Datasheet
Basic Board Mount
Pressure Sensors
NBP Series, Uncompensated/Unamplified
60 mbar to 10 bar | 1 psi to 150 psi
Millivolt Analog Output
2sensing.honeywell.com
Basic Board Mount Pressure Sensors
Honeywell’s Basic Board Mount Pressure Sensors: NBP Series–Uncompensated/Unamplified are low pressure sensors
designed for customers who require a simple, cost-effective, basic performance, mV output, unamplified, uncompensated,
high quality, infinite resolution solution for medical and industrial applications.
These unamplified and uncompensated sensors offer infinite resolution of the pressure signal. They will operate as specified
from -40 °C to 125 °C [-40 °F to 257 °F].
The NBP Series is often ideal for those customers who want to do their own compensation, calibration, and amplification in
order to make use of the maximum resolution of the bare sensor output, leveraging any algorithm needed for the application.
Additionally, the NBP Series offers several package styles and mounting options, making it easier for device manufacturers to
integrate the product into their applications.
The NBP Series measures absolute or gage 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.
The NBP Series sensors are intended for use with non-corrosive, non-ionic gases, such as air and other dry gases and for
non-corrosive, non-ionic liquids. All products are designed and manufactured according to ISO 9001.
What makes our sensors better?
Quality: Six Sigma standards provide
the highest level of quality, accuracy,
performance and consistency
Reliability: Dependable supply chain
Delivery: Fast response to orders and
sample requests
Cost EffECtivE • HigH QuALity • HigH RELiABiLity
DIP-AN DIP-LN
DIP-PN
Leadless
SMT-LN
SMT-AN SMT-LN
SMT-PN
Leadless
SMT-PN
Leadless
SMT-AN
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COST-EFFECTIVE
These devices provide a cost-effective pressure sensing solution with a variety of
options that help customers to meet their specific application needs
SMALL SIZE
Package size (as small as 7 mm x 7 mm [0.276 in x 0.276 in]) is very small when
compared to most board mount pressure sensors, occupying less space on
the PCB and typically allowing for easy placement on crowded PCBs or in small
devices
DURABLE
Many features allow for use in tough environments, including:
Wide operating temperature range of -40 °C to 125 °C [-40 °F to 257 °F]
allows for use in many applications
Media compatibility options:
• Non-gel coating: The input port is limited to non-corrosive, non-ionic media
such as dry air and gases and should not be exposed to condensation; the
gases are limited to media that are compatible with high temperature polyamide,
silicone, alumina ceramic, silicon, gold, and glass
• Gel coating: Uses the same materials in the wetted media path but is
protected from condensation by a silicone-based gel coating; allows use in
applications where condensation can occur
ISO 9001 compliance
FLEXIBLE
Numerous package styles, pressure ranges, housings, gel coating, and porting
options simplify integration into the device manufacturer’s application
ROBUST
Reflow mounting J-STD-020D, MSL 1 and rapid stabilization after reflow soldering
allow calibration immediately after mounting
Cost-effective sensing solution.
Frees up PCB space, reduces costs.
Choose options to best fit the application.
Excels in tough environments with dry and wetted media.
Features
and Benefits
4sensing.honeywell.com
Features
and Benefits
HONEYWELL BRAND
Manufacturing excellence: Honeywell has more than 100 years of
manufacturing and engineering excellence
Fast Request for Quotes (RFQs): Responding quickly to your RFQs and
product sample needs is a hallmark of Honeywell. Our experienced engineers
understand the importance of timely quotes. And because Honeywell is a
manufacturer, you can depend on a quick response to your prototype needs
Fast response for samples: Dedicated teams and manufacturing processes
help ensure that product samples are shipped quickly and delivered in time to
support your development cycle
Reliable supply chain: Honeywell’s effective inventory management and
dependable supply chain is there throughout your product life cycle
Designed to Six Sigma standards: Six Sigma standards provide the highest
level of product quality, performance, and consistency. Six Sigma provides
confidence that the sensor will perform to specification. Many competitive
products are produced to lower Sigma tolerances, which may result in some
products not performing to the specification to which they were designed
Supporting documentation: Honeywell’s website provides numerous technical
materials to assist you in your application needs
High quality, high resolution solution.
