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B58601E3214B646

更新时间: 2024-03-03 10:09:45
品牌 Logo 应用领域
东电化 - TDK /
页数 文件大小 规格书
10页 535K
描述
Pressure sensor die, low pressure, open bridge

B58601E3214B646 数据手册

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Pressure sensors  
C32 series  
B58601E32**B615/…B646  
Gauge low pressure sensor die C32/1 (open bridge)  
Symbols and Terms  
1)  
Maximum power supply VDD  
This is the maximal allowed voltage, which may be applied to the piezoresistive bridge circuit without damage.  
2)  
Operating temperature range Ta  
This is the operating temperature range Ta,min to Ta,max. Because most of the sensor parameters depend on assembling  
conditions like glueing, wire bonding etc, the die has to be tested over the operating temperature range by the customer  
fully assembled. For design verification and process control, samples, mounted in TDK Sensors standard transducer  
packages, are tested over the temperature range of Ta,min to Ta,max  
.
3)  
Storage temperature range Tst  
If the pressure sensor dies are stored in the temperature range Tst,min to Tst,max without applied voltage power supply, this  
will not affect the performance of the pressure sensor dies.  
4)  
5)  
6)  
7)  
Operating pressure range pr  
In the operating pressure range 0 to pr,max the pressure sensor die output characteristic is as defined in this specification.  
Over pressure pOV  
Pressure cycles in the pressure range 0 to pov do not affect the performance of the pressure sensor dies.  
Burst pressure pburst  
Up to the burst pressure pburst the diaphragm of the sensor die will not be destroyed mechanically.  
Operating power supply VDD  
The pressure sensor parameters are defined for a power supply voltage of VDD = 5 V. In the operating power supply  
voltage range VDD,min to VDD,max the ratiometric parameters r(VDD) like sensitivity, offset voltage and the temperature  
coefficient of the offset voltage are defined by:  
VDD  
(
)
( [ ])  
r VDD = r 5 V  
[ ]  
5 V  
8)  
9)  
Total bridge resistance Rb  
The total bridge resistance is defined between pad X5 and X2, X3 (see the dimensional drawing in this data sheet) of the  
opened piezoresistive bridge circuit. The total bridge resistance is in a good approximation the output impedance of the  
piezoresistive bridge circuit. This parameter is tested completely on a wafer (wafer level test measurement).  
Temperature coefficients of resistance Rb and Rb  
:
The temperature coefficients of resistance are tested for design verification on samples, mounted in TDK Sensors  
standard transducer package over the temperature range Ta,min to Ta,max with TR = 25 °C.  
The temperature coefficients of first and second order are defined with the polynomial:  
( )  
)]  
Rb T = Rb T = 25°C 1 + αꢀb T − 25°C + βꢀb T − 25°C  
(
)[  
(
)
(
The coefficients Rb and Rb are calculated using the three measurement points of Rb(T) at Ta,min, TR and Ta,max  
Offset voltage V0  
The offset voltage V0 is the output voltage Vout(p = 0 bar gauge) at zero gauge pressure and for a bridge voltage power  
supply VDD = 5 V. This parameter is tested completely on a wafer (wafer level test measurement).  
Since the offset voltage depends on several assembling conditions, this parameter has to be verified by the customer  
with his assembling possibilities.  
.
10)  
11)  
Temperature coefficients of offset voltage TCV0  
The temperature coefficients of offset voltage are defined for a bridge voltage power supply VDD = 5 V.  
These parameters strongly depend on assembly conditions like gluing, wire bonding etc.  
The temperature coefficients of offset voltage are tested for design verification on samples, mounted in TDK Sensors  
standard transducer package over the temperature range Ta,min to Ta,max with TR = 25 °C.  
TCV0+ and TCV0- are defined for the measurement temperature range by:  
(
)
(
)
ꢉꢊꢄ ꢁꢋ°ꢌ  
ꢄ ꢇꢈ  
ꢉꢊꢄ ꢁꢋ°ꢌ  
ꢄ ꢇꢈ  
a,max  
a,min  
TCVo=  
TCVo=  
ꢊꢁꢋ°ꢌ  
ꢊꢁꢋ°ꢌ  
a,min  
ꢅꢅ  
a,max  
ꢅꢅ  
Since the TCV0 depends on several assembling conditions, this parameter has to be verified by the customer with his  
assembling possibilities.  
12)  
Full scale value FS  
(
)
FS = Vꢍut pꢎ ꢏꢐꢑ − Vꢍ  
TPS PRS SD PD  
2021-03-08  
Please read Cautions and warnings and  
Page 5 of 10  
Important notes at the end of this document.  

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