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TSC2006IRTJTG4 Datenblatt(PDF) 4 Page - Texas Instruments

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Teilenummer TSC2006IRTJTG4
Bauteilbeschribung  1.2V to 3.6V, 12-Bit, Nanopower, 4-Wire TOUCH SCREEN CONTROLLER with SPI??Interface
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TSC2006IRTJTG4 Datenblatt(HTML) 4 Page - Texas Instruments

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TSC2006
SBAS415C – JUNE 2007 – REVISED MARCH 2009 ......................................................................................................................................................... www.ti.com
ELECTRICAL CHARACTERISTICS (continued)
At TA = –40°C to +85°C, SNSVDD = VREF = +1.2V to +3.6V, I/OVDD = +1.2V to +3.6V, unless otherwise noted.
TSC2006
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNIT
DIGITAL INPUT/OUTPUT
Logic family
CMOS
1.2V
≤ I/OVDD < 1.6V
0.7 × I/OVDD
I/OVDD + 0.3
V
VIH
1.6V
≤ I/OVDD ≤ 3.6V
0.7 × I/OVDD
I/OVDD + 0.3
V
1.2V
≤ I/OVDD < 1.6V
–0.3
0.2 × I/OVDD
V
VIL
1.6V
≤ I/OVDD ≤ 3.6V
–0.3
0.3 × I/OVDD
V
IIL
SCLK pin or CS pin
–1
1
µA
Logic level
CIN
10
pF
VOH
IOH = 2 TTL loads
I/OVDD – 0.2
I/OVDD
V
VOL
IOL = 2 TTL loads
0
0.2
V
ILEAK
Floating output
–1
1
µA
COUT
Floating output
10
pF
Data format
Straight Binary
POWER-SUPPLY REQUIREMENTS
Power-supply voltage
SNSVDD
Specified performance
1.2
3.6
V
I/OVDD(6)
1.2
SNSVDD
V
Filter off, M = W = 1, C[3:0] =
(1,0,0,0), RM = 1, CL[1:0] =
(0,1), cont AUX mode, fADC =
SNSVDD = I/OVDD = VREF = 1.6V
500
625
µA
2MHz, without reading data
register
TA = +25°C, filter on, M = 15,
SNSVDD = I/OVDD = VREF = 1.2V
233
µA
W = 7, PSM = 1, C[3:0] =
x
(0,0,0,0), RM = 1, CL[1:0] =
SNSVDD = I/OVDD = VREF = 1.6V
(0,1), BTD[2:0] = (1,0,1),
340
µA
x
50SSPS, MAVEX = MAVEY =
MAVEZ = 1, fADC = 2MHz,
SNSVDD = I/OVDD = VREF = 3.0V
745
µA
sensor drivers supply included
TA = +25°C, filter off, M = W =
SNSVDD = I/OVDD = VREF = 1.2V
215
µA
1, PSM = 1, C[3:0] = (0,0,0,0),
x
RM = 1, CL[1:0] = (0,1),
SNSVDD = I/OVDD = VREF = 1.6V
BTD[2:0] = (1,0,1), 50SSPS,
318
µA
x
MAVEX = MAVEY = MAVEZ
= 1, fADC = 2MHz, sensor
SNSVDD = I/OVDD = VREF = 3.0V
706
µA
drivers supply included
Quiescent supply current(7)(8)
TA = +25°C, filter off, M = W =
SNSVDD = I/OVDD = VREF = 1.2V
272
µA
1, C[3:0] = (0,1,0,1), RM = 1,
SNSVDD = I/OVDD = VREF = 1.6V
361
µA
CL[1:0] = (0,1), non-cont AUX
mode, fADC = 2MHz, fSCLK =
SNSVDD = I/OVDD = VREF = 3.0V
694
µA
5.5MHz
SNSVDD = I/OVDD = VREF = 1.2V,
348
µA
TA = +25°C, filter on, M = 7, W
~11.3kSPS effective rate
= 3, C[3:0] = (0,1,0,1), RM =
1, CL[1:0] = (0,1), MAVEAUX
SNSVDD = I/OVDD = VREF = 1.6V,
469
µA
= 1, non-cont AUX mode, fADC
~12.7kSPS effective rate
= 2MHz, fSCLK = 3.5MHz, full
SNSVDD = I/OVDD = VREF = 3.0V,
speed
894
µA
~13.3kSPS effective rate
SNSVDD = I/OVDD = VREF = 1.2V,
TA = +25°C, filter on, M = 7, W
36.0
µA
~1.17kSPS effective rate
= 3, C[3:0] = (0,1,0,1), RM =
1, CL[1:0] = (0,1), MAVEAUX
SNSVDD = I/OVDD = VREF = 1.6V,
= 1, non-cont AUX mode, fADC
43.2
µA
~1.17kSPS effective rate
= 2MHz, fSCLK = 3.5MHz,
reduced speed (8.2kSPS
SNSVDD = I/OVDD = VREF = 3.0V,
78.6
µA
equivalent rate)
~1.17kSPS effective rate
Power-down supply current
TA = +25°C, CS high, SCLK = 0, SNSVDD = I/OVDD = VREF = 1.6V
0.023
0.8
µA
(6)
I/OVDD must be
≤ SNSVDD.
(7)
Supply current from SNSVDD.
(8)
For detailed information on test condition parameter and bit settings, see the Digital Interface section.
4
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