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TA8563FNN/a2000avaiSHOCK SENSOR IC (1ch VERSION)


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TA8563FN
SHOCK SENSOR IC (1ch VERSION)
TOSHIBA TA8563FN
TOSHIBA BIPOLAR LINEAR INTEGRATED CIRCUIT SILICON MONOLITHIC
T A 8 5 6 3 F N
SHOCK SENSOR |C(1ch VERSION)
TA8563FN detects an existence of external shock through
the shock sensor and outputs.
FEATURE
o TA8563FN operates from SVDC single power supply
voltage.
o The signal from shock sensor is amplified according to
the setting gain, and is detected through the internal
window comparator.
SSOP10-P-0.65A
o TA8563FN incorporates 1-ch shock detecting circuitry. Weight : 0.049 (Typ.)
0 Input terminal of sensor signal is hi-impedance
Input impedance = SOMQ (Typ.)
o LPF (low pass filter) circuitry is built in.
Cut off frequency of LPF=7kHz
0 Sensitivity of shock detection can be adjusted by external devices.
0 TA8563FN is designed for low power dissipation.
Active mode (Pin 3 : 5V) 2mA (Typ.) PIN CONNECTION (TOP VIEW)
Powersave mode (Pin 3 : 0V) ihlpA (Typ.)
0 Small package SI 1 lor/RI
VR2[ 2 9 JAo
SSOP10-P-0.65A (0.65mm pitch) 'sst 3 8 "
OUTI: 4 7 130
GND[ 5 6 JVCC
980910EBA1
OTOSHIBA is continually working to improve the quality and the reliability of its products. Nevertheless, semiconductor
devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical stress.
It is the responsibility of the buyer, when utilizing TOSHIBA products, to observe standards of safety, and to avoid
situations in which a malfunction or failure of a TOSHIBA product could cause loss of human life, bodily injury or
damage to property. In developing your designs, please ensure that TOSHIBA products are used within spkcified
operating ranges as set forth in the most recent products specifications. Also, please keep in mind the precautions
and conditions set forth in the TOSHIBA Semiconductor Reliability Handbook.
OThe products described in this document are subject to the foreign exchange and foreign trade laws.
OThe information contained herein is presented only as a guide for the applications of our products. No responsibility
is assumed by TOSHIBA CORPORATION for any infringements of intellectual propert or other rights of the third
parties which may result from its use. No license is granted by implication or ot erwise under any intellectual
property or other rights of TOSHIBA CORPORATION or others.
OThe information contained herein is subject to change without notice.
1998-11-13 1/7
TOSHIBA TA8563FN
BLOCK DIAGRAM
9 "i) ID'
+ Vcc (s) Vcc
I——] JCS GND
BUFFER LPF AMP COMPA
, SOMQ 7kHz x3 _RATOR
REG-2 Cw" REF :35 mg; -
VR2 3.2V ON/OFF 1.5V _
(j..) 1,fY
PS OUT
PIN FUNCTION
PIN No. PIN NAME FUNCTION
1 SI Connection terminal of shock sensor (Positive polarity side)
2 VR2 Connection terminal of shock sensor (Reference voltage=3.2V)
Powersave control (0V input=powersave mode,
3 PS . .
5V input=active mode)
4 OUT Output terminal (Output= "L" when shock is detected)
5 GND Ground terminal
6 VCC Power supply voltage
7 BO Operation amplifier's output terminal
8 Bl Operation amplifier's input terminal
9 AO x3 (3 times) amplifier's output terminal
10 VR1 3.8V output terminal
1998-11-13 2/7
TOSHIBA
TA8563FN
MAXIMUM RATINGS
CHARACTERISTICS SYMBOL RATINGS UNIT
Power Supply Voltage VCC 7 V
Input Voltage to PS Terminal VIN -0.r-vcc+0.3 V
Power Dissipation PD 300 mV
Storage Temperature Tstg - 55--150 "C
RECOMMEND OPERATING CONDITION
CHARACTERISTICS SYMBOL RATINGS UNIT
Power Supply Voltage VCC 4.2--5.5 V
Operating Temperature TOPR - 25--85 "C
ELECTRICAL CHARACTERISTICS (Unless Otherwise Specified, Vcc=5V, Ta =25°C)
* : Marked parameters are reference data.
CHARACTERISTICS SYMBOL CIR- TEST CONDITION MIN. TYP. MAX. UNIT
Supply Current . -
(In active mode) ICCD - Pin 3 (PS) =SV - 2 - mA
Pin 3 (PS) = 0V,
Supply Current Iccs - Please refer to the - 0.1 1.0 ,uA
(In PS mode) . . .
characteristic list on next page
*lnput impedance ZIN - Input impedance of pin1(Sl) - 50 - Mn
Sl-l/RI (Different I/RI-Sl - Ta=o~7o°c -200 - 200 mV
Voltage Drop)
LPF Cut-Off Frequency fc - -3dB 5 7 10 kHz
*Gain of 3X G - - 8 9.5 11 dB
OP-AMP Input Current 'IN - - - 30 100 nA
*OP-AMP fr fT - - - 1.5 - MHz
OP-AMP Output Sink .
