DATA SHEET
BIPOLAR ANALOG INTEGRATED CIRCUIT
μ
PC177GR-9LG,
μ
PC339GR-9LG
SINGLE POWER SUPPLY QUAD COMPARATORS
<R>
DESCRIPTION
The
μ
PC177GR-9LG,
μ
PC339GR-9LG are quad comparators which are designed to operate for a single power
supply. It includes features of low-voltage operation, a common-mode input voltage that range from V
−
(GND) level,
an open collector output, and low current consumption. Furthermore, these products can operate on a split power
supply and be used for an extensive comparison of various voltages.
The
μ
PC177GR-9LG which expands temperature type is suited for wide operating ambient temperature use, and
μ
PC339GR-9LG is used for general purposes.
A DC parameter selection that is compatible to comparators is also available.
μ
PC277GR-9LG,
μ
PC277MP-KAA,
μ
PC393GR-9LG which are dual types with the same circuit configuration are
also available as series of comparators.
<R>
FEATURES
• Input Offset Voltage
±1
mV (TYP.)
• A wired OR is possible as the open collector is output.
• Input Bias Current
20 nA (TYP.)
• A low voltage operation is possible. V
+
−
V
−
:
+2
to
+32
V
• Voltage Gain
200000 (TYP.)
• Pulse Response Time 1.6
μ
s (TYP.)
16 mA (TYP.)
• Output Sink Current
• Small Package (The mounting area is reduced to half compared to the conventional 14-pin plastic SOP (1.27 mm
pitch))
<R>
ORDERING INFORMATION
Part Number
Selected Grade
Note
Package
14-pin plastic TSSOP (5.72 mm(225))
14-pin plastic TSSOP (5.72 mm(225))
14-pin plastic TSSOP (5.72 mm(225))
14-pin plastic TSSOP (5.72 mm(225))
14-pin plastic TSSOP (5.72 mm(225))
14-pin plastic TSSOP (5.72 mm(225))
14-pin plastic TSSOP (5.72 mm(225))
14-pin plastic TSSOP (5.72 mm(225))
Package Type
•
16 mm wide embossed taping
•
Pin 1 on draw-out side
•
16 mm wide embossed taping
•
Pin 1 at take-up side
•
16 mm wide embossed taping
•
Pin 1 on draw-out side
•
16 mm wide embossed taping
•
Pin 1 at take-up side
•
16 mm wide embossed taping
•
Pin 1 on draw-out side
•
16 mm wide embossed taping
•
Pin 1 at take-up side
•
16 mm wide embossed taping
•
Pin 1 on draw-out side
•
16 mm wide embossed taping
•
Pin 1 at take-up side
μ
PC177GR-9LG-E1-A
μ
PC177GR-9LG-E2-A
Standard
Standard
DC
parameter selection
DC
parameter selection
Standard
Standard
DC
parameter selection
DC
parameter selection
Note
μ
PC177GR(5)-9LG-E1-A
μ
PC177GR(5)-9LG-E2-A
μ
PC339GR-9LG-E1-A
μ
PC339GR-9LG-E2-A
Note
Note
Note
Note
μ
PC339GR(5)-9LG-E1-A
μ
PC339GR(5)-9LG-E2-A
Note
Note
Note
Pb-free (This product does not contain Pb in the external electrode and other parts.)
The information in this document is subject to change without notice. Before using this document, please
confirm that this is the latest version.
Not all products and/or types are available in every country. Please check with an NEC Electronics
sales representative for availability and additional information.
Document No. G17933EJ3V0DS00 (3rd edition)
Date Published December 2007 NS
Printed in Japan
2006, 2007
The mark <R> shows major revised points.
The revised points can be easily searched by copying an "<R>" in the PDF file and specifying it in the "Find what:" field.
