
allows avoidance of thermal and
mechanical damage during solder reflow
attachment and/or repair that lesser rated
sensors would incur, allows unlimited
floor life when stored as specified
(simplifying storage and reducing scrap),
eliminates lengthy bakes prior to reflow,
and allows for lean manufacturing
due to stability and usability shortly
after reflow. Energy efficiency reduces
system power requirements and enables
extended battery life. Potential medical
applications include airflow monitors,
anesthesia machines, blood analysis
machines, gas chromatography, gas
flow instrumentation, hospital room
air pressure, kidney dialysis machines,
nebulizers, pneumatic controls,
respiratory machines, sleep apnea
equipment, spirometers, and ventilators.
Potential industrial applications
include barometry, drones, flow
calibrators, gas chromatography, gas
flow instrumentation, HVAC clogged
filter detection, HVAC systems, HVAC
transmitters, indoor air quality, life
sciences, pneumatic control, VAV (Variable
Air Volume) control, and weather balloons.
TruStability™ HSC Series.
Features:
Proprietary Honeywell
technology • Industry-leading long-term
stability, Total Error Band, and accuracy
• High burst pressures • High working
pressure ranges • Industry-leading
flexibility • Excellent repeatability
• Onboard signal conditioning • Wide
variety of pressure ranges • Meets IPC/
JEDEC J-STD-020D.1 Moisture Sensitivity
Level 1 requirements • Insensitive
to mounting orientation • Custom
calibration • Insensitive to vibration
• Internal diagnostic functions • Energy
efficient • I
2
C- or SPI-compatible digital
output or analog output • Small size
• RoHS compliant • Protected by multiple
global patents • Intended for use with
non-corrosive, non-ionic working fluids
Benefits:
Proprietary Honeywell
technology combines high sensitivity with
high overpressure and burst pressure
to give the customer more flexibility
in sensor implementation and reduce
the customer design requirements for
protecting the sensor without sacrificing
the ability to sense very small changes
in pressure. Industry-leading long-term
stability minimizes system calibration
needs, maximizes system performance,
and helps support system uptime by
sensing.honeywell.com 1 page 5
continued on
Working better under
pressure.
The human body is a
supremely sensitive
mechanism, requiring equally
perceptive observation.
Honeywell SIoT offers a line
of pressure sensors equal to
every task — including sensors
that measure the amount
of pressure delivered to the
human body.
From medical applications
to industrial needs to any
industry, we’ve got the right
solution. Our categories of
pressure sensor measurement
include absolute, differential,
gage or vacuum gage — with
unamplified or amplified
sensors covering wide
pressure ranges. You’ll also
find a variety of mounting
and package styles, digital
output, small size, reduced
cost, enhanced reliability,
enhanced repeatability and
accuracy under extreme
conditions, enhanced
operating characteristics
between sensors, and
interchangeability without
recalibration.
Board Mount
Pressure Sensors
TruStability™
RSC Series
amplified
±1.6 mbar to ±10 mbar |
±160 Pa to ±1 MPa |
±0.5 inH
2
O to ±150 psi
absolute, differential, gage
24-bit digital (SPI)
yes
yes
-40°C to 85°C [-40°F to 185°F]
(compensated)
TruStability™
HSC Series
amplified
±1.6 mbar to ±10 mbar |
±160 Pa to ±1 MPa |
±0.5 inH
2
O to ±150 psi
absolute, differential, gage
digital (I
2
C, SPI), analog (Vdc)
yes
yes
0°C to 50°C [32°F to 120°F]
(compensated)
Signal conditioning
Pressure range
Device type
Output
Calibrated
Temperature comp.
Operating temp. range
Total Error Band
Accuracy
Mounting options
as low as ±0.25 %FSS depending ±1 %FSS to ±3 %FSS
on pressure range (after auto zero) depending on pressure range
±0.1 %FSS BFSL
DIP, SMT
±0.25 %FSS BFSL
DIP, SIP, SMT
Board Mount
Pressure Sensors
Basic
ABP Series
Signal conditioning
Pressure range
Device type
Output
Calibrated
Compensated
Operating temp.
