ETC TS08N

TS08N
8-Channel Self Calibration Capacitive Touch Sensor
SPECIFICATION V1.8
AUGUST 2007
ADSemiconductor
ADSemiconductor®
TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
1 Specification
1.1 General Feature
8-Channel capacitive sensor with auto sensitivity calibration
Selectable output operation (single or multi output mode)
Low current consumption
Uniformly adjustable 2 step sensitivity
Sync function for parallel operation
Adjustable internal frequency with external resister
Selectable sense line impedance out of scanning
Open-drain digital output
Embedded common and normal noise elimination circuit
RoHS compliant 24SOP and 32QFN package
1.2 Application
Home application
Membrane switch replacement
Sealed control panels, keypads
Door key-lock matrix application
Touch screen replacement application
1.3 Package (24SOP / 32QFN)
24SOP
32QFN
Drawings not to scale
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ADSemiconductor®
TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
2 Pin Description
2.1 24SOP package
PIN
Number
Name
I/O
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
CS6
CS7
CS8
CDEG
N.C.
VSS
RST
OUT1
OUT2
OUT3
OUT4
OUT5
OUT6
OUT7
OUT8
Analog Input
Analog Input
Analog Input
Analog Input
Ground
Digital Input
Digital Output
Digital Output
Digital Output
Digital Output
Digital Output
Digital Output
Digital Output
Digital Output
16
IMP_SEL
Digital Input
17
SYNC/OPT
Analog
Input/Output
18
19
20
21
22
23
24
VDD
CS1
CS2
CS3
CS4
R_BIAS
CS5
Power
Analog Input
Analog Input
Analog Input
Analog Input
Analog Input
Analog Input
Note 1
Note 2
Description
CH6 capacitive sensor input
CH7 capacitive sensor input
CH8 capacitive sensor input
3 step sensitivity level selection
Supply ground
System reset (High reset)
CH1 output (Open drain)
CH2 output (Open drain)
CH3 output (Open drain)
CH4 output (Open drain)
CH5 output (Open drain)
CH6 output (Open drain)
CH7 output (Open drain)
CH8 output (Open drain)
Sense line impedance selection
(Note 1)
Output mode selection
(Single Output / Multi Output) (Note 2)
Sync pulse input /output
Power (2.5V~5.0V)
CH1 capacitive sensor input
CH2 capacitive sensor input
CH3 capacitive sensor input
CH4 capacitive sensor input
Internal bias adjust input
CH5 capacitive sensor input
Protection
VDD/GND
VDD/GND
VDD/GND
VDD/GND
VDD
VDD/GND
VDD/GND
VDD/GND
VDD/GND
VDD/GND
VDD/GND
VDD/GND
VDD/GND
VDD/GND
VDD/GND
VDD/GND
GND
VDD/GND
VDD/GND
VDD/GND
VDD/GND
VDD/GND
VDD/GND
: Refer to 6.7 IMP_SEL (Sense Line Impedance) Implementation
: Refer to 6.4 SYNC/OPT implementation
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ADSemiconductor®
TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
2.2 32QFN package
PIN No.
Name
I/O
Description
Protection
1
RBIAS
Analog Input
Internal bias adjust input
VDD/GND
2
VSS
Analog Input
-
VDD/GND
3
CS5
Analog Input
CH5 capacitive sensor input
VDD/GND
4
CS6
Analog Input
CH6 capacitive sensor input
VDD/GND
5
CS7
Analog Input
CH7 capacitive sensor input
VDD/GND
6
CS8
Analog Input
CH8 capacitive sensor input
VDD/GND
7
CDEG
Analog Input
3 step sensitivity level selection
VDD/GND
8
N.C.
-
No Connection
-
9
N.C.
-
No Connection
-
10
N.C.
-
No Connection
-
11
N.C.
-
No Connection
-
12
N.C.
-
No Connection
-
13
VSS
Ground
Supply ground
VDD
14
DUMMY
-
No Connection (Note 3)
-
15
N.C.
-
No Connection
-
16
17
RST
OUT1
Digital Input
Digital Output
System reset (High reset)
CH1 output (Open drain)
VDD/GND
VDD/GND
18
OUT2
Digital Output
CH2 output (Open drain)
VDD/GND
19
OUT3
Digital Output
CH3 output (Open drain)
VDD/GND
20
OUT4
Digital Output
CH4 output (Open drain)
VDD/GND
21
22
N.C.