μ
PC177GR-9LG,
μ
PC339GR-9LG
EQUIVALENT CIRCUIT (1/4 Circuit)
V
+
100
μ
A
100
μ
A
OUT2
1
2
3
4
5
6
7
2
−+
3
−+
1
−+
4
−+
14
13
12
11
10
9
8
OUT3
OUT4
V
−
I
N4
I
I4
I
N3
I
I3
OUT1
<R>
PIN CONFIGURATION (Marking side)
I
N
+
Q
2
Q
1
Q
3
Q
4
Q
8
Q
7
OUT
V
+
I
I1
I
N1
I
I2
I
N2
I
I
−
Q
5
Q
6
V
−
<R>
ABSOLUTE MAXIMUM RATINGS (T
A
= 25°C)
Parameter
+
−
Note1
Symbol
+
−
μ
PC177GR-9LG,
μ
PC177GR(5)-9LG
μ
PC339GR-9LG,
μ
PC339GR(5)-9LG
Unit
Voltage between V and V
Differential Input Voltage
Input Voltage
Note2
V
−
V
V
ID
V
I
−0.3
to
+36
±36
V
−
0.3 to V
+
36
V
−
0.3 to V
+
36
550
Indefinite
−40
to
+125
−55
to
+150
−40
to
+85
−55
to
+125
+
−
−
−
−
V
V
V
V
mW
s
°C
°C
Output applied Voltage
Total Power Dissipation
Note3
Note4
Note5
V
O
P
T
t
S
T
A
T
stg
Output Short Circuit Duration (vs. GND)
Operating Ambient Temperature
Storage Temperature
Note1.
Note that reverse connections of the power supply may damage ICs.
2.
The input voltage is allowed to input without damage or destruction independent of the magnitude of V . Either
input signal is not allowed to go negative by more than 0.3 V. In addition, the input voltage that operates
normally as a comparator is within the Common Mode Input Voltage range of an electrical characteristic.
3.
A range where input voltage can be applied to an output pin externally with no deterioration or damage to the
feature (characteristic). The input voltage can be applied regardless of the electric supply voltage. This
specification which includes the transition state such as electric power ON/OFF must be kept.
4.
This is the value of when the glass epoxy substrate (size: 100 mm x 100 mm, thickness: 1 mm, 15% of the
substrate area where only one side is copper foiled is filling wired) is mounted.
Note that restrictions will be made to the following conditions for each product, and the derating ratio
depending on the operating ambient temperature.
μ
PC177GR-9LG: Derate at
−7.0
mW/°C when T
A
> 71°C.
(Junction
−
ambient thermal resistance R
th(J-A)
= 144°C/W)
μ
PC339GR-9LG: Derate at
−7.0
mW/°C when T
A
> 46°C.
(Junction
−
ambient thermal resistance R
th(J-A)
= 144°C/W)
5.
Short circuits from the output to V can cause destruction. Pay careful attention to the total power dissipation
not to exceed the absolute maximum ratings,
Note 4.
+
2
Data Sheet G17933EJ3V0DS
μ
PC177GR-9LG,
μ
PC339GR-9LG
RECOMMENDED OPERATING CONDITIONS
Parameter
Power Supply Voltage (Split)
Power Supply Voltage (V = GND)
−
Symbol
V
V
±
+
MIN.
±1
+2
TYP.
MAX.
±16
+32
Unit
V
V
<R>
ELECTRICAL CHARACTERISTICS
μ
PC177GR-9LG,
μ
PC339GR-9LG (T
A
= 25°C, V
+
=
+5
V, V
−
= GND)
Parameter
Input Offset Voltage
Input Offset Current
Input Bias Current
Voltage Gain
Circuit Current
Note2
Note1
Symbol
V
IO
I
IO
I
B
A
V
I
CC
V
ICM
V
OL
I
O SINK
I
O LEAK
Conditions
V
O
= 1.4 V, V
REF
= 1.4 V, R
S
= 0
Ω
V
O
= 1.4 V
V
O
= 1.4 V
R
L
= 15 kΩ
R
L
=
∞,
I
O
= 0 A
MIN.
TYP.
±1
±5
20
200000
1.1
MAX.
±5
±50
250
Unit
mV
nA
nA
2
V
−
1.5
+
mA
V
V
mA
nA
Common Mode lnput Voltage Range
Output Saturation Voltage
Output Sink Current
Output Leakage Current
Pulse Response Time
Note3
0
V
IN (−)
=
+1
V, V
IN (+)
= 0 V, I
O SINK
= 4 mA
V
IN (−)
=
+1
V, V
IN (+)
= 0 V, V
O
≤
1.5 V
V
IN (+)
=
+1
V, V
IN (−)
= 0 V, V
O
= 5 V
R
L
= 5.1 kΩ, V
RL
= 5 V,
6
0.2
16
0.1
1.6
0.4
μ
s
μ
PC177GR(5)-9LG,
μ
PC339GR(5)-9LG (T
A
= 25°C, V
+
=
+5
V, V
−
= GND)
Parameter
Input Offset Voltage
Input Offset Current
Input Bias Current
Voltage Gain
Circuit Current
Note2
Note1
Symbol
V
IO
I
IO
I
B
A
V
I
CC
V
ICM
V
OL1
V
OL2
Conditions
V
O
= 1.4 V, V
REF
= 1.4 V, R
S
= 0
Ω
V
O
= 1.4 V
V
O
= 1.4 V
R
L
= 15 kΩ
R
L
=
∞,
I
O
= 0 A
MIN.
