TC7106CPL Microchip Technology, TC7106CPL Datasheet - Page 17

ADC Single Dual Slope 3 1/2Digit LCD 40-Pin PDIP Tube

TC7106CPL

Manufacturer Part Number
TC7106CPL
Description
ADC Single Dual Slope 3 1/2Digit LCD 40-Pin PDIP Tube
Manufacturer
Microchip Technology
Datasheet

Specifications of TC7106CPL

Package
40PDIP
Resolution
3 1/2 Digit
Architecture
Dual Slope
Number Of Analog Inputs
1
Digital Interface Type
LCD
Input Type
Voltage
Polarity Of Input Voltage
Unipolar
Display Type
LCD
Configuration
7 Segment
Digits Or Characters
A/D 3.5 Digits
Current - Supply
800µA
Voltage - Supply
9V
Operating Temperature
0°C ~ 70°C
Mounting Type
Through Hole
Package / Case
40-DIP (0.600", 15.24mm)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Interface
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
158-1127
158-1127

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
TC7106CPL
Manufacturer:
MOT
Quantity:
6 221
FIGURE 8-2:
The analog common pin serves to set the analog section
reference or common point. The TC7106A is specifically
designed to operate from a battery, or in any
measurement system where input signals are not
referenced (float), with respect to the TC7106A power
source. The analog common potential of V+ – 3.0V gives
a 6V end of battery life voltage. The common potential
has a 0.001% voltage coefficient and a 15Ω output
impedance.
With sufficiently high total supply voltage (V+ – V- >
7.0V), analog common is a very stable potential with
excellent temperature stability, typically 20 ppm/°C.
This potential can be used to generate the reference
voltage. An external voltage reference will be
unnecessary in most cases because of the 50 ppm/°C
maximum temperature coefficient. See Section 8.5
“Internal Voltage Reference”.
8.4
The TEST pin potential is 5V less than V+. TEST may
be used as the negative power supply connection for
external CMOS logic. The TEST pin is tied to the
internally generated negative logic supply (Internal
Logic Ground) through a 500Ω resistor in the
TC7106A. The TEST pin load should be no more than
1 mA.
If TEST is pulled to V+ all segments plus the minus sign
will be activated. Do not operate in this mode for more
than several minutes with the TC7106A. With
TEST = V+, the LCD segments are impressed with a
DC voltage which will destroy the LCD.
The TEST pin will sink about 10 mA when pulled to V+.
8.5
The analog common voltage temperature stability has
been significantly improved
version of the industry standard circuits allow users to
upgrade old systems and design new systems without
© 2008 Microchip Technology Inc.
TEST (Pin 37)
Internal Voltage Reference
V+
Source
Power
V-
Common Mode Voltage Removed in Battery Operation with V
GND
V+
V-
Measured
System
(Figure
GND
8-3). The “A”
Analog
Common
V
V
V
IN -
IN +
BUF
V
REF -
external voltage references. External R and C values
do not need to be changed.
common supplying the necessary voltage reference for
the TC7106A/TC7107A.
FIGURE 8-3:
Temperature Coefficient.
FIGURE 8-4:
Connection.
TC7106A
C
AZ
TC7106/A/TC7107/A
V
REF
V
+
180
160
140
120
100
INT
200
80
60
40
20
0
V+
Set V
+
Segment
No Maximum Specified
REF
9V
Drive
V-
Maximum
POL
Typical
7106A
TC7106A
TC7107A
= 1/2 V
Limit
TC
OSC1
OSC3
OSC2
V-
BP
Common
Analog Common
Internal Voltage Reference
Analog
V
FULL SCALE
V
REF +
REF
LCD Display
V+
Maximum
Specified
Typical
ICL7106
IN
1
-
Figure 8-4
No
- = Analog Common.
36
35
32
V
REF
DS21455D-page 17
Maximum
Specified
ICL7136
Typical
24k Ω
1k Ω
shows analog
No

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