range
Total Error Band
Accuracy
Mounting options
amplified
±60 mbar to ±10 bar |
±6 kPa to ±1 MPa |
±1 psi to ±150 psi
gage, differential
digital (I
2
C, SPI),
ratiometric analog
yes
yes
0°C to 50°C [32°F to 122°F]
(compensated)
±1.5 %FSS
±0.25 %FSS BFSL
DIP, SMT, leadless SMT
Basic
TBP Series
unamplified
±60 mbar to ±10 bar |
±6 kPa to ±1 MPa |
±1 psi to ±150 psi
gage
analog (mV)
yes
yes
0°C to 85°C [32°F to 185°F]
(compensated)
-
±0.25 %FSS
DIP, SMT, leadless SMT
2
sensing.honeywell.com
Board Mount
Pressure Sensors
TruStability™
SSC Series
amplified
±1.6 mbar to ±10 mbar |
±160 Pa to ±1 MPa |
±0.5 inH
2
O to ±150 psi
absolute, differential, gage
digital (I
2
C, SPI), analog (Vdc)
yes
yes
-20°C to 85°C [-4°F to 185°F]
(compensated)
±2 %FSS to ±5 %FSS
depending on pressure range
±0.25 %FSS BFSL
DIP, SIP, SMT
TruStability™
TSC Series
unamplified
±60 mbar to ±10 bar |
±6 kPa to ±1 MPa |
±1 psi to ±150 psi
differential, gage
analog (mV)
yes
yes
0°C to 85°C [32°F to 185°F]
(compensated)
-
0.25 %FSS BFSL
DIP, SIP, SMT
TruStability™
NSC Series
unamplified
±2.5 mbar to ±10 mbar |
±250 Pa to ±1MPa |
±1 inH
2
O to ±150 psi
absolute, differential, gage
analog (mV)
no
no
-40°C to 85°C [-40°F to 185°F]
-
±0.25 %FSS BFSL
DIP, SIP, SMT
Signal conditioning
Pressure range
Device type
Output
Calibrated
Temperature comp.
Operating temperature
range
Total Error Band
Accuracy
Mounting options
Board Mount
Pressure Sensors
Basic
NBP Series
unamplified
±60 mbar to ±10 bar |
±6 kPa to ±1 MPa |
±1 psi to ±150 psi
absolute, gage
analog (mV)
no
no
-40°C to 125°C [-40°F to 257°F]
-
±0.25 %FSS
DIP, SMT, leadless SMT
MicroPressure
MPR Series
amplified
60 mbar to 2.5 bar |
6 kPa to 250 kPa |
1 psi to 30 psi
absolute, gage
digital (I
2
C, SPI)
yes
yes
0°C to 50°C [32°F to 122°F]
(compensated)
as low as ±1.5 %FSS after customer auto-zero
±0.25 %FSS BFSL
leadless SMT
Signal conditioning
Pressure range
Device type
Output
Calibrated
Compensated
Operating temperature
range
Total Error Band
Accuracy
Mounting options
sensing.honeywell.com
3
Board Mount
Pressure Sensors
24PC Series
unamplified
0.5 psi to 250 psi (SIP, DIP)
1 psi to 15 psi (SMT)
absolute, differential, wet-wet differential, gage
analog (mV)
no
no
-40°C to 85°C [-40°F to 185°F]
-
linearity and hysteresis 0.5% typ.
DIP, SIP, SMT
26PC Series
unamplified
1 psi to 250 psi (SIP, DIP)
1 psi to 15 psi (SMT)
differential, wet-wet differential, gage
analog (mV)
yes
yes
0°C to 50°C [32°F to 122°F] (compensated)
-
linearity and hysteresis 0.25% typ.
DIP, SIP, SMT
Signal conditioning
Low Pressure
Sensors
Pressure range
Device type
Output
Calibrated
Compensated
Operating temperature
range
Total error band
Accuracy
Mounting options
Board Mount
Pressure Sensors
24PC Flow-Through Series
unamplified
1 psi to 100 psi
flow-through gage
analog (mV)
no
no
-40°C to 85°C [-40°F to 185°F]
-
linearity and hysteresis 0.75% typ.
SIP, DIP
26PC Flow-Through Series
unamplified
1 psi to 100 psi
flow-through gage
analog (mV)
yes
yes
0°C to 50°C [32°F to 122°F]
(compensated)
-
linearity and hysteresis 0.75% typ.
SIP, DIP
Signal conditioning
Pressure range
Device type
Output
Calibrated
Compensated
Operating temperature
range
Total error band
Accuracy
Mounting options
4
sensing.honeywell.com
eliminating the need to service or
replace the sensor during its application
life. Industry-leading Total Error Band
provides the sensor’s true accuracy
over a compensated temperature
range of 0°C to 50°C [32°F to 122°F],
eliminating individual sensor testing
and calibration (which can increase
manufacturing time and process)
supporting system accuracy and warranty
requirements, helping optimize system
uptime, and providing excellent sensor
interchangeability. Industry-leading
accuracy reduces software needed to
correct system inaccuracies, minimizing
system design time, supporting system
accuracy and warranty requirements,
and helping to optimize system uptime.