TYP.
±1
±5
20
200000
1.1
MAX.
±2.5
±50
60
Unit
mV
nA
nA
1.2
V
−
1.4
0.2
1.5
+
mA
V
V
V
mA
Common Mode lnput Voltage Range
Output Saturation Voltage
0
V
IN (−)
=
+1
V, V
IN (+)
= 0 V, I
O SINK
= 4 mA
V
IN (−)
=
+1
V, V
IN (+)
= 0 V, I
O SINK
= 10 mA
V
IN (−)
=
+1
V, V
IN (+)
= 0 V, V
O
≤
1.5 V
V
IN (+)
=
+1
V, V
IN (−)
= 0 V, V
O
= 5 V
R
L
= 5.1 kΩ, V
RL
= 5 V,
10
16
0.1
1.6
Output Sink Current
Output Leakage Current
Pulse Response Time
Note3
I
O SINK
I
O LEAK
100
nA
μ
s
Notes1.
The input bias current flows in the direction where the IC flows out because the first stage is configured with a
PNP transistor.
In addition, the value of this item is a value of when the differential amplified circuit of the input stage is
balanced. When the comparator is active, then twice the amount of current will flow to a pin with low
potential.
2.
This is a current that flows in the internal circuit. This current will flow irrespective of the channel used.
3.
This is the value when input oscillation is 100 mV and the over drive is 5 mV.
If the amount of over drive is increased then the response time can be cut down.
Data Sheet G17933EJ3V0DS
3
μ
PC177GR-9LG,
μ
PC339GR-9LG
TYPICAL APPLICATION CIRCUIT EXAMPLE
V
+
4, 6, 8, 10
V
IN
R
L
−
3
OUTPUT
1, 2, 13, 14
12
5, 7, 9, 11
V
REF
+
V
REF
: V
−
to
V
+
−
1.5 (V)
Comparator with hysteresis
V
+
V
RL
R
L
INPUT
−
OUTPUT
+
R
2
V
REF
R
1
• Threshold voltage
V
TH (High)
≅
V
REF
+
V
TH (Low)
≅
V
REF
−
R
1
(V
RL
−
V
REF
)
R
L
+ R
2
+ R
1
R
1
(V
REF
−
V
OL
)
R
1
+ R
2
(V
RL
> V
REF
> V
OL
)
4
Data Sheet G17933EJ3V0DS
μ
PC177GR-9LG,
μ
PC339GR-9LG
<R>
TYPICAL PERFORMANCE CHARACTERISTICS (T
A
= 25°C, TYP.) (Reference value)
P
T
vs. T
A
I
CC
vs. V
+
3
I
CC
- Supply Current - mA
1000
P
T
- Total Power Dissipation - mW
800
600
With 100 mm x 100 mm, thickness 1 mm
glass epoxy substrate
(refer to "ABSOLUTE
MAXIMUM
RATINGS Note 4"
)
2.5
2
1.5
1
0.5
0
R
L
=
∞
I
O
= 0 A
T
A
=
−40°C
25°C
125°C
μ
P
400
200
0
0
20
40
C3
39
GR
μ
P
-9
C1
77
GR
LG
-9
L
G
60
80
100
120
140
0
10
20
30
40
T
A
- Operating Ambient Temperature -
°C
V
+
- Power Supply Voltage - V (V
−
= GND)
V
IO
vs. T
A
2
V
IO
- Input Offset Voltage - mV
V =
+5
V, V = GND
each 5 samples data
1
+
−
I
B
vs. V
30
+
I
B
- Input Bias Current - nA
20
0
10
-1
-2
-50
0
50
100
150
T
A
- Operating Ambient Temperature -
°C
0
0
10
20
30
40
V
+
- Power Supply Voltage - V (V
−
= GND)
I
B
vs. T
A
40
V
OL
- Output Saturation Voltage - V
V =
+15
V
I
B
- Input Bias Current - nA
V
−
= GND
30
+
V
OL
vs. I
O SINK
10
V
+
=
+15
V
V
+
1
V
+
/2
−
+
I
O SINK
V
O
20
0.1
10
0.01
T
A
= 125°C
25°C
−40°C
0
-50
0
50
100
150
T
A
- Operating Ambient Temperature -
°C
0.001
0.01
0.1
1
10
100
I
O SINK
- Output Sink Current - mA
Data Sheet G17933EJ3V0DS
5