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M3012-01013F-020BC

Pressure Sensor

器件类别:传感器   

厂商名称:TE Connectivity(泰科)

厂商官网:http://www.te.com

器件标准:

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器件参数
参数名称
属性值
是否Rohs认证
符合
Objectid
145072049622
Reach Compliance Code
unknown
最大精度 (%)
1%
主体长度或直径
19.812 mm
外壳
STAINLESS STEEL
位数
14
最高工作温度
85 °C
最低工作温度
-20 °C
输出范围
0-50mV
输出类型
ANALOG VOLTAGE
封装形状/形式
CYLINDRICAL
端口类型
1/4-19 BSPP FEMALE
最大压力范围
290 Psi
最小压力范围
压力传感模式
COMPOUND
响应时间
1000 µs
传感器/温度传感器类型
PRESSURE SENSOR,STRAIN GUAGE
端接类型
CABLE
文档预览
MSP300
Pressure Transducer
SPECIFICATIONS
Analog Output or 14-Bit Digital Pressure with 11-Bit
Temperature Output
One Piece Stainless Steel Construction
Low Cost
17-4PH or 316L Stainless Steel
Customizable
The MSP300
pressure transducer from the Microfused line of TE
is suitable for measurement of liquid or gas pressure, even for
difficult media such as contaminated water, steam, and mildly
corrosive fluids.
FEATURES
One Piece Stainless Steel
Construction
Ranges up to 15kpsi
Digital Pressure and Temperature
Output or Analog mV/Amplified
Output
±1 %Span Accuracy
UL Certification (analog only)
The transducer pressure cavity is machined from a solid piece of
17-4PH or 316L stainless steel. The standard version includes a
1/4 NPT pipe thread allowing a leak-proof, all metal sealed system.
With excellent durability, there are no o-rings, welds or organics
exposed to the pressure media.
TE’s
proprietary Microfused technology, derived from demanding
aerospace applications, employs micromachined silicon
piezoresistive strain gages fused with high temperature glass to a
stainless steel diaphragm. This approach achieves media
compatibility simply and elegantly while providing an exceptionally
stable sensor without the PN junctions of conventional
micromachined sensors.
This product is geared towards industrial and commercial OEMs
for small to high volume applications. Standard configurations are
suitable for many applications. Please contact factory for your
customization needs.
APPLICATIONS
Pumps and Compressors
Hydraulic/Pneumatic Systems
Automotive Test Systems
Energy and Water Management
Medical Gas Pressure
Leak Detection
Remote Measuring Systems
General Pressure Measurements
SENSOR SOLUTIONS
///MSP300
06/2017
Page 1
MSP300
Pressure Transducer
STANDARD RANGES (ALL INTERMEDIATE RANGES ARE STANDARD)
Range (psi)
0 to 100
0 to 200
0 to 300
0 to 500
0 to 01k
0 to 03k
0 to 05k
0 to 10k
0 to 15k
Range (Bar)
0 to 007
0 to 010
0 to 020
0 to 035
0 to 070
0 to 200
0 to 350
0 to 700
0 to 01k
Gage/Compound
PERFORMANCE SPECIFICATIONS (ANALOG)
Supply Voltage: 5.0V, Ambient Temperature: 25°C (unless otherwise specified)
PARAMETERS
MIN
TYP
Pressure Accuracy (RSS combined Non Linearity,
Hysteresis & Repeatability)
Pressure Cycles
Proof Pressure
Burst Pressure
Isolation, Body to Any Lead
Long Term Stability (1 year)
Zero Thermal Error
Span Thermal Error
Zero Offset (mV Output)
Zero Offset (V Output)
Span Tolerance
Compensated Temperature
Operating Temperature
Storage Temperature
Load Resistance (R
L
, mV Output)
Load Resistance (R
L
, V Output)
Response Time
Bandwidth
Shock
