ROHM BA10339FV, BA10339F, BA10339 Datasheet

1
Standard ICs
Quad comparator
BA10339 / BA10339F / BA10339FV
The BA10339, BA10339F, and BA10339FV each consist of four comparators in a single package. The open collector output allows a wired OR connection. These products feature a wide range of operating power supply voltages, from 3 to 36V with single power supply operation, and from ±1.5 to ± 18V with dual power supply operation. Available packages include 14-pin DIP (BA10339), 14-pin SOP (BA10339F), and 14-pin SSOP-B (BA10339FV).
Features
Block diagram and internal circuit configuration
OUT2 1
OUT1
–IN1
+ IN1
– IN2
+ IN2
OUT3
OUT4
GND
+ IN4
– IN4
+ IN3
– IN3
V
CC
2
3
4
5
6
7
14
13
12
11
10
9
8
1ch
2ch
4ch
3ch
VCC
OUT
GND
Q8
Q7
Q4
Q6
Q3Q2
Q1
Q5
+ IN
– IN
BA10339 / BA10339F / BA10339FV
1) Wide range of operating voltages (single power sup­ply: 3 to 36V; dual power supply: ± 1.5 to ± 18V)
2) Low current dissipation (0.8mA typ., V
CC = 5V)
3) Low input offset current (5nA typ., V
CC = 5V) and
input offset voltage (2mV typ., V
CC = 5V)
4) Wide common-mode input voltage range (0 to V
CC – 1.5V).
5) Open collector output.
INPUT BIAS CURRENT: IB (nA)
20
0
2010 30 40
POWER SUPPLY VOLTAGE: V
(V)
40
Ta = 25°C
0
60
80
Fig. 3 Input bias current vs. power
supply voltage
2
Standard ICs BA10339 / BA10339F / BA10339FV
Absolute maximum ratings (Ta = 25°C)
Parameter Symbol
Limits
Unit
BA10339 BA10339F BA10339FV
V
CC 36 ( ± 18) 36 ( ± 18) 36 ( ± 18) V
950
450
400
mW
V
ID ± VCC V
V
I – 0.3 ~ VCC V
– 40 ~ + 85 – 40 ~ + 85 – 40 ~ + 85 °C
–55
~
+ 125 – 55
~
+ 125 – 55
~
+ 125
°C
Pd
Topr Tstg
± V
CC
– 0.3 ~ VCC
± VCC
– 0.3 ~ VCC
Power supply voltage Power dissipation Differential input voltage Common-mode input voltage Operating temperature Storage temperature
Refer to the Pd characteristic diagram.
The Values for BA10339F and BA10339FV are those when it is mounted on a glass epoxy board (50mm × 50mm × 1.6mm).
Electrical characteristics (unless otherwise noted, Ta = 25°C, VCC = + 5V)
Parameter Symbol Min. Typ. Max. Unit Conditions
V
IO —25mVVO = 1.4V
I
IO 5 50 nA
I
B 25 250 nA VO = 1.4V
V
ICM 0—VCC – 1.5 V
A
V 106 dB RL = 15k
I
Q 0.8 2 mA
I
sink 616—mA
V
OL 250 400 mV
I
leak 0.1 nA
t
r 1.3 µs
| I
IN
+
– IIN– |
, V
O = 1.4V
R
L = , on All Comparators
R
L = 5.1k, VRL
= 5V
V
IN
= 1V, VIN+ = 0V, VO = 1.5V
V
IN
= 1V, VIN
+
= 0V, Isink = 3mA
V
IN
+
= 1V, VIN– = 0V, VO = 5V
Input offset voltage Input offset current Input bias current Common-mode input voltage Voltage gain Quiescent current Output sink current Output saturation voltage Output leakage current Response time
Electrical characteristic curves
POWER DISSIPATION: Pd (mW)
AMBIENT TEMPERATURE: Ta (°C)
Fig. 1 Power dissipation vs. ambient
temperature
1200
1000
800
600
400
200
0
025507585100125150
BA10339FV
BA10339F
BA10339
QUIESCENT CURRENT: IQ (mA)
0
2010 30 40
POWER SUPPLY VOLTAGE: V
+
(V)
1.2
Ta = 25°C R
L =
0.6
0.8
1.0
Fig. 2 Quiescent current vs. power
supply voltage
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