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TLC533AI Datenblatt(PDF) 8 Page - Texas Instruments

Teilenummer TLC533AI
Bauteilbeschribung  LinCMOSE 8-BIT ANALOG-TO-DIGITAL PERIPHERALS WITH 5 ANALOG AND 6 DUAL-PURPOSE INPUTS
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Hersteller  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
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TLC533AI Datenblatt(HTML) 8 Page - Texas Instruments

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TLC532AI, TLC532AM
LinCMOS
™ 8-BIT ANALOG-TO-DIGITAL PERIPHERALS
WITH 5 ANALOG AND 6 DUAL-PURPOSE INPUTS
SLAS070 – D2819, NOVEMBER 1983 – REVISED SEPTEMBER 1986
POST OFFICE BOX 655303
• DALLAS, TEXAS 75265
8
electrical characteristics over recommended operating free-air temperature range, VREF+ = VCC,
VREF– at ground, fCLK = 2 MHz (unless otherwise noted)
PARAMETER
TEST CONDITIONS
MIN
TYP†
MAX
UNIT
VOH
High-level output voltage
IOH = – 1.6 mA
2.4
V
VOL
Low-level output voltage
IOL = 1.6 mA
0.4
V
IIH
High level input current
Any digital or Clock input
VIH =5 5V
10
µA
IIH
High-level input current
Any control input
VIH = 5.5 V
1
µA
IIL
Low level input current
Any digital or Clock input
VIL =0
– 10
µA
IIL
Low-level input current
Any control input
VIL = 0
– 1
µA
IOZ
Off state (high impdance state) output current
VO = VCC
10
µA
IOZ
Off-state (high-impdance state) output current
VO = 0
– 10
µA
II
Analog input current (see Note 3)
VI = 0 to VCC
±500
nA
Leakage current between selected channel
and all other analog channels
VI = 0 to VCC, Clock input at 0 V
±400
nA
Ci
Input capacitance
Digital pins 3 thru 10
4
30
pF
Ci
Input capacitance
Any other input pin
2
15
pF
ICC + IREF+ Supply current plus reference current
VCC = VREF+ = 5.5 V,
Outputs open
1.5
3
mA
ICC
Supply current
VCC = 5.5 V
1.4
2
mA
NOTE 3: Analog input current is an average of the current flowing into a selected analog channel input during one full conversion cycle.
operating chacteristics over recommended ranges VCC, VREF+, and operating free-air temperature,
VREF– at ground, fclock = 2 MHz (unless otherwise noted)
PARAMETER
TEST CONDITIONS
MIN
TYP†
MAX
UNIT
Linearity error (see Note 4)
±0.5
LSB
Zero error (see Note 5)
±0.5
LSB
Full-scale error (see Note 5)
±0.5
LSB
Total unadjusted error (see Note 6)
±0.5
LSB
Absolute accuracy error (see Note 7)
±1
LSB
tconv
Conversion time (including channel acquisition time)
30
Clock
Cycles
tacq
Channel acquisition time prior to starting conversion
10
Clock
Cycles
ten
Data output enable time (see Note 8)
CL = 50 pF, RL = 3 kΩ
250
ns
tdis
Data output disable time
CL = 50 pF, RL = 3 kΩ
10
ns
t (bus)
Data output rise time
High-impedance to high level
CL =50 pFRL =3kΩ
150
ns
tr(bus) Data output rise time
Low-to-high level
CL = 50 pF, RL = 3 kΩ
300
ns
tf(bus) Data output fall time
High-impedance to low level
CL =50 pFRL =3kΩ
150
ns
tf(bus) Data output fall time
High-to-low level
CL = 50 pF, RL = 3 kΩ
300
ns
† Typical values are at VCC = 5 V, TA = 25°C.
NOTES: 4. Linearity error is the deviation from the best straight line through the A/D transfer characteristics.
5. Zero error is the difference between 00000000 and the converted output for zero input voltage; full-scale error is the difference between
11111111 and the converted output for full-scale input voltage.
6. Total unadjusted error is the sum of liinearity, zero, and full-scale errors.
7. Absolute accuracy error is the maximum difference between an analog value and the nominal midstep value within any step. This
includes all errors including inherent quantization error, which is the
±0.5 LSB uncertainty caused by the A/D converters’ finite
resolution.
8. If chip-select setup time, tsu(CS), is less than 0.14 µs, the effective data output enable time, ten, may extend such that tsu(CS) + ten is
equal to a maximum of 0.475
µs.



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