Vibration
Wetted Material (except elastomer seal)
For custom configurations, consult factory.
-1
1.00E+6
2X
5X
50
-0.25
-2.0
-2.0
-3.0
-2.0
-2.0
0
-20
-40
1
5
1
DC to 1KHz (typical)
50g, 11 msec Half Sine Shock per MIL-STD-202G, Method 213B, Condition A
±20g, MIL-STD-810C, Procedure 514.2-2, Curve L
17-4PH or 316L Stainless Steel
0.25
2.0
2.0
3.0
2.0
2.0
55
+85
+85
MAX
1
UNITS
%Span
0~F.S. Cycles
Rated
Rated
MΩ
%Span
%Span
%Span
%Span
%Span
%Span
°C
°C
°C
MΩ
KΩ
ms
Over comp. temp
Over comp. temp
@ 25°C
@ 25°C
@ 25°C
@ 250Vdc
NOTES
BFSL @ 25°C
SENSOR SOLUTIONS
///MSP300
06/2017
Page 2
MSP300
Pressure Transducer
PERFORMANCE SPECIFICATIONS (DIGITAL)
Supply Voltage: 3.3V, Ambient Temperature: 25°C (unless otherwise specified)
PARAMETERS
MIN
TYP
Supply Voltage
Output at Zero Pressure
Output at FS Pressure
Current Consumption
Proof Pressure
Burst Pressure
Isolation, Body to Any Lead
Pressure Cycles
Pressure Accuracy (RSS combined Non Linearity,
Hysteresis & Repeatability)
Temperature Accuracy
Zero Thermal Error
Span Thermal Error
Long Term Stability (1 year)
Compensated Temperature
Compensated Temperature Output
Operating Temperature
Storage Temperature
Shock
Vibration
Wetted Material (except elastomer seal)
For custom configurations, consult factory.
Notes
1.
Pressure port temperature over compensated temperature range.
2X
5X
50
1.00E+6
-1
-3
-2.0
-2.0
-0.25
0
512
-20
-40
1
3
2.0
2.0
0.25
55
1075
+85
+85
2.7
720
14720
1000
15000
MAX
5.0
1280
15280
3.5
UNITS
Vdc
Count
Count
mA
Rated
Rated
MΩ
0~F.S. Cycles
%Span
°C
%Span
%Span
%Span
°C
Count
°C
°C
BFSL @ 25°C
1
Over comp. temp
Over comp. temp
@ 25°C
@ 250Vdc
NOTES
50g, 11 msec Half Sine Shock per MIL-STD-202G, Method 213B, Condition A
±20g, MIL-STD-810C, Procedure 514.2-2, Curve L
17-4PH or 316L Stainless Steel
SENSOR SOLUTIONS
///MSP300
06/2017
Page 3
MSP300
Pressure Transducer
DIMENSIONS
CODE
2
PORT
1/4-19 BSPP
7/16-20 UNF-A MALE SAE
J514 STRAIGHT THREAD O-
RING BUNA-N 70SH-904,
ID8.92mm x W1.83mm
DIM C
0.453
[11.50]
0.435
[11.05]
0.596
[15.14]
0.475
[12.06]
0.50
[12.70]
0.70
[17.78]
0.70
[17.78]
0.689
[17.50]
0.42
[10.67]
0.53
[13.46]
0.547
[13.90]
0.702
[17.83]
CODE
1
2
3
M
N
P
R
CONNECTION TYPE
CABLE 2 FT
CABLE 4 FT
CABLE 10 FT
CABLE 1 M
CABLE 2 M
CABLE 5 M
CABLE 10 M
4
5
6
E
F
K
P
Q
S
U
W
1/4-18 NPT
1/8-27 NPT
1/4-19 BSPT
1/4-19 BSPP FEMALE
1/8-27 NPT FEMALE
7/16-20 UNF-2A FEMALE SAE
J514 STRAIGHT THREAD
WITH INTEGRAL VALVE
DEPRESSOR
M10 x 1.0 mm
M12 x 1.5 mm
G/14 DIN 3852 FORM E
GASKET DIN3869-14 NBR
M20 x 1.5 mm
OUTPUT (ANALOG)
Code
1
2
3
4
5
Output
0
50mV
0
100mV
0.5
4.5V
1
5V
4
20mA
Supply
5V
5V
5 ± 0.25V
10
30V
9
30V
Ratiometricity
Yes
Yes
Yes
No
No
Red
+Supply
+Supply
+Supply
+Supply
+Supply
Black
-Supply
-Supply
Common
Common
-Supply
Green
+Output
+Output
Cut Off
Cut Off
Cut Off
White
-Output
-Output
+Output
+Output
Cut Off
OUTPUT (DIGITAL)
Code
J
S
Output
I
2
C
SPI
Supply
2.7
5.0V
2.7
5.0V
Red
+Supply
+Supply
Black
-Supply
-Supply
Green
SCL
SCLK
White
SDA
MISO
Yellow
--
SS
SENSOR SOLUTIONS
///MSP300
06/2017
Page 4
MSP300
Pressure Transducer
PRESSURE OUTPUT
SENSOR SOLUTIONS
///MSP300
06/2017
Page 5
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