首页 > 器件类别 > 传感器

PX2EG1XX300PAACX

Industrial Pressure Sensors PX Pressure

器件类别:传感器   

厂商名称:Honeywell

厂商官网:http://www.ssec.honeywell.com/

器件标准:

下载文档
PX2EG1XX300PAACX 在线购买

供应商:

器件:PX2EG1XX300PAACX

价格:-

最低购买:-

库存:点击查看

点击购买

器件参数
参数名称
属性值
Product Attribute
Attribute Value
制造商
Manufacturer
Honeywell
产品种类
Product Category
Industrial Pressure Sensors
RoHS
Details
产品
Product
Transducers
系列
Packaging
Bulk
工厂包装数量
Factory Pack Quantity
1
文档预览
Heavy Duty Pressure Transducers
PX2 Series, 1 bar to 70 bar | 100 kPa to 7 MPa | 15 psi to 1000 psi
FEATURES
50069942
Datasheet
Datasheet
Issue
I
• Pressure range: 1 bar to 70 bar | 100 kPa to 7 MPa | 15 psi to
1000 psi
• Pressure reference: Absolute, sealed gage or vented gage
• Pressure port types: 7/16-20 UNF 1/4 in 45° Flare Female
Schrader (SAE J512), 7/16-20 UNF 45° Flare Male (SAE
J513), 7/16-20 UNF 37° Flare Male (SAE J514), G1/4 (ISO
1179-3), G1/8 (ISO 1179-3), M12 x 1.5 (ISO 6149-3),
1/4-18 NPT, 1/8-27 NPT, 9/16-18 UNF, (SAE J1926-3), or
7/16-20 UNF (SAE J1926-3)
• Electrical connector types: Metri-Pack 150 (UL 94 HB or V-0
options), Micro M12, DIN, Deutsch, or cable harness
DESCRIPTION
Honeywell’s PX2 Series Heavy Duty Pressure Transducers
are a portfolio of configurable pressure sensors that use
piezoresistive sensing technology with ASIC (Application
Specific Integrated Circuit) signal conditioning in a stainless
steel housing. The PX2 Series is fully calibrated and
compensated for offset, sensitivity, temperature effects and
non-linearity using the on-board ASIC. These transducers
measure absolute, sealed gage, or vented gage pressure. The
absolute versions have an internal vacuum reference and
an output value proportional to absolute pressure, sealed
gage versions have an internal pressure reference of one
atmosphere at sea level, and vented gage versions measure
pressure with respect to ambient pressure. They are RoHS
compliant and are designed and manufactured according to
ISO 9001 standards.
VALUE TO CUSTOMERS
• Media compatibility: Common HFC (hydrofluorocarbon)
refrigerants such as R410A and R134A, next generation low
global warming potential (GWP) refrigerants such as R448A
(Solstice® N40), R32 and R1234ZE, engine oil, petroleum-
based hydraulic fluids, DOT 3 brake fluid, and dry air. For
ammonia and other corrosive media, see Honeywell’s SPT
Series.
• Enhanced durability: The PX2 Series can operate in the
rigorous environments commonly found in HVAC/R and air
compressor applications. The sensor can survive at least 10
million pressure cycles and has an ingress protection rating
up to IP69K.
PORTFOLIO
Honeywell’s PX2 Series joins the PX3 Series, MLH Series, and
SPT Series heavy duty pressure transducers.
The PX2 Series is not recommended for use with media
involving water, saturated air such as steam and vapor, and
ammonia.
(1 m, 2 m, 3 m, or 5 m)
• Total Error Band: ±2.0 %
• Operating and compensated temperature range: -40°C to
125°C [-40°F to 257°F]
• Response time: <2 ms
• Life: Minimum of 10 million cycles to operating pressure
• Output transfer function: Ratiometric, regulated or current
• Mechanical shock rating: 100 G per MIL-STD-202F, Method
213B, Cond. F
• Vibration rating: 20 G sweep, 10 Hz to 2000 Hz
• Ingress protection: Up to IP69K
• Radiated immunity protection: Up to 100 V/m (ISO 11452-2)
• Flame retardant options: UL 94 HB standard on all electrical
terminations; UL 94 V-0 available upon request
POTENTIAL APPLICATIONS
• Industrial: Refrigerant pressure monitoring in HVAC/R
systems; air compressor system pressure
• Transportation: Air system monitoring; hydraulic oil pressure
monitoring
Sensing and Internet of Things
Heavy Duty Pressure Transducers
Table 1. Performance Specifications
1