Current lsi (OP) - - - - 60 PA
OP-AMP Output
Source Current lso(OP) - - - - 400 pA
Pin 8 Terminal Voltage BI - - 1.85 2.0 2.15
*Trip Voltage . Comparison with the reference
(H Level) Vtrlp(+) - voltage (2.0V) of 8 terminal 0.45 0.5 0.55
*Trip Voltage . Comparison with the reference
(L Level) Vtripi-) - voltage(2.0V) of 8 terminal -0.45 -0.5 -0.55 V
Output Sink Current Isink - Vol =0.5V 0.5 - - mA
Output Source Current lsource - Voh =VCC' 1.0V 35 50 - PA
t',tput Voltage of Pin VR1 - Pin 10 output voltage 3.62 3.8 3.98 V
Output Voltage of Pin . VR1 VR1 VR1
2 - 2 V
VR2 VR Pin output volatge -0.6 - 0.55 -0.5
VR1 Terminal Output .
Sink Current Isi (VR1) - - - - 600 pzA
VR1 Terminal Output
Source Current Iso (VR1) - - - - 100 PA
1998-11-13 3/7
TOSHIBA TA8563FN
ELECTRICAL CHARACTERISTICS (Unless Otherwise Specified, VCC= 5V, Ta =25°C)
* : Marked parameters are reference data.
CHARACTERISTICS SYMBOL CIR- TEST CONDITION MIN. TYP. MAX. UNIT
. VIH - H LEVEL 3.0 - -
Input Voltage of Pin PS VIL - L LEVEL - - 1.0 V
Jfeshold Volt of Pin VTH - - - 2.3 - V
Delay time to steady the
* Delay time to Steady . .
the Operation after tPS - output voltage of 9 pm with - 110
. . CL=210pF of sensor, after
supply voltage rlsmg supply voltage rising
Consumption Current (PS Mode) VS Time Delay
Icc (,uA)
o. 0.01 0.1 1 10 100
Time (s)
1998-11-13 4/7
TOSHIBA TA8563FN
THE EXTERNAL DEVICES SETTING
Buffer AMP
SI XI X?
Shock sensor =
Cut-off Frequency
VR2 WI N DOW
CO M PARATO R
Fig.1 The Composition of G-Force Sense Amplifier
Fig.1 is the composition of G-force sense amplifier.
The shock sensor is connected between 1 and 2 terminal. (Please connect the positive polarity side
to 1 terminal.)
The setting of sensitivity is adjusted by external resistors of R1 & R2. Please refer to below figure
(fig.2) about setting value. For instance, when the signal from sensor (1 terminal input signal) is
5mV, the standard setting for detection is following :
RI--15k1 R2 = 500m
Besides, the liner high pass filter is composed by C1 & R1, and the secondary LPF is composed by
C1 & C2. Its cut-off frequency is defined as:
f--1/(2arxCxR)
RI, R2
C1 (pF)
18 0.6
12 0.4
l 2 3 4 5 6 7 8 9 10
(mV)Vin
Fig.2 The Signal Form Sensor (Vin) vs The Standard External Devices For Detection
(Note : C1 is figured as the cut-off frequency of HPF is setting to 100Hz)
1998-11-13 5/7
TOSHIBA TA8563FN
CAUTION IN USING THE TA8563FN
The treatment of connection from the shock sensor to signal input terminal (1 terminal) :
1 terminal of the TA8563FN is high-impedance input terminal. Therfore, please pay attetion not to
occur the leak current from other terminals.
If the leak current occured to 1 terminal (Particularly at soldering on PC substrate), there is
possibility to cause the problem of operation.
Due to avoid this problem, it's recommended to circule the signal line between the shock sensor
and 1 terminal by 2 terminal line, same voltage as 1 terminal.
(Please refer to the below application circuit.)
. The shock sensor:
Please confirm the characteristic of the using shock sensor sufficiently.
. Vcc, GND:
Please connected the capacitor between VCC and GND closely to the TA8563FN.
APPLICATION CIRCUIT
(Note) ta,,,,-,," :1 s. VR1 10
I =Sensor '
LE 2 VR2 AO 9
PowerW/OFF -r 3 PS Bl 8
c?;1tfe"--i 4 OUT BO 7
Signal
g-t SGND vcce JJ CC(5V)
Note) 1 terminal's voltage is same as 2 terminal. It's recommended to circle between the
shock sensor and 1 terminal by 2 terminal line for a protection of leak current
occurrence.
1998-11-13 6/7
TOSHIBA TA8563FN
OUTLINE DRAWING
SSOP10-P-0.65A UNIT: mm
[ilifil]IT"-"""
0.55TYP 1 , 5
“Til . . " lt
g. E 33
-' .- Ts
B - ---ee-1-----li-'
o' F to
t/ 0.45:0.2
Weight : 0.04g (Typ.)
1998-11-13 7/7

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