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PDF TDA8766G Data sheet ( Hoja de datos )

Número de pieza TDA8766G
Descripción 10-bit high-speed 2.7 to 5.25 V analog-to-digital converter
Fabricantes NXP Semiconductors 
Logotipo NXP Semiconductors Logotipo



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INTEGRATED CIRCUITS
DATA SHEET
TDA8766
10-bit high-speed 2.7 to 5.25 V
analog-to-digital converter
Product specification
Supersedes data of 1995 Mar 22
File under Integrated Circuits, IC02
1996 Mar 20

1 page




TDA8766G pdf
Philips Semiconductors
10-bit high-speed 2.7 to 5.25 V
analog-to-digital converter
Product specification
TDA8766
LIMITING VALUES
In accordance with the Absolute Maximum Rating System (IEC 134).
SYMBOL
VDDA
VDDD1, VDDD2
VDDO
VDD
VI
Vclk(p-p)
IO
Tstg
Tamb
Tj
PARAMETER
analog supply voltage
digital supply voltages
output stages supply voltage
supply voltage difference
VDDA VDDD
VDDD VDDO
VDDA VDDO
input voltage
AC input voltage for switching
(peak-to-peak value)
output current
storage temperature
operating ambient temperature
junction temperature
CONDITIONS
note 1
note 1
note 1
referenced to VSSA
referenced to VSSD
MIN.
0.3
0.3
0.3
MAX.
+7.0
+7.0
+7.0
UNIT
V
V
V
1.0
1.0
1.0
0.3
55
20
+4.0
+4.0
+4.0
+7.0
VDDD
10
+150
+75
+150
V
V
V
V
V
mA
°C
°C
°C
Note
1. The supply voltages VDDA, VDDD and VDDO may have any value between 0.3 V and +7.0 V provided that the supply
voltage differences VDD are respected.
HANDLING
Inputs and outputs are protected against electrostatic discharges in normal handling. However, to be totally safe, it is
desirable to take normal precautions appropriate to handling integrated circuits.
THERMAL CHARACTERISTICS
SYMBOL
Rth j-a
PARAMETER
thermal resistance from junction to ambient in free air
VALUE
90
UNIT
K/W
1996 Mar 20
5

5 Page





TDA8766G arduino
Philips Semiconductors
10-bit high-speed 2.7 to 5.25 V
analog-to-digital converter
Product specification
TDA8766
handbook, full pagewidth
V DDD
OE
50 %
output
data
output
data
t dLZ
t dZL
HIGH
HIGH
t dHZ
t dZH
90 %
LOW
50 %
LOW 10 %
TDA8766
OE
50 %
3.3 k
20 pF
V DDD
S1
TEST
t dLZ
t dZL
t dHZ
t dZH
S1
VDDD
VDDD
GND
GND
MLC855
fOE = 100 kHz.
Fig.5 Timing diagram and test conditions of 3-state output delay time.
1996 Mar 20
11

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