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PDF ICL8212CTY Data sheet ( Hoja de datos )

Número de pieza ICL8212CTY
Descripción Programmable Voltage Detectors
Fabricantes Intersil Corporation 
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TM ICL8211, ICL8212
October 1999
NO RECOOBMSOMLEENTDEEPDRROEDPULCATCEMENT
Programmable Voltage Detectors
Features
Description
• High Accuracy Voltage Sensing and Generation
• Internal Reference 1.15V Typical
• Low Sensitivity to Supply Voltage and Temperature
Variations
• Wide Supply Voltage Range Typ. 1.8V to 30V
• Essentially Constant Supply Current Over Full Supply
Voltage Range
• Easy to Set Hysteresis Voltage Range
• Defined Output Current Limit ICL8211
• High Output Current Capability ICL8212
Applications
The Intersil ICL8211/8212 are micropower bipolar monolithic
integrated circuits intended primarily for precise voltage
detection and generation. These circuits consist of an
accurate voltage reference, a comparator and a pair of
output buffer/drivers.
Specifically, the ICL8211 provides a 7mA current limited out-
put sink when the voltage applied to the ‘THRESHOLD’
terminal is less than 1.15V (the internal reference). The
ICL8212 requires a voltage in excess of 1.15V to switch its
output on (no current limit). Both devices have a low current
output (HYSTERESIS) which is switched on for input
voltages in excess of 1.15V. The HYSTERESIS output may
be used to provide positive and noise free output switching
using a simple feedback network.
• Low Voltage Sensor/Indicator
• High Voltage Sensor/Indicator
• Nonvolatile Out-of-Voltage Range Sensor/Indicator
• Programmable Voltage Reference or Zener Diode
• Series or Shunt Power Supply Regulator
• Fixed Value Constant Current Source
Ordering Information
PART NUMBER
ICL8211CPA
ICL8211CBA
ICL8211CTY
ICL8211MTY
(Note 1)
ICL8212CPA
ICL8212CBA
ICL8212CTY
ICL8212MTY
(Note 1)
TEMPERATURE
RANGE
0oC to +70oC
0oC to +70oC
0oC to +70oC
-55oC to +125oC
0oC to +70oC
0oC to +70oC
0oC to +70oC
-55oC to +125oC
PACKAGE
8 Lead Plastic DIP
8 Lead SOlC (N)
8 Pin Metal Can
8 Pin Metal Can
8 Lead Plastic DIP
8 Lead SOlC (N)
8 Pin Metal Can
8 Pin Metal Can
NOTE:
1. Add /883B to part number if 883B processing is required
Pinouts
ICL8211 (PDIP, SOIC)
TOP VIEW
ICL8211 (CAN)
TOP VIEW
NC 1
HYSTERESIS 2
8 V+
7 NC
HYSTERESIS
THRESHOLD 1
8
7 V+
THRESHOLD 3
OUTPUT 4
6 NC
5 GROUND
OUTPUT 2
6 NC
NC 3
5 NC
4
GROUND
CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures.
1-888-INTERSIL or 321-724-7143 | Intersil (and design) is a trademark of Intersil Americas Inc.
Copyright © Intersil Americas Inc. 2002. All Rights Reserved
7-161
FN3184.2

1 page




ICL8212CTY pdf
ICL8211, ICL8212
Typical Performance Curves (ICL8211 and ICL8212)
10,000
TA = +25oC
V+ = +10V
1,000
100
ICL8211 OR ICL8212
10
0.0
1.1 1.15 1.2 2.0 3.0 6.0 8.0 10.0
THRESHOLD VOLTAGE (VTH)
(IRREGULAR SCALE)
FIGURE 1. THRESHOLD INPUT CURRENT AS A FUNCTION OF
THRESHOLD VOLTAGE
Typical Performance Curves (ICL8211 ONLY)
0
V+ = +5V
VTH = 1.2V
-5 VHYS = 4.5V
(OR -0.5V WITH RESPECT
TO V+ SUPPLY)
-10
-20
-25
ICL8211 OR ICL8212
-30
-40 -20 0 +20 +40 +60 +80
TEMPERATURE (oC)
FIGURE 2. HYSTERESIS OUTPUT SATURATION CURRENT AS
A FUNCTION OF TEMPERATURE
150
125 VTH = 0.9V
100
TA = +25oC
OUTPUTS OPEN CIRCUIT
75
50
25
VTH = 1.3V
0 10 20 30
SUPPLY VOLTAGE
FIGURE 3. SUPPLY CURRENT AS A FUNCTION OF SUPPLY
VOLTAGE
150
TA = +25oC
V+ = +5V
125 OUTPUTS OPEN
CIRCUIT
100
75
50
25
0
0.0
1.0 1.1 1.15 1.2 2.0
THRESHOLD VOLTAGE (VTH)
(IRREGULAR SCALE)
4.0
FIGURE 4. SUPPLY CURRENT AS A FUNCTION OF THRESH-
OLD VOLTAGE
7-165

5 Page





ICL8212CTY arduino
ICL8211, ICL8212
R3
1
R2 2
3
4
R1
8
7
6
5
V+
VO
Low trip voltage
VTR1 = (R1 + R2) x 1.15 + 0.1V
R1
High trip voltage
VTR2 =
(R1 + R2 + R3)
R1
x 1.15V
FIGURE 27A.
volts
RQ
RS
RP
1
2
3
4 FIG 7
8
7
6
5
V+
VO
R2
150k
R3
(NOTE 1)
1
8
2 ICL8211 7
LED
LAMP
36
45
NOTE 1. R3 OPTIONAL
FIGURE 28. LOW VOLTAGE BATTERY INDICATOR
R3 S1
R2
R1
1
2
3
4
8
7 RL
6
5
V+
OUTPUT
Low trip voltage
VTR1 =
RQRS
(RQ + RS)
+ RP
1
x
x 1.15V
RP
High trip voltage
VTR2
=
(RP + RQ)
RP
x 1.15V
FIGURE 27B.
FIGURE 29A.
OFF
OFF
ON
B
ON
ON OFF
VTR1
VTR2
SUPPLY VOLTAGE
FIGURE 27C.
FIGURE 27. TWO ATERNATIVE VOLTAGE DETECTION
CIRCUITS EMPLOYING HYSTERESIS TO
PROVIDE PAIRS OF WELL DEFINED TRIP
VOLTAGES
ON
A
OFF
VTR1
VNOM
VTR2
SUPPLY VOLTAGE
FIGURE 29B.
FIGURE 29. NON-VOLATILE LOW VOLTAGE INDICATOR
7-171

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