Characteristic
Operating temperature range
2
Storage temperature range
3
Compensated temperature range
4
Overpressure minimum rating
5
Burst pressure minimum rating
6
Long term stability
Accuracy
7
Offset error
8
Total Error Band
10
Response time
11
Turn on time
12
Life
13
1
2
PX2 Series, 1 bar to 70 bar | 100 kPa to 7 MPa | 15 psi to 1000 psi
Parameter
-40°C to 125°C [-40°F to 257°F]
-40°C to 125°C [-40°F to 257°F]
-40°C to 125°C [-40°F to 257°F]
(See Table 3.)
(See Table 3.)
±0.5 %FSS
9
(1000 hr at 25°C [77°F])
±0.25 %FSS
9
(See Figure 1.)
±1 %FSS
9
±2 %FSS
9
(-40°C to 125°C [-40°F to 257°F]) (See Figure 1.)
<2 ms
<7 ms
minimum of 10 million cycles to operating pressure
All specifications apply at 25°C and under operating conditions unless otherwise noted.
Operating Temperature Range: The temperature range over which the product will produce an output proportional to pressure but may not remain
within the specified performance limits.
3
Storage Temperature Range: The temperature range over which the product may safely be exposed without excitation or pressure applied. Under
these conditions the product will remain in specification after excursion to any temperatures within this range. Exposure to temperatures outside
this range may cause permanent damage to the product.
4
Compensated Temperature Range: The temperature range (or ranges) over which the product will produce an output proportional to pressure
within the specified performance limits.
5
Overpressure: The absolute maximum rating for pressure which may be safely applied to the product for it to remain in specification once pressure
is returned to the operating pressure range. Exposure to higher pressure may cause permanent damage to the product.
6
Burst Pressure: The maximum pressure that may be applied to the product without causing escape of the pressure media. The product should not
be expected to function after exposure to any pressure beyond the rated burst pressure. This rating is also the case burst rating of the product.
7
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.
Includes all errors due to pressure non-linearity, pressure hysteresis, and non-repeatability.
8
Offset Error: the maximum deviation in the output signal obtained when the reference pressure is applied at 25°C relative to the ideal transfer
function.
9
Full Scale Span (FSS): The algebraic difference between the output signal measured at the maximum (Pmax.) and minimum (Pmin.) limits of the
pressure range.
10
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.
11
Response Time: The response time of the transducer is the maximum amount of time that the transducer will take for the transducer to output a
change from 10% to 90% of full scale in response to a 0% to 100% full scale step input pressure range.
12
Turn On Time: Duration from power applied until first valid output.
13
Life may vary depending on the application in which transducer is used.
Figure 1. Total Error Band (TEB) for the Total Error Band Series
All Possible Errors
Offset
Full Scale Span
Pressure Non-Linearity
Pressure Hysteresis
Pressure Non-Repeatability
Thermal Effect on Offset
Thermal Effect on Span
Thermal Hysteresis
Accuracy
BFSL
Total
Error
Band
2
Sensing and Internet of Things
Heavy Duty Pressure Transducers
Table 2. Electrical Specifications
PX2 Series, 1 bar to 70 bar | 100 kPa to 7 MPa | 15 psi to 1000 psi
Current
Output
Ratiometric Output
Characteristic
AA
Output transfer function
1
:
null output value
full scale output value
full scale span (FSS)
operating supply voltage, min.(Vs)
2
operating supply voltage, typ. (Vs)
2
operating supply voltage, max. (Vs)
2
Supply current (typ.)
Output load (pull up or down):
minimum
maximum
Absolute voltage ratings