5
sensing.honeywell.com
Potential Applications
MEDICAL
• Hospital beds
• oxygen concentrators
• Wound tHerapy
blood pressure monitoring
INDUSTRIAL
HVAC TRANSMITTERS
• air movement control
• environmental control
• leak detection
• industrial controls
• pneumatic controls
• otHer commercial applications
6sensing.honeywell.com
NBP Series, Uncompensated/Unamplified
Figure 1. Nomenclature and Order Guide
NBP D AN N 150PG U N
V
U
Series
Output
NBP
Unamplified
For example, NBPDANN150PGUNV denes an NBP Series Basic Board Mount Pressure Sensor, DIP package, AN pressure
port, no gel coating in media path,150 psi gage pressure range, unamplied, uncompensated, constant supply voltage.
D
L
DIP (Dual Inline Pin)
Leadless SMT (Surface Mount Technology)
Package
MSMT (Surface Mount Technology)
Gel Coating Option
N
Compensation
Uncompensated
V
Supply Voltage
Constant
N
S
No gel coating in media path
Silicone gel coating in media path
Pressure Range
1 psi to 150 psi60 mbar to 10 bar
Absolute
Absolute
015PA
030PA
060PA
100PA
150PA
001BA
1.6BA
2.5BA
004BA
006BA
010BA
0 bar to 1 bar
0 bar to 1.6 bar
0 bar to 2.5 bar
0 bar to 4 bar
0 bar to 6 bar
0 bar to 10 bar
0 psi to 15 psi
0 psi to 30 psi
0 psi to 60 psi
0 psi to 100 psi
0 psi to 150 psi
Gage
Gage
001PG
005PG
015PG
030PG
060PG
100PG
150PG
060MG
100MG
160MG
250MG
400MG
600MG
001BG
1.6BG
2.5BG
004BG
006BG
010BG
0 mbar to 60 mbar
0 mbar to 100 mbar
0 mbar to 160 mbar
0 mbar to 250 mbar
0 bar to 400 mbar
0 bar to 600 mbar
0 bar to 1 bar
0 bar to 1.6 bar
0 bar to 2.5 bar
0 bar to 4 bar
0 bar to 6 bar
0 bar to 10 bar
0 psi to 1 psi
0 psi to 5 psi
0 psi to 15 psi
0 psi to 30 psi
0 psi to 60 psi
0 psi to 100 psi
0 psi to 150 psi
DIP Leadless SMT
AN
SMT
LN
PN
Single axial
barbless port
Low-profile
port
Single axial
barbed port
AN
LN
PN
Single axial
barbless port
Low-profile
port
Single axial
barbed port
AN
LN
PN
Single axial
barbless port
Low-profile
port
Single axial
barbed port
Pressure Port
7
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Basic Board Mount Pressure Sensors
Table 1. Absolute Maximum Ratings1
Characteristic Min. Max. Unit
Supply voltage (Vsupply) -12.0 12.0 Vdc
Storage temperature -40 [-40] 125 [257] °C [°F]
Soldering time and temperature:
lead solder temperature ( DIP)
peak reflow temperature (Leadless SMT, SMT)
4 s max. at 250 °C [482 °F]
15 s max. at 250 °C [482 °F]
1Absolute maximum ratings are the extreme limits the device will withstand without damage.
Table 2. Environmental Specifications
Characteristic Parameter
Humidity:
all external surfaces
internal surfaces of gel coating option
internal surfaces of non-gel coating option
0 %RH to 95 %RH, non-condensing
0 %RH to 100 %RH, condensing
0 %RH to 95 %RH, non-condensing
Vibration MIL-STD-202G, Method 204D, Condition B (15 g, 10 Hz to 2 kHz)
Shock MIL-STD-202G, Method 213B, Condition C (100 g, 6 ms duration)
Life11 million pressure cycles min.
ESD MIL-STD-883 Method 3015.7
Solder reflow J-STD-020D, MSL 1, unlimited storage life
1Life may vary depending on specific application in which sensor is utilized.
Table 3. Wetted Materials1
Characteristic Non-Gel Coating Option Gel Coating Option
Covers high temperature polyamide high temperature polyamide
Substrate alumina ceramic not exposed - protected by silicone gel
Adhesives epoxy, RTV epoxy
Electronic components ceramic, silicon, gold, glass not exposed - protected by silicone gel
1Contact Honeywell Customer Service for detailed material information.
CAUTION
MISUSE OF GEL COATING OPTION
•Non-gelcoatingoption:Theinputportislimitedtonon-corrosive,non-ionicmedia
suchasdryairandgasesandshouldnotbeexposedtocondensation.Thegases
are limited to media that are compatible with the following wetted materials of
construction: high temperature polyamide, silicone, alumina ceramic, silicon, gold,
and glass.