OUT5
Digital Output
No Connection
CH5 output (Open drain)
VDD/GND
23
OUT6
Digital Output
CH6 output (Open drain)
VDD/GND
24
OUT7
Digital Output
CH7 output (Open drain)
VDD/GND
25
OUT8
Digital Output
VDD/GND
26
IMP_SEL
Digital Input
CH8 output (Open drain)
Sense line impedance selection
(Note 1)
27
SYNC/OPT
Digital
Input/Output
28
VDD
Power
29
CS1
Analog Input
CH1 capacitive sensor input
VDD/GND
30
CS2
Analog Input
CH2 capacitive sensor input
VDD/GND
31
CS3
Analog Input
CH3 capacitive sensor input
VDD/GND
32
CS4
Analog Input
CH4 capacitive sensor input
VDD/GND
Note 3
VDD/GND
Output mode selection
(Single Output / Multi Output) (Note 2)
Sync pulse input /output
VDD/GND
Power (2.5V~5.0V)
GND
: DUMMY pin should be no connection.
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TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
3 Absolute Maximum Rating
Battery supply voltage
5.5V
Maximum voltage on any pin VDD+0.3
Maximum current on any PAD 100mA
Power Dissipation
800mW
Storage Temperature
-50 ~ 150℃
Operating Temperature
-20 ~ 75℃
Junction Temperature
150℃
Note Unless any other command is noted, all above are operated in normal temperature.
4 ESD & Latch-up Characteristics
4.1 ESD Characteristics
Mode
H.B.M
M.M
Polarity
Pos / Neg
Pos / Neg
Max
Reference
2000V
VDD
2000V
VSS
2000V
P to P
200V
VDD
200V
VSS
200V
P to P
500V
C.D.M
Pos / Neg
DIRECT
800V
4.2 Latch-up Characteristics
Mode
Polarity
Max
Positive
200mA
Negative
-200mA
Positive
8.0V
I Test
V supply over 5.0V
Test Step
25mA
1.0V
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TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
5 Electrical Characteristics (Preliminary)
▪ VDD=3.3V, Rb=510k, (Unless otherwise noted), TA = 25℃
Characteristics
Symbol
Operating supply voltage
VDD
Current consumption
IDD
Min
Typ
Max
Units
2.5
3.3
5.0
V
VDD= 3.3V RB=510k
-
80
130
VDD= 5.0V RB=510k
-
200
315
TA = 25℃
-
-
4.0
㎃
CS
-
10
100
㎊
Sense input
resistance range
RS
-
200
1000
Ω
Minimum detective
capacitance difference
ΔC
Cs = 10pF, CDEG Short to GND
0.2
-
-
Cs = 10pF, CDEG Open
0.3
-
-
-
12
-
-
30M
-
VDD = 3.3V RB = 510k
-
100
-
VDD = 5.0V RB = 510k
-
80
-
VDD = 2.5V
100
200
470
VDD = 3.3V
200
330
680
VDD = 5.0V
300
510
1000
CB_MAX
-
820
1000
pF
RSYNC
1
2
20
MΩ
Output maximum sink
current
Sense input
capacitance range
IOUT
Test Condition
㎂
Note4
Output impedance
(open drain)
Zo
Self calibration time after
system reset
TCAL
Recommended bias
resistance range
RB
ΔC > 0.2pF, Cs = 10pF,
CDEG = 200pF
ΔC < 0.2pF, Cs = 10pF,
CDEG = 200pF
㎊
Ω
ms
kΩ
Note5
Maximum bias
capacitance
Recommended sync
resistance range
Sensitivity level selection
Note 4:
Note 5:
CDEG
High sensitivity
Short
Normal sensitivity
Open
㎊
The sensitivity can be increased with lower CS value.
The recommended value of CS is 10pF when using 3T PC(Poly Carbonate) cover and
10 ㎜ x 7 ㎜ touch pattern.
The lower RB is recommended in noisy condition.
