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MC10H115 Просмотр технического описания (PDF) - ON Semiconductor

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MC10H115
ON-Semiconductor
ON Semiconductor ON-Semiconductor
MC10H115 Datasheet PDF : 6 Pages
1 2 3 4 5 6
MC10H115
4
5
2 *VBB to be used to supply bias to the MC10H115 only and
bypassed (when used) with 0.01 mF to 0.1 mF capacitor
7
6
3
to ground (0 V). VBB can source < 1.0 mA.
When input pin with bubble goes positive its respective
10
11
14 output pin with bubble goes positive.
13
12
15
VBB* 9
VCC1 = Pin 1
VCC2 = Pin 16
VEE = Pin 8
Figure 1. Logic Diagram
VCC1
Aout
Bout
Ain
Ain
Bin
Bin
VEE
1 16
2 15
3 14
4 13
5 12
6 11
7 10
89
VCC2
Dout
Cout
Din
Din
Cin
Cin
VBB
Pin assignment is for DualinLine Package.
Figure 2. Pin Assignment
Table 1. MAXIMUM RATINGS
Symbol
Characteristic
Rating
Unit
VEE
Power Supply (VCC = 0)
VI
Input Voltage (VCC = 0)
Iout
Output Current
Continuous
Surge
8.0 to 0
Vdc
0 to VEE
Vdc
50
mA
100
TA
Operating Temperature Range
Tstg
Storage Temperature Range
Plastic
Ceramic
0 to +75
°C
55 to +150
°C
55 to +165
°C
Maximum ratings are those values beyond which device damage can occur. Maximum ratings applied to the device are individual stress limit
values (not normal operating conditions) and are not valid simultaneously. If these limits are exceeded, device functional operation is not implied,
damage may occur and reliability may be affected.
Table 2. ELECTRICAL CHARACTERISTICS (VEE = 5.2 V ±5%) (Note 2)
0°
25°
75°
Symbol
Characteristic
Min
Max
Min
Max
Min
Max
Unit
IE
IinH
ICBO
VBB
VOH
VOL
VIH
VIL
VCMR
Power Supply Current
Input Current High
Input Leakage Current
Reference Voltage
High Output Voltage
Low Output Voltage
High Input Voltage (Note 1)
Low Input Voltage (Note 1)
Common Mode
Range (Note 3)
29
26
29
mA
150
95
95
mA
1.5
1.0
1.0
mA
1.38 1.27 1.35 1.25 1.31
1.19
Vdc
1.02 0.84 0.98 0.81 0.92
0.735
Vdc
1.95 1.63 1.95 1.63 1.95
1.60
Vdc
1.17 0.84 1.13 0.81 1.07
0.735
Vdc
1.95 1.48 1.95 1.48 1.95
1.45
Vdc
2.85 to 0.8
Vdc
VPP
Input Sensitivity (Note 4)
150 typ
mVPP
1. When VBB is used as the reference voltage.
2. Each MECL 10Hseries circuit has been designed to meet the specifications shown in the test table, after thermal equilibrium has been
established. The circuit is in a test socket or mounted on a printed circuit board and transverse air flow greater than 500 linear fpm is
maintained. Outputs are terminated through a 50 W resistor to 2.0 V.
3. Differential input not to exceed 1.0 Vdc.
4. 150 mVpp differential input required to obtain full logic swing on output.
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