High burst pressures allow the sensor to
endure a wide range of conditions while
maintaining a high level of sensitivity
which measures even the smallest
change in pressure, simplifying the
design process. High working pressure
ranges allow the sensors to be used
continuously well above the calibrated
pressure range. 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. Onboard signal conditioning
typically allows for the removal of signal
conditioning components from the
PCB, reducing costs and simplifying
production processes. Meets IPC/JEDEC
J-STD-020D.1 Moisture Sensitivity Level
1 requirements which allows the customer
to avoid the thermal and mechanical
damage during solder reflow attachment
and/or repair that lesser rated products
would incur, and allows unlimited floor
life when stored as specified (<30 ºC/85
%RH), simplifying storage and reducing
scrap. Customers may position the
sensor in the most optimal point in the
system, eliminating concern for positional
effects. Reduced susceptibility to
application-specific vibration that occurs
with changes in pressure minimizes
inaccurate pressure readings. Custom
calibration typically allows for the removal
of additional components associated
with signal conditioning from the PCB,
reducing PCB size as well as costs often
associated with those components.
Internal diagnostic functions increase
system reliability. Extremely low power
consumption (less than 10 mW, typ.),
provides extended battery life, and
promotes energy efficiency. I
2
C- 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 or
microcontrollers; analog output also
available. Miniature 10 mm x 10 mm
[0.39 in x 0.39 in] package is very small
when compared to most board mount
pressure sensors. Potential applications
include medical (ventilators, anesthesia
machines, spirometers, nebulizers,
hospital room air pressure) and industrial
(VAV (Variable Air Volume) control, static
duct pressure, clogged HVAC (Heating,
Ventilation, and Air Conditioning) filter
detection, HVAC transmitters indoor air
quality).
TruStability™ SSC Series.
Features:
Proprietary Honeywell
technology • Industry-leading long-term
stability, Total Error Band, and accuracy
• High burst pressures • High working
pressure ranges • Industry-leading
flexibility • Excellent repeatability
• Onboard signal conditioning • Wide
variety of pressure ranges • Meets IPC/
JEDEC J-STD-020D.1 Moisture Sensitivity
Level 1 requirements • Insensitive
to mounting orientation • Custom
calibration • Insensitive to vibration
• Internal diagnostic functions • Energy
efficient • I
2
C- or SPI-compatible digital
output or analog output • Small size •
RoHS compliant • Protected by multiple
global patents • Intended for use with
non-corrosive, non-ionic working fluids
Benefits:
Proprietary Honeywell
technology combines high sensitivity with
high overpressure and burst pressure
to give the customer more flexibility
in sensor implementation and reduce
the customer design requirements for
protecting the sensor without sacrificing
the ability to sense very small changes
in pressure. Industry-leading long-term
stability minimizes system calibration
needs, maximizes system performance,
and helps support system uptime
by eliminating the need to service or
replace the sensor during its application
life. Industry-leading Total Error Band
provides the sensor’s true accuracy
over a compensated temperature range
of -20°C to 85°C [-4°F to 185°F],
eliminating individual sensor testing
and calibration (which can increase
manufacturing time and process)
supporting system accuracy and warranty
requirements, helping optimize system
uptime, and providing excellent sensor
interchangeability. Industry-leading
accuracy reduces software needed to
correct system inaccuracies, minimizing
system design time, supporting system
accuracy and warranty requirements,
and helping to optimize system uptime.
High burst pressures allow the sensor to
endure a wide range of conditions while
maintaining a high level of sensitivity
which measures even the smallest
change in pressure, simplifying the
design process. High working pressure
ranges allow the sensors to be used
continuously well above the calibrated
pressure range. 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. Onboard signal conditioning
typically allows for the removal of signal
conditioning components from the
PCB, reducing costs and simplifying
production processes. Meets IPC/JEDEC
J-STD-020D.1 Moisture Sensitivity Level
1 requirements which allows the customer
to avoid the thermal and mechanical
damage during solder reflow attachment
and/or repair that lesser rated products
would incur, and allows unlimited floor
life when stored as specified (<30 ºC/85
%RH), simplifying storage and reducing
scrap. Customers may position the
sensor in the most optimal point in the
system, eliminating concern for positional
effects. Reduced susceptibility to
application-specific vibration that occurs
with changes in pressure minimizes
inaccurate pressure readings. Custom
calibration typically allows for the removal
of additional components associated
with signal conditioning from the PCB,
sensing.honeywell.com
5
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