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TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
6 TS08N Implementation
6.1 R_BIAS implementation
VDD
CB
RB
R_BIAS <<
The R_BIAS is connected to the resistor to decide the oscillator and internal bias current. The
sensing frequency, internal clock frequency and current consumption are therefore able to be
adjusted with RB. A voltage ripple on R_BIAS can make critical internal error, so CB is connected
to the VDD (not GND) is recommended. (The typical value of C B is 820pF and the maximum
Value is 1nF.)
IDD [uA]
450.0
2.5 V
400.0
3.3 V
5.0 V
350.0
300.0
250.0
200.0
150.0
100.0
50.0
0.0
100
200
300
400
500
RB600
[kΩ]
700
800
900
1000
1100
Normal operation current consumption curve
The current consumption curve of TS08N is represented in accordance with RB value as above.
The lower RB requires more current consumption but it is recommended in noisy application. For
example, refrigerator, air conditioner and so on.
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TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
6.2 CS implementation
RS8
CS8 <<
Touch PAD8
CS8
RS1
CS1 <<
Touch PAD1
CS1
The parallel capacitor CS1 is added to CS1 and CS8 to CS8 to adjust sensitivity. The sensitivity
will be increased when smaller value of CS is used. (Refer to the below Sensitivity Example
Figure) It could be useful in case detail sensitivity mediation is required. The TS08N has three
steps sensitivity and it is available to control with CDEG pin. (Refer to 6.3 CDEG
implementation chapters) The TS08N has eight independent touch sensor input from CS1 to
CS8. The internal touch decision process of each channel is separated from each other.
Therefore eight channel touch key board application can be designed by using only one TS08N
without coupling problem. The RS is serial connection resistor to avoid mal-function from
external surge and ESD. (It might be optional.) From 200Ω to 1kΩ is recommended for RS. The
size and shape of PAD might have influence on the sensitivity. The sensitivity will be optimal
when the size of PAD is approximately an half of the first knuckle (it’s about 10 ㎜x 7 ㎜). The
connection line of CS1 and CS2 to touch PAD is recommended to be routed as short as
possible to prevent from abnormal touch detect caused by connection line.
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TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
Sensitivity example figure at High sensitivity
6.3 CDEG implementation
CDEG <<
N.C.: Normal Sensitivity
CDEG <<
GND: Higher Sensitivity
The TS08N has internal threshold levels to detect the capacitance variation for the decision of
touching. The one of two step sensitivity is decided by CDEG pin connection. The sensitivity is
decided by CDEG pin as below table. The high sensitivity is not recommended in noisy
applications.
CDEG Connection vs. sensitivity
Sensitivity Level
Normal
High
CDEG Connection
Not Connect
Connect to GND
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TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
6.4 SYNC/OPT implementation
6.4.1
Single Connection
This pin will be assigned for the output option selection. It will decide that TS08N is working on
single or multi touch detection mode. It should be implemented as below for these.
VDD
SYNC/OPT <<
(Single Mode Implementation)
RSYNC
SYNC/OPT <<
(Multi Mode Implementation)
6.4.2 Multi Connection
Over two TS08N can work on the one application at the same time thanks to SYNC function
with this pin. The SYNC pulse prevents over two sensing signal from interfering with each other.
RSYNC is pull-down resistor of SYNC/OPT pin. Too big value of RSYNC makes the SYNC pulse
falling delay, and too small value of RSYNC makes rising delay. Typical value of RSYNC is 2MΩ.The
Sync pin should be implemented as below. The TS08N can also be used with the other TSxx
series by employing this SYNC function. The TS08N could only operate on multi output mode in
this configuration.
SYNC/OPT
<<
1st TS08N
RSYNC
SYNC(/OPT)<<
2nd TS08N or TS**
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TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
6.5 RESET implementation
TS08N has internal data latches, so initial state of these latches must be reset by external reset
pulse before normal operation starts. The reset pulse can be controlled by host MCU directly or
other reset device. If not, the circuit should be composed as below figure. The reset pulse must
have high pulse duration about a few msec to cover power VDD rising time. The recommended
value of RRST and CRST are 330KΩ and 100nF.
