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 Standard ICs
Dual comparators
BA10393 / BA10393F / BA10393N
The BA10393, BA10393F, and BA10393N are dual comparators with open-collector output which allows wired OR connections. The operating power supply voltage ranges from 2 to 36V for a single power supply and 1 to 18V for a dual power supply. The packages are as follows: DIP 8-pin (BA10393), SOP 8-pin (BA10393F), and SIP 8-pin (BA10393N).
*Features voltage range. 1) Wide operating
(Single power supply: 2 to 36V, dual power supply: 1 to 18V) 2) Low current dissipation. (0.4mA typ. at VCC = 5V) 3) Low input offset voltage. (25nA typ. at VCC = 5V) and low input offset voltage. (typically 1.0mV at VCC = 5V)
4) Wide common-mode input voltage. (0 to VCC - 1.5V) 5) Open collector output. 6) Compatible with 393 comparators from other manufacturers.
*Block diagram
BA10393 / BA10393F BA10393N
OUT1 1 8 VCC
+
- IN1 2 - + IN1 3 1ch 7 OUT2 1ch -
+
-
2ch
+ +
2ch - 6 - IN2 1 2 3 4 5 6 7 8 VCC
OUT1
VEE
4
5
+ IN2
OUT2
- IN1
+ IN1
+ IN2
- IN2
VEE
1
Standard ICs
BA10393 / BA10393F / BA10393N
*Internal circuit configuration
VCC
+ IN - IN
OUT
GND
*Absolute maximum ratings (Ta = 25C)
Parameter Power supply voltage Power dissipation Differential input voltage Common-mode input voltage Operating temperature Storage temperature Symbol VCC Pd VID VI Topr Tstg Limits BA10393 36 ( 18) 800 VCC - 0.3 ~ VCC - 40 ~ + 85 - 55 ~ + 125 BA10393F 36 ( 18) 550 VCC - 0.3 ~ VCC - 40 ~ + 85 - 55 ~ + 125 BA10393N 36 ( 18) 900 VCC - 0.3 ~ VCC - 40 ~ + 85 - 55 ~ + 125 Unit V mW V V C C
Refer to the Pd characteristics diagram.
The values for the BA10393F are those when it is mounted on a glass epoxy PCB (50mm x 50mm x 1.6mm).
*Electrical characteristics (unless otherwise noted, Ta = 25C, VCC = + 5V)
Parameter 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 Symbol VIO IIO IB VICM AV IQ Isink VOL Ileak tr Min. -- -- -- 0 93 -- 6 -- -- -- Typ. 1 5 25 -- 106 0.4 16 250 0.1 1.3 Max. 5 50 250 VCC -1.5 -- 1 -- 400 -- -- Unit mV nA nA V dB mA mA mV nA s RL = 15k, VCC = 15V RL = , on All Comparators VIN - = + 1V, VIN + = 0V, VO = 1.5V VIN - = + 1V, VIN + = 0V, Isink = 4mA VIN + = + 1V, VIN - = 0V,VO = 5V RL = 5.1k, VRL = 5V VO = 1.4V | IIN+ - IIN- |, VO = 1.4V VO = 1.4V Conditions
2
Standard ICs
BA10393 / BA10393F / BA10393N
*Electrical characteristic curves
1200 POWER DISSIPATION: Pd (mW) QUIESCENT CURRENT: IQ (mA) 1.0 INPUT BIAS CURRENT: IB (nA) Ta = 25C RL = 0.8 40 Ta = 25C 1000 BA10393N 800 BA10393 600 BA10393F 400 0.6
20
0.4
200 0
0.2
0
25
50
75 85 100
125
150
0
0
0 10 20 30
+
40
0
10
20
30
+
40
AMBIENT TEMPERATURE: Ta (C)
POWER SUPPLY VOLTAGE: V (V)
POWER SUPPLY VOLTAGE: V (V)
Fig. 1 Power dissipation vs. ambient temperature
Fig. 2 Quiescent current vs. power supply voltage
Fig. 3 Input bias current vs. power supply voltage
OUTPUT VOLTAGE VO (V)
SATURATION VOLTAGE: VOL (V)
Ta = 25C 1
5 4 3 2 1 0 0 - 50 100mV 20mV
5mV = INPUT OVERDRIVE
OUTPUT VOLTAGE VO (V)
10
5 4 3
INPUT OVERDRIVE = 100mV
20mV 5mV 2 1
0.1
INPUT VOLTAGE VIN (mV)
INPUT VOLTAGE VIN (mV) 0 0.5 1.0 TIME (s) 1.5 2.0
0 100 50 0 0 0.5 1.0 TIME (s) 1.5 2.0
0.01
- 100
0.001 0.01
0.1
1
10
100
OUTPUT SINK CURRENT: IO (mA)
Fig. 4 Output saturation voltage vs. output current
Fig. 5 Propagation characteristics (!)
Fig. 6 Propagation characteristics (@)
3
Standard ICs
BA10393 / BA10393F / BA10393N
*Operation notes circuits (1) Handling unused
If a circuit is not in use, we recommend connecting it as shown in Figure 7, so that its input is connected to the potential within the in-phase input voltage range (VICM) and the output is left open.
To potential in VICM VCC
+
- Open (no connected)
VEE
Fig. 7 Example of unused circuit connection
*External dimensions (Units: mm)
BA10393
9.3 0.3 6.5 0.3 8 5
BA10393F
5.0 0.2 8 6.2 0.3 4.4 0.2 5
1 0.51Min.
4 7.62
3.2 0.2 3.4 0.3
1.5 0.1
1
4
0.3 0.1
0.11
1.27
0.4 0.1
0.3Min. 0.15
2.54
0.5 0.1 0 ~ 15
DIP8
BA10393N
SOP8
19.3 0.2 10.5 0.5 5.8 0.2
2.8 0.2
1.2
1 3.5 0.5 2.54
8 0.6 0.8 1.3 0.3 0.1
SIP8
4
0.15 0.1


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