•Gelcoatingoption:Thegelcoatedsensorsusethesamematerialsinthewetted
media path but are protected from condensation by a silicone-based gel coating.
Thegelcoatingoptionallowsuseinapplicationswherecondensationcanoccur.
Failure to comply with these instructions may result in product damage.
8sensing.honeywell.com
NBP Series, Uncompensated/Unamplified
Table 4. Operating Specifications
Characteristic Min. Typ. Max. Unit
Supply voltage (Vsupply)1, 2 1.8 5.0 12.0 Vdc
Supply current (at 5.0 Vdc supply) -1.5 2.5 mA
Specified temperature range3-40 [-40] -125 [257] °C [°F]
Accuracy4- - ±0.25 %FSS BFSL5
Input resistance 2.4 3.0 5.5 kOhm
Thermal effect on resistance (TER)61200 -3200 ppm/°C
1 Ratiometricity of the sensor (the ability of the device output to scale to the supply voltage) is achieved within the specified operating voltage.
2 Incorrect application of supply voltage or ground to the wrong pin may cause electrical failure.
3 The specified temperature range is the temperature range over which the sensor will produce an output proportional to pressure within the specified
performance limits.
4 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.
5 Full Scale Span (FSS) is the algebraic difference between the output signal measured at the maximum and minimum limits of the pressure range. (See
Figure 1 for ranges.)
6 TER (Thermal Effect on Resistance): The deviation in input resistance due to change in temperature over the specified temperature range, relative to
input resistance measured at 25 °C [77 °F].
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Basic Board Mount Pressure Sensors
Table 5. Pressure Range Specifications for 60 mbar to 10 bar
Pressure
Range
(see Figure 1)
Pressure
Range
Unit
Over
Pressure
Burst
Pressure
Offset1
(mV/V)
Sensitivity
(mV/V/Full Scale Span)
TCO2
(%FSS/25 ºC)
TCS3
(%FSS/25 ºC)
Pmin. Pmax. Min. Max. Min. Nom. Max. Min. Nom. Max. Min. Nom. Max.
Absolute
001BA 0 1 bar 2 4 -7. 0 7.0 10.0 15.0 20.0 -1.5 -0.5 1.5 -6.0 -5.0 -3.5
1.6BA 01.6 bar 4 8 -7.0 7.0 12.0 16.0 20.0 -1.5 -0.5 1.5 -6.0 -5.0 -3.5
2.5BA 02.5 bar 4 8 -7.0 7.0 18.8 25.0 31.3 -1.0 -0.3 1.0 -6.0 -5.0 -3.5
004BA 0 4 bar 816 -7. 0 7.0 16.8 20.0 23.2 -1.0 -0.3 1.0 -6.0 -5.0 -3.5
006BA 0 6 bar 16 20 -7.0 7.0 12.6 15.0 17. 4 -1.5 -0.4 1.5 -6.0 -5.0 -3.5
010BA 010 bar 16 20 -7. 0 7.0 21.0 25.0 29.0 -1.0 -0.3 1.0 -6.0 -5.0 -3.5
Gage
060MG 060 mbar 850 1400 -8.5 8.5 3.9 5.7 7.4 -3.5 -1.2 3.5 -6.0 -5.0 -3.5
100MG 0100 mbar 850 140 0 -8.5 8.5 6.6 9.4 12.3 -2.1 -0.7 2.1 -6.0 -5.0 -3.5
160MG 0160 mbar 850 140 0 -8.5 8.5 10.5 15.1 19.7 -1.3 -0.4 1.3 -6.0 -5.0 -3.5
250MG 0250 mbar 1800 3000 -8.5 8.5 7. 3 10.9 14.5 -2.1 -0.7 2.1 -6.0 -5.0 -3.5
400MG 0 400 mbar 1800 3000 -8.5 8.5 11.7 17.4 23.2 -1.3 -0.4 1.3 -6.0 -5.0 -3.5
600MG 0600 mbar 2000 4000 -7. 0 7. 0 6.0 9.0 12.0 -2.5 -1.0 2.5 -6.0 -5.0 -3.5
001BG 0 1 bar 2 4 -7. 0 7.0 10.0 15.0 20.0 -1.5 -0.5 1.5 -6.0 -5.0 -3.5
1.6BG 01.6 bar 4 8 -7.0 7.0 12.0 16.0 20.0 -1.5 -0.5 1.5 -6.0 -5.0 -3.5
2.5BG 02.5 bar 4 8 -7.0 7.0 18.8 25.0 31.3 -1.0 -0.3 1.0 -6.0 -5.0 -3.5
004BG 0 4 bar 816 -7. 0 7.0 16.8 20.0 23.2 -1.0 -0.3 1.0 -6.0 -5.0 -3.5
006BG 0 6 bar 16 20 -7.0 7.0 12.6 15.0 17. 4 -1.5 -0.4 1.5 -6.0 -5.0 -3.5
010BG 010 bar 16 20 -7. 0 7.0 21.0 25.0 29.0 -1.0 -0.3 1.0 -6.0 -5.0 -3.5
1 Offset: The output signal obtained when the reference pressure is applied to all available pressure ports. Also known as “null” or “zero”.
