NSCSNBN015PAUNV HONEYWELL-ACC [Honeywell Accelerometers], NSCSNBN015PAUNV Datasheet - Page 3

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NSCSNBN015PAUNV

Manufacturer Part Number
NSCSNBN015PAUNV
Description
Manufacturer
HONEYWELL-ACC [Honeywell Accelerometers]
Datasheet
Table 2. Operating Specifications
Table 3. Environmental Specifications
Table 4. Wetted Materials
Notes:
1.
2.
3.
4.
5.
6.
7.
8.
Parameter
Supply voltage (V
Supply current (at 5.0 Vdc supply)
Specified temperature range
Startup time
Accuracy
Parameter
Humidity
Vibration
Shock
Life
Solder reflow
Parameter
Covers
Substrate
Adhesives
Electronic components
CAUTION
PRODUCT DAMAGE
Failure to comply with these instructions may result in product damage.
Absolute maximum ratings are the extreme limits the device will withstand without damage.
Ratiometricity of the sensor (the ability of the device output to scale to the supply voltage) is achieved within the specified operating voltage.
Incorrect application of supply voltage or ground to the wrong pin may cause electrical failure.
The specified temperature range is the temperature range over which the sensor will produce an output proportional to pressure within the
specified performance limits.
Accuracy: The maximum deviation in output from a Best Fit Straight Line (BFSL) fitted to the output measured over the pressure range at
25 °C [77 °F]. Includes all errors due to pressure non-linearity, pressure hysteresis, and non-repeatability.
Full Scale Span (FSS) is the algebraic difference between the output signal measured at the maximum (P
the pressure range. (See Figure 1 for ranges.)
Life may vary depending on specific application in which sensor is utilized.
Contact Honeywell Customer Service for detailed material information.
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.
7
5
supply
)
2
8
4
Port 1 (Pressure Port)
high temperature polyamide
alumina ceramic
epoxy, RTV
ceramic, silicon
Characteristic
0% to 95% RH, non-condensing
MIL-STD-202F, Curve AK (20.7 g random)
MIL-STD-202F, Method 213B, Condition F
1 million pressure cycles minimum
J-STD-020-C
-40 [-40]
Min.
1.8
Typ.
5.0
1.5
3
Port 2 (Reference Port)
high temperature polyamide
alumina ceramic
epoxy, RTV
silicon, glass, gold, solder
Honeywell Sensing and Control
85 [185]
max.
Max.
12.0
0.25
2
5
) and minimum (P
%FSS BFSL
min.
C [ F]
Unit
Vdc
mA
ms
) limits of
6
3