TC14433COG713 Microchip Technology, TC14433COG713 Datasheet - Page 5

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TC14433COG713

Manufacturer Part Number
TC14433COG713
Description
IC ADC 3 1/2 DIGIT 24SOIC
Manufacturer
Microchip Technology
Datasheet

Specifications of TC14433COG713

Display Type
LED
Configuration
7 Segment
Interface
BCD
Digits Or Characters
A/D 3.5 Digits
Current - Supply
1.8mA
Voltage - Supply
4.5 V ~ 8 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
24-SOIC (7.5mm Width)
Lead Free Status / RoHS Status
Request inventory verification / Request inventory verification
2.0
The descriptions of the pins are listed in Table 2-1.
© 2006 Microchip Technology Inc.
TABLE 2-1:
(24-Pin CERDIP)
(24-Pin PDIP)
(24-Pin SOIC)
Pin No.
10
11
12
13
14
PIN DESCRIPTIONS
1
2
3
4
5
6
7
8
9
PIN FUNCTION TABLE
Pin No.
(28-Pin
PLCC)
10
11
12
13
14
16
17
2
3
4
5
6
7
9
Symbol
R
CLK
CLK
V
EOC
CO
CO
V
V
V
DU
V
R
1
C
REF
AG
EE
SS
/C
X
1
1
1
2
1
0
1
This is the analog ground. It has a high input impedance. The pin determines
the reference level for the unknown input voltage (V
voltage (V
Reference voltage – Full scale output is equal to the voltage applied to V
Therefore, full scale voltage of 1.999V requires 2V reference and 199.9 mV
full scale requires a 200 mV reference. V
When switched to V
conversion cycle.
The unknown input voltage (V
voltage (V
This pin is for external components used for the integration function in the
dual slope conversion. Typical values are 0.1 μF (Mylar) capacitor for C
R
R
250 msec conversion time.
These pins are used for connecting the offset correction capacitor.
The recommended value is 0.1 μF.
These pins are used for connecting the offset correction capacitor.
The recommended value is 0.1 μF.
Display update input pin. When DU is connected to the EOC output, every
conversion is displayed. New data will be strobed into the output latches
during the conversion cycle if a positive edge is received on DU, prior to the
ramp down cycle. When this pin is driven from an external source, the
voltage should be referenced
to V
Clock input pins. The TC14433 has its own oscillator system clock.
Connecting a single resistor between CLK
frequency.
A crystal or OC circuit may be inserted in lieu of a resistor for improved
CLK
need only have standard CMOS output drive. This pin is referenced to V
for external clock inputs. A 300 kΩ resistor yields a clock frequency of about
66 kHz. See Section 3.0 “Typical Characteristics”. (Also see Figure for
alternate circuits.)
Negative power current. Connection pin for the most negative supply. Please
note the current for the output drive circuit is returned through V
supply current is 0.8 mA.
Negative power supply for output circuitry. This pin sets the low voltage level
for the output pins (BCD, Digit Selects, EOC, OR). When connected to
analog ground, the output voltage is from analog ground to V
connected to V
operating range for V
End of conversion output generates a pulse at the end of each conversion
cycle. This generated pulse width is equal to one half the period of the
system clock.
1
1
= 470 kΩ (resistor) for 2V full scale.
= 27 kΩ (resistor) for 200 mV full scale. Clock frequency of 66 kHz gives
SS
1
, the clock input, can be driven from an external clock source, which
.
REF
REF
).
) in a ratiometric A/D conversion.
EE
, the output swing is from V
EE
SS
, the system is reset to the beginning of the
is between the V
X
) is measured as a ratio of the reference
Description
REF
DD
1
and CLK
-3 volts and V
functions as system reset also.
EE
to V
TC14433/A
X
DD
0
) and the reference
sets the clock
. The recommended
EE
DS21394C-page 5
.
DD
. If
SS
. Typical
1
REF
EE
.
.

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