2 TCO (Thermal Effect on Offset): The deviation in offset due to changes in temperature over the specified temperature range, relative to offset measured
at 25 ºC.
3 TCS (Thermal Effect on Span): The deviation in full scale span due to changes in temperature over the specified temperature range, relative to full scale
span measured at 25 ºC.
10 sensing.honeywell.com
NBP Series, Uncompensated/Unamplified
Table 6. Pressure Range Specifications for 1 psi to 150 psi
Pressure
Range
(see Figure 1)
Pressure
Range
Unit
Over Pressure
Burst
Pressure
Offset1
(mV/V)
Sensitivity
(mV/V/Full Scale Span)
TCO2
(%FSS/25 ºC)
TCS3
(%FSS/25 ºC)
Pmin. Pmax. Min. Max. Min. Nom. Max. Min. Nom. Max. Min. Nom. Max.
Absolute
015PA 015 psi 30 60 -7. 0 7.0 10.3 15.0 20.7 -1.5 -0.6 1.5 -6.0 -5.0 -3.5
030PA 030 psi 60 120 -7.0 7.0 15.5 21.0 26.0 -1.0 -0.4 1.0 -6.0 -5.0 -3.5
060PA 060 psi 120 240 -7.0 7. 0 17.4 21.0 24.0 -1.0 -0.3 1.0 -6.0 -5.0 -3.5
100PA 0100 psi 240 300 -7. 0 7.0 14.5 17. 2 20.0 -1.0 -0.4 1.0 -6.0 -5.0 -3.5
150PA 0150 psi 240 300 -7.0 7. 0 21.7 26.0 30.0 -1.0 -0.3 1.0 -6.0 -5.0 -3.5
Gage
001PG 0 1 psi 10 20 -8.5 8.5 4.5 6.5 8.5 -3.0 -1.0 3.0 -6.0 -5.0 -3.5
005PG 0 5 psi 30 40 -8.5 8.5 10.0 15.0 20.0 -1.5 -0.5 1.5 -6.0 -5.0 -3.5
015PG 015 psi 30 60 -7. 0 7. 0 10.3 15.0 20.7 -1.5 -0.6 1.5 -6.0 -5.0 -3.5
030PG 030 psi 60 120 -7.0 7. 0 15.5 21.0 26.0 -1.0 -0.4 1.0 -6.0 -5.0 -3.5
060PG 060 psi 120 240 -7. 0 7. 0 17.4 21.0 24.0 -1.0 -0.3 1.0 -6.0 -5.0 -3.5
100PG 0100 psi 240 300 -7. 0 7.0 14.5 17. 2 20.0 -1.0 -0.4 1.0 -6.0 -5.0 -3.5
150PG 0150 psi 240 300 -7. 0 7.0 21.7 26.0 30.0 -1.0 -0.3 1.0 -6.0 -5.0 -3.5
1 Offset: The output signal obtained when the reference pressure is applied to all available pressure ports. Also known as “null” or “zero”.
2 TCO (Thermal Effect on Offset): The deviation in offset due to changes in temperature over the specified temperature range, relative to offset measured
at 25 ºC.
3 TCS (Thermal Effect on Span): The deviation in full scale span due to changes in temperature over the specified temperature range, relative to full scale
span measured at 25 ºC.
Table 7. Pressure Types
Pressure Type Description
Absolute Output is proportional to the difference between applied pressure and a built-in reference to vacuum. Reference
pressure is absolute zero pressure (full vacuum).
Gage Output is proportional to the difference between applied pressure and atmospheric (ambient) pressure.
Reference pressure is atmospheric pressure.
11
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Basic Board Mount Pressure Sensors
11,50
[0.45]
2,54
[0.100
]
Ø 0,813
[0.032]
Table 8. Pinout for DIP Packages
Pin 4 Pin 3
Vout+ GND
Pin 1 Pin 2
Vsupply Vout-
Figure 2. DIP Package Dimensional Drawings (For reference only: mm [in].)