5
:
minimum
6
maximum
6
maximum applied to output pin
(short circuit protection)
7
EMC rating
8
:
CE compliance:
electrostatic discharge
radiated immunity
fast transient burst
immunity to conducted disturbances
radiated emissions
ISO 11452-2 radiated immunity
1
2
3
4
5
Regulated Output
Output Transfer Function Order Code
1
AB
AC
AD
CH
4 mA
4 mA
16 mA
8V
30 V
4
(Vs - 8) x
50 Ohm
4
-16 V
30 V
BC
1V
6V
5V
9V
30 V
3
BD
0.25 V
10.25 V
10 V
13 V
30 V
3
BE
0.5 V
4.5 V
4V
8V
30 V
3
BG
1V
5V
4V
8V
30 V
3
10% of Vs 5% of Vs 10% of Vs 5% of Vs
90% of Vs 95% of Vs 90% of Vs 95% of Vs
80% of Vs 90% of Vs 80% of Vs 90% of Vs
3.135 V
3.135 V
4.5 V
4.75 V
3.3 V
3.3 V
5V
5V
3.465 V
3.465 V
5.5 V
5.25 V
5 mA
2 kOhm
4 mA
5.5 mA
2 kOhm
-16 V
16 V
Vs
-16 V
30 V
12 V
±4 kV contact, ±8 kV air per IEC 61000-4-2
10 V/m (80 MHz to 1000 MHz) per IEC 61000-4-3
±1 kV per IEC61000-4-4
3 V per IEC61000-4-6
40 dB 30 MHz to 230 MHz; 47 dB 230 MHz to 1000 MHz per CISPR 11
100 V/m 200 MHz to 2 GHz
20 V/m 200 MHz to 2 GHz
6
7
8
Output transfer function options are shown in the Nomenclature and Order Guide. (See Figure 4.)
Transducer will not produce valid output when supply voltage is outside of operating range.
Applies at 25°C. See Figure 2 for Regulated Output Supply Voltage.
Applies at 25°C. See Figure 3 for Current Output Supply Voltage.
Absolute maximum ratings are the extreme limits the device can withstand without damage to the product. Voltages above these ratings may
cause permanent damage. Exposure to absolute maximum conditions for extended periods may degrade device reliability.
Absolute voltage applies to potential across power and ground terminals.
Short circuit protection between output pin and ground, and output pin and supply pin.
All EMC ratings verified with the Metri-Pack 150 electrical connector type.
Figure 2. Regulated Output Supply Voltage
Figure 3. Current Output Supply Voltage
Sensing and Internet of Things
3
Heavy Duty Pressure Transducers
Table 3. Pressure Ratings
bar
kPa
PX2 Series, 1 bar to 70 bar | 100 kPa to 7 MPa | 15 psi to 1000 psi
MPa
psi
Operating Over-
Burst Operating Over-
Burst Operating Over-
Burst Operating Over-
Burst
Pressure pressure Pressure Pressure pressure Pressure Pressure pressure Pressure Pressure pressure Pressure
1
1.6
2
2.5
4
6
8
10
16
25
34
40
46
60
70
5
5
10
10
17
31
31
31
52
69
69
69
69
138
138
8
8
17
17
27
51
51
51
86
103
103
103
103
206
206
100
160
250
400
600
500
1000
1000
1700
3100
800
1700
1700
2700
5100
1
1.6
2.5
4
4.6
6
7
3.1
5.2
6.9
6.9
6.9
13.8
13.8
5.1
8.6
10.3
10.3
10.3
20.6
20.6
15
30
50
100
150
200
250
300
500
600
667
750
800
850
1000
70
150
250
450
450
750
750
1000
1000
1000
1000
1500
1500
2000
2000
115
250
400
750
750
1250
1250
1500
1500
1500
1500
2250
2250
3000
3000
Table 4. Pressure Reference Types
Pressure Reference
Absolute
Description
Output is proportional to the difference between applied pressure and a built-in fixed reference to
vacuum (zero pressure), where the minimum operating pressure is set to absolute zero pressure
(perfect vacuum).
Output is proportional to the difference between applied pressure and a built-in fixed reference to
1 atmA, where the minimum operating pressure is set to 14.7 psiA (1 atmA).
Sensor measures pressure relative to ambient pressure. Output is proportional to the difference
between applied pressure and atmospheric (ambient) pressure, where the minimum operating
pressure is set to atmospheric pressure.
Sealed gage
1
Vented gage
1
2
2
Sealed gage option only available in pressure ranges at or above 100 psi.
Vented gage option only available in pressure ranges between 100 psi and 667 psi.
4
Sensing and Internet of Things
Heavy Duty Pressure Transducers
Table 5. Environmental and Mechanical Characteristics