VDD
CRST
RESET <<
RRST
Recommended reset circuits 1
The better performance is warranted with below reset circuit. The Q1 is turned on and makes
reset pulse when power is on and VDD is raised to operating voltage. After a few msec
(duration time is determined by R7, R8, C5), Q1 is turned off and TS08N can be operated with
normal sensitivity.
VDD
R7
200K
Q1
2N3906
R8 200K
RESET
C5
220nF
R9
470K
Recommended reset circuits 2
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TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
6.6 Output Circuit Implementation
VDD
ROUT1
OUT1
OUTPUT1
ROUT2
ROUT3
OUTPUT2
OUT2
ROUT4
OUTPUT3
OUT3
ROUT5
OUTPUT4
OUT4
OUTPUT5
OUT5
ROUT6
OUTPUT6
OUT6
ROUT7
OUTPUT7
OUT7
ROUT8
OUTPUT8
OUT8
The OUTPUT pins have an open drain structure. For this reason, the connection of pull-up
resistor ROUT is required between OUTPUT and VDD. The maximum output sink current is 4mA,
so over a few kΩ must be used as ROUT. Normally 10kΩ is used as ROUT.
The OUTPUT is high in normal situation, and the value is low when a touch is detected on the
corresponding CS.
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TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
6.7 IMP_SEL (Sense Line Impedance) Implementation
VDD
IMP_SEL <<
(Sense Line Low Impedance Implementation)
IMP_SEL <<
(Sense Line High Impedance Implementation)
The sense input impedance might be selected by the IMP_SEL pin. In case of multi channel
touch sensor application, the sense lines could be drawing side by side with very small gap. In
this case, the sensitivity could be affected by the neighbor channel during out of scanning.
Therefore the connection of IM_SEL pin is recommended to connect with VDD (low impedance
mode). In the other case, the high impedance mode (connection with GND) has an advantage
for sensitivity.
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TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
7 Recommended Circuit Diagram
VDD
820p
SEN6
SEN7
SEN8
200
200
200
10p 10p 10p
N.C.
N.C.
VDD
100n
VDD
1
2
3
4
5
6
7
8
9
10
11
12
CS5
CS6
RBIAS
CS7
CS4
CS8
CS3
CDEG
CS2
N.C.
VSS
CS1
RESET
VDD
SY /OP
OUT1
OUT2 IMP_SEL
OUT3
OUT8
OUT4
OUT7
OUT5
OUT6
24
23
22
21
20
19
18
17
16
15
14
13
200
SEN5
200
200
200
200
SEN4
SEN3
SEN2
SEN1
330k
10p 10p 10p 10p 10p
2M
VDD
1u
TS08N
330k
10K
10K
10K
10K
10K
10K
10K
10K
OUT8
OUT7
OUT6
OUT5
OUT4
OUT3
OUT2
OUT1
TS08N(24SOP) Application Example Circuit
The VDD periodic voltage ripple over 50mV and the ripple frequency is lower than 10 kHz can
cause wrong sensitivity calibration. To prevent above problem, power (VDD, GND) line of touch
circuit should be separated from other circuit. Especially LED driver power line or digital
switching circuit power line certainly should be treated to be separated from touch circuit.
When TS08N used in noisy environment, Lower RB resistor is recommended.
In PCB layout, RBIAS pattern should not be placed on touch pattern. If not, CB has to be
connected. The RBIAS pattern should be routed as short as possible.
The CS patterns also should be routed as short as possible and the width of line might be
about 0.25mm.
The capacitor that is between VDD and GND is an obligation. It should be located as close as
possible from TS08N.
The CS pattern routing should be formed by bottom metal (opposite metal of touch PAD).
The empty space of PCB must be filled with GND pattern to strengthen GND pattern and to
prevent external noise from interfere with sensing frequency.
The sensitivity can be changed by connection of CDEG.
(See 6.3 CDEG implementation chapter)
The TS08N is reset if RESET pin is high. (See 6.5 Reset implementation chapter)
The OUT1 ~ OUT8 are open drain output ports. Therefore the pull-up resistor should be
needed as above figure.
The TS08N is working with single output mode if SYNC pin is high and it will be in multi output
mode when it’s low. The resistor which is connected with GND should be connected with
SYNC pin when the application is required over two TS08N devices.