AN: Single axial barbed port
LN: Single axial barbless port
PN: Low-profile port
Recommended PCB Pad Layout
4X 0,46
[0.018]
34
21
7,00
[0.276]
5,50
[0.217]
2,54 TYP.
[0.100]
43
12
3,50
[0.138]
2,23
[0.088] Ø 6,50
[0.256]
10,94 MAX.
[0.430]
11,50
[0.45]
1,02
[0.040]
0,25
[0.010]
8,64
[0.340]
Ø 2,74
[0.108]
Ø 2,32
[0.091]
3,56
[0.140]
Ø 1,91
[0.075]
PIN 1
INDICATOR
5,50
[0.217]
43
12
3,50
[0.138]
2,23
[0.088]
2,54 TYP.
[0.100] 1,02
[0.040]
8,64
[0.340]
0,25
[0.010]
11,5
[0.45]
10,94 MAX.
[0.430]
Ø 3,18
[0.125]
Ø 6,50
[0.256]
3,84
[0.151]
5,83
[0.230]
4X 0,46
[0.018]
34
21
7,00
[0.276]
PIN 1
INDICATOR
5,50
[0.217]
2,54 TYP.
[0.100]
34
12
3,50
[0.138]
2,23
[0.088]
11,5
[0.45]
0,25
[0.010]
1,02
[0.040]
8,64
[0.340]
Ø 6,50
[0.256]
3,84
[0.151]
2,10
[0.083]
4X 0,46
[0.018]
34
21
7,00
[0.276]
PIN 1
INDICATOR
12 sensing.honeywell.com
NBP Series, Uncompensated/Unamplified
5,46
[0.215]
2,50
[0.098]
1,27
[0.050]
2,54
[0.100]
Table 9. Pinout for Leadless SMT
Pressure Packages
Pad 1 Pad 6
Vsupply Vout+
Pad 2 Pad 5
NC NC
Pad 3 Pad 4
Vout- GND
Figure 3. Leadless SMT Package Dimensional Drawings (For reference only: mm [in].)
AN: Single axial barbed port
LN: Single axial barbless port
PN: Low-profile port
7,00
[0.276]
3,50
[0.138]
3,50
[0.138]
3,56
[0.140] 3,84 MAX.
[0.151]
10,94 MAX.
[0.430]
Ø 2,32
[0.091]
Ø 1,91
[0.075]
Ø 2,74
[0.108]
Ø 6,50
[0.256]
7,00
[0.276]
1,02
[0.040] 2,50 TYP.
[0.098]
1,00
[0.039]
3
2
1
4
5
6
PAD 1
INDICATOR
7,00
[0.276]
Ø 6,50
[0.256]
1,02
[0.040]
10,94 MAX.
[0.430]
3,84 MAX.
[0.151]
5,84
[0.230]
Ø 3,18
[0.125]
3,50
[0.138]
3,50
[0.138]
7,00
[0.276]
2,50 TYP.
[0.098]
1,00
[0.039]
3
2
1
4
5
6
PAD 1
INDICATOR
7,00
[0.276]
3,84 MAX.
[0.151]
Ø 6,50
[0.256]
1,02
[0.040]
7,00
[0.276]
3,50
[0.138]
3,50
[0.138] 2,50 TYP.
[0.098]
1,00
[0.039]
3
2
1
4
5
6
PAD 1
INDICATOR
Recommended PCB Pad Layout
13
sensing.honeywell.com
Basic Board Mount Pressure Sensors
2,54
[0.100
]
7,49
[0.295
]
1,143
[0.045]
2,032
[0.080
]
Table 10. Pinout for SMT Packages
Pin 4 Pin 3
Vout+ GND
Pin 1 Pin 2
Vsupply Vout-
Figure 4. SMT Package Dimensional Drawings (For reference only: mm [in])
AN: Single axial barbed port
LN: Single axial barbless port
PN: Low-profile port
7,00
[0.276]
4X 1,27
[0.050]
4X 0,46
[0.018]
34
21
3,50
[0.138]
5,50
[0.217]
43
12
2,25
[0.088]
2,54 TYP.
[0.100]
10,94 MAX.