Characteristic
Mechanical shock
Vibration
Enclosure rating
Wetted materials:
port
substrate
adhesives
electronics
External materials:
housing
connector:
UL 94 HB (standard)
UL 94 V-0 (optional)
cable jacket
Installation torque
PX2 Series, 1 bar to 70 bar | 100 kPa to 7 MPa | 15 psi to 1000 psi
Parameter
100 G per MIL-STD-202F, Method 213B, Cond. F (at 25°C)
20 G sweep, 10 Hz to 2000 Hz (at 25°C)
per electrical connector type selection (See Figure 5.)
304 stainless steel
alumina ceramic
epoxy
glass, silicon
304 stainless steel
PBT 30% GF, black
PBT 30% GF, natural (beige)
TPE
per pressure port type (See Figure 6.)
CAUTION
PRODUCT DAMAGE DUE TO MECHANICAL ISSUES
• Ensure torque specifications are determined for the specific application. Values provided are for reference only. (Mating
materials and thread sealants can result in significantly different torque values from one application to the next.)
• When using mating parts made of stainless steel, use a thread sealant with anti-seize properties to prevent thread galling.
Ensure the sealant is rated for the application.
• Use appropriate tools (such as an open ended wrench or deep well socket) to install transducers.
• Always hand-start transducers into the hole to prevent cross threading and damage.
• Ensure that torque is not applied to the electrical connector.
• Ensure that the proper mating electrical connector with a seal is used to connect the transducer. Improper or damaged seals
can compromise ingress protection, leading to short circuits.
Failure to comply with these instructions may result in product damage.
CAUTION
PRODUCT DAMAGE DUE TO PARTICULATES
• Ensure that a filter is used upstream of the transducer to keep media flow free of larger particulates and increased humidity. All
PX2 Series transducers are dead-ended devices; particulate accumulation and condensing moisture may affect sensor output.
• It is recommend that the transducer be positioned with the port facing downwards; any particulates in the system are less
likely to enter and settle within the pressure transducer if it is in this position.
• Ensure that the media does not create a residue when dried. Build-up inside the transducer may affect transducer output;
rinsing of a dead-ended transducer is potentially difficult and has limited effectiveness in removing residue.
Failure to comply with these instructions may result in product damage.
Sensing and Internet of Things
5
查看更多>
430处理多个中断
单独写的每个模块的代码都调通了,但是放在一个Projet下,就卡死了,是不是多个中断冲突了? 或...
chnldq 微控制器 MCU
电机归零方面的c语言编写
请教下,上图是电机归零的一种方式,请问下各路大神怎么写c语言来判断上升沿、下降沿吗? 电机归零方面...
嘎嘣脆751 微控制器 MCU
零件信息管理系统 Musecad CircuiteXpert-解决零件使用、库管理、稽核、不插件、BOM..
Capture作为老牌原理图设计工具功能强大且易于上手,是众多R&D的首选。这里介绍一款与它...
musecad PCB设计
TI的高效AC适配器方案
本帖最后由 dontium 于 2015-1-23 12:44 编辑 用于USB接口的AC适配器...
dontium 模拟与混合信号
EEWORLD大学堂----Atmel软件框架(ASF)入门(上)
Atmel软件框架(ASF)入门(上) : http://training.eeworld.co...
dongcuipin 嵌入式系统
关于usart的问题
所有外设都有头 文件 的啊!为什么我做USART实验的时候,定义了USART_InitTypeDe...
qiuhuncl stm32/stm8
热门器件
热门资源推荐
器件捷径:
L0 L1 L2 L3 L4 L5 L6 L7 L8 L9 LA LB LC LD LE LF LG LH LI LJ LK LL LM LN LO LP LQ LR LS LT LU LV LW LX LY LZ M0 M1 M2 M3 M4 M5 M6 M7 M8 M9 MA MB MC MD ME MF MG MH MI MJ MK ML MM MN MO MP MQ MR MS MT MU MV MW MX MY MZ N0 N1 N2 N3 N4 N5 N6 N7 N8 NA NB NC ND NE NF NG NH NI NJ NK NL NM NN NO NP NQ NR NS NT NU NV NX NZ O0 O1 O2 O3 OA OB OC OD OE OF OG OH OI OJ OK OL OM ON OP OQ OR OS OT OV OX OY OZ P0 P1 P2 P3 P4 P5 P6 P7 P8 P9 PA PB PC PD PE PF PG PH PI PJ PK PL PM PN PO PP PQ PR PS PT PU PV PW PX PY PZ Q1 Q2 Q3 Q4 Q5 Q6 Q8 Q9 QA QB QC QE QF QG QH QK QL QM QP QR QS QT QV QW QX QY R0 R1 R2 R3 R4 R5 R6 R7 R8 R9 RA RB RC RD RE RF RG RH RI RJ RK RL RM RN RO RP RQ RR RS RT RU RV RW RX RY RZ
需要登录后才可以下载。
登录取消