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T5
Pad
T6
Pad
T7
Pad
T8
Pad
Pad
Pad
Pad
Pad
1
1
1
1
RS8 200
RS7 200
RS6 200
RS5 200
CS6
10pF
0
CS5
10pF
0
0
0
0
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0
CS7
10pF
0
CS2
10pF
0
CS8
10pF
0
CS1
10pF
R3
330K
8
N.C.
6
5
4
3
2
1
7
CB
820pF
N.C.
VDD
N.C.
CDEG
CS8
CS7
CS6
CS5
VSS
RBIAS
9
N.C.
CS3
10pF
VDD
RS4 RS3 RS2 RS1
200 200 200 200
32
CS4
10
CS4
10pF
Pad
1
Pad
1
Pad
1
N.C.
N.C.
31
CS3
N.C.
0
0
27
Pad
1
30
CS2
11
N.C.
N.C.
12
N.C.
N.C.
29
CS1
28
VDD
VSS
13
SYNC/OPT
0
R1
2M
14
N.C.
N.C.
15
25
OUT8
RST
26
IMP_SEL
N.C.
N.C.
TS08N
16
T4 T3 T2 T1
Pad Pad Pad Pad
OUT1
OUT2
OUT3
OUT4
N.C.
OUT5
OUT6
OUT7
0
CVDD
1uF
VDD
RO4
10k
RO3
10k
RO2
10k
OUT8 OUT8
RO1
10k
OUT1 OUT1
17
0
OUT2 OUT2
18
R4
330K
OUT3 OUT3
19
C2
100nF
OUT4 OUT4
OUT5 OUT5
20
21
22
OUT6 OUT6
RO5
10k
OUT7 OUT7
RO6
10k
23
N.C.
RO7
10k
24
VDD
RO8
10k
VDD
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TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
TS08N(32QFN) Application Example Circuit
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TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
7.1 Example – Power Line Split Strategy PCB Layout
A. Not split power Line (Bad power line design)
The noise that is generated by AC load or relay can be loaded at 5V power line.
A big inductance might be appeared in case of the connection line between main board and
display board is too long, moreover the voltage ripple could be generated by LED (LCD)
display driver at VDD (5V).
B. Split power Line (One 5V regulator used) – Recommended
C. Split power Line (Separated 5V regulator used) – Strongly recommended
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TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
8 MECHANICAL DRAWING
8.1 Mechanical Drawing (24 SOP)
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TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
8.2 Mechanical Drawing (32 QFN)
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ADSemiconductor®
TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
DIM
A
A1
A3
b
D
E
D2
E2
e
L
L1
P
aaa
ccc
MIN
0.80
0.00
0.18
3.20
3.20
0.35
-
NOM
0.85
0.203 REF
0.23
5.00 BSC
5.00 BSC
3.30
3.30
0.50 BSC
0.40
45o BSC
0.15
0.10
MAX
0.90
0.05
0.30
3.40
3.40
0.45
0.10
NOTES
1. ALL DIMENSIONS ARE IN MILLIMETERS.
ANGLES ARE IN DEGREES.
2. DIMENSION b APPLIES TO METALLIZED
TERMINAL AND IS MEASURED
BETWEEN 0.25mm AND 0.30mm FROM
TERMINAL TIP.
DIMENSION L1 REPRESENTS TERMINAL
FULL BACK FROM PACKAGE EDGE UP
TO 0.1mm IS ACCEPTABLE.
3. COPLANARITY APPLIES TO THE
EXPOSED HEAT SLUG AS WELL AS THE
TERMINAL.
4. RADIUS ON TERMINAL IS OPTIONAL.
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TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
9 MARKING DESCRIPTION
Device Code
: TS08N
Type of version
Channel Number
Touch Switch Group
Weekly Code
: YY ZZ
Manufacturing Year
Manufacturing Week
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TS08N (8-CH Auto Sensitivity Calibration Capacitive Touch Sensor)
NOTES:
LIFE SUPPORT POLICY
AD SEMICONDUCTOR’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN
LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE
PRESIDENT AND GENERAL COUNSEL OF AD SEMICONDUCTOR CORPORATION
The ADS logo is a registered trademark of ADSemiconductor
ⓒ 2006 ADSemiconductor – All Rights Reserved
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www.adsemicon.co.kr
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