[0.430]
Ø 6,50
[0.256]
3,84
[0.151]
Ø 3,18
[0.125]
0,25
[0.010]
3,03
[0.119]
1,02
[0.040]
11,5
[0.45]
5,83
[0.230]
PIN 1
INDICATOR
Recommended PCB Pad Layout
7,00
[0.276]
4X 1,27
[0.050]
4X 0,46
[0.018]
34
21
3,50
[0.138]
2,25
[0.088]
5,50
[0.217]
2,54 TYP.
[0.100]
43
12
0,25
[0.010]
3,03
[0.119]
11,5
[0.45]
1,02
[0.040]
Ø 6,50
[0.256]
2,10
[0.083]
3,84 MAX.
[0.151]
PIN 1
INDICATOR
Find out more
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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.
TolearnmoreaboutHoneywell’s
sensing and control products,
call +1-815-235-6847 or
1-800-537-6945,
visitsensing.honeywell.com,
or e-mail inquiries to
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Sensing and Control
Honeywell
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Golden Valley, MN 55422
honeywell.com
32302908-A-EN IL50
October 2014
© 2014 Honeywell International Inc. All rights reserved.
ADDITIONAL INFORMATION
The following associated literature is available at sensing.honeywell.com:
• BoardMountPressureSensorsLineGuide
• Airflow,Force,andPressureSensorsProductRangeGuide
• ProductInstallationInstructions
• ProductNomenclatureTreeandOrderGuide
• SelectionGuides
• Application-specificInformation
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. The 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. In 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.
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NBPDANN150PAUNV NBPDANN150PGUNV NBPDLNN015PAUNV NBPDLNN015PGUNV NBPDLNN030PAUNV
NBPDLNN030PGUNV NBPDLNN060PAUNV NBPLANN030PAUNV NBPLANN030PGUNV NBPLANN100PAUNV
NBPLANN100PGUNV NBPLANN150PAUNV NBPLLNN015PAUNV NBPLLNN015PGUNV NBPLLNN030PGUNV
NBPLLNN060PGUNV NBPMANN150PGUNV NBPMLNN015PAUNV NBPMLNN030PGUNV NBPMLNN060PGUNV
NBPLLNS001PGUNV NBPLLNN005PGUNV NBPDPNS005PGUNV NBPLPNN001PGUNV NBPDLNN005PGUNV
NBPMANN005PGUNV NBPMANN001PGUNV NBPMPNS005PGUNV NBPDPNS001PGUNV NBPDANN100PAUNV
NBPMANN030PAUNV NBPMANN100PAUNV NBPLPNN030PAUNV NBPMPNN030PGUNV NBPLLNN030PAUNV
NBPLPNN015PAUNV NBPLPNN030PGUNV NBPMANN030PGUNV NBPDLNN060PGUNV NBPDANN100PGUNV
NBPDPNN030PAUNV NBPMLNN030PAUNV NBPMANN150PAUNV NBPMLNN015PGUNV NBPDPNN030PGUNV
NBPLLNN060PAUNV NBPMANN100PGUNV NBPMLNN060PAUNV NBPLANN150PGUNV NBPMPNN030PAUNV
NBPDANN030PGUNV NBPDANN030PAUNV NBPLPNS100MGUNV NBPLLNS100MGUNV NBPLANS400MGUNV
NBPLPNS400MGUNV NBPMPNN015PAUNV NBPLLNS400MGUNV NBPLANS005PGUNV NBPLLNS160MGUNV
NBPMPNS060PAUNV NBPMPNS001PGUNV NBPLANS150PGUNV NBPMPNS030PAUNV NBPLLNS250MGUNV
NBPLANS100MGUNV NBPLPNS005PGUNV NBPLLNS005PGUNV NBPLANS250MGUNV NBPMPNS160MGUNV
NBPMPNS250MGUNV NBPLANS100PAUNV NBPMANN100MGUNV NBPLPNS001PGUNV NBPLANS160MGUNV
NBPMANS015PGUNV NBPLPNS160MGUNV NBPDANS150PGUNV NBPLANS001PGUNV NBPLANS060MGUNV
NBPLPNS060MGUNV NBPLLNS060MGUNV NBPMPNS400MGUNV NBPMPNS100MGUNV NBPMPNS060MGUNV
NBPLPNS250MGUNV NBPDANN600MGUNV NBPLANN015PGUNV NBPDLNN001PGUNV
NBPMANN160MGUNV NBPMPNN005PGUNV NBPLPNN005PGUNV NBPLANN160MGUNV NBPMANS001BAUNV
NBPDLNS100PGUNV NBPMPNN150PGUNV NBPLANN250MGUNV NBPMPNN250MGUNV
NBPDANS160MGUNV NBPDANS060PGUNV