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MC100EP17DT(2002) Ver la hoja de datos (PDF) - ON Semiconductor

Número de pieza
componentes Descripción
Fabricante
MC100EP17DT
(Rev.:2002)
ON-Semiconductor
ON Semiconductor ON-Semiconductor
MC100EP17DT Datasheet PDF : 8 Pages
1 2 3 4 5 6 7 8
MC10EP17, MC100EP17
10EP DC CHARACTERISTICS, PECL VCC = 3.3 V, VEE = 0 V (Note 3)
–40°C
25°C
85°C
Symbol
Characteristic
Min Typ Max Min Typ Max Min Typ Max Unit
IEE
Power Supply Current
42
50
65
44
52
66
46
54
68 mA
VOH
Output HIGH Voltage (Note 4)
2165 2290 2415 2230 2355 2480 2290 2415 2540 mV
VOL
Output LOW Voltage (Note 4)
1365 1490 1615 1430 1555 1680 1490 1615 1740 mV
VIH
Input HIGH Voltage (Single–Ended)
2090
2415 2155
2480 2215
2540 mV
VIL
Input LOW Voltage (Single–Ended)
365
1690 1430
1755 1490
1815 mV
VBB
Output Voltage Reference
1790 1890 1990 1855 1955 2055 1915 2015 2115 mV
VIHCMR Input HIGH Voltage Common Mode
2.0
Range (Differential) (Note 5)
3.3 2.0
3.3 2.0
3.3
V
IIH
Input HIGH Current
150
150
150 mA
IIL
Input LOW Current
0.5
0.5
0.5
mA
NOTE: EP circuits are designed to meet the DC specifications shown in the above table after thermal equilibrium has been established. The
circuit is in a test socket or mounted on a printed circuit board and transverse airflow greater than 500 lfpm is maintained.
3. Input and output parameters vary 1:1 with VCC. VEE can vary +0.3 V to –2.2 V.
4. All loading with 50 W to VCC–2.0 volts.
5. VIHCMR min varies 1:1 with VEE, VIHCMR max varies 1:1 with VCC. The VIHCMR range is referenced to the most positive side of the differential
input signal.
10EP DC CHARACTERISTICS, PECL VCC = 5.0 V, VEE = 0 V (Note 6)
–40°C
25°C
85°C
Symbol
Characteristic
Min Typ Max Min Typ Max Min Typ Max Unit
IEE
VOH
VOL
VIH
VIL
VBB
VIHCMR
Power Supply Current
Output HIGH Voltage (Note 7)
Output LOW Voltage (Note 7)
Input HIGH Voltage (Single–Ended)
Input LOW Voltage (Single–Ended)
Output Voltage Reference
Input HIGH Voltage Common Mode
Range (Differential) (Note 8)
42
50
65
44
52
66
46
54
68 mA
3865 3990 4115 3930 4055 4180 3990 4115 4240 mV
3065 3190 3315 3130 3255 3380 3190 3315 3440 mV
3790
4115 3855
4180 3915
4240 mV
3065
3390 3130
3455 3190
3515 mV
3490 3590 3690 3555 3655 3755 3615 3715 3815 mV
2.0
5.0 2.0
5.0 2.0
5.0
V
IIH
Input HIGH Current
150
150
150 mA
IIL
Input LOW Current
0.5
0.5
0.5
mA
NOTE: EP circuits are designed to meet the DC specifications shown in the above table after thermal equilibrium has been established. The
circuit is in a test socket or mounted on a printed circuit board and transverse airflow greater than 500 lfpm is maintained.
6. Input and output parameters vary 1:1 with VCC. VEE can vary +2.0 V to –0.5 V.
7. All loading with 50 W to VCC–2.0 volts.
8. VIHCMR min varies 1:1 with VEE, VIHCMR max varies 1:1 with VCC. The VIHCMR range is referenced to the most positive side of the differential
input signal.
10EP DC CHARACTERISTICS, NECL VCC = 0 V; VEE = –5.5 V to –3.0 V (Note 9)
–40°C
25°C
85°C
Symbol
Characteristic
Min Typ Max Min Typ Max Min Typ Max Unit
IEE
Power Supply Current
42
50
65
44
52
66
46
54
68 mA
VOH
Output HIGH Voltage (Note 10)
–1135 –1010 –885 –1070 –945 –820 –1010 –885 –760 mV
VOL
Output LOW Voltage (Note 10)
–1935 –1810 –1685 –1870 –1745 –1620 –1810 –1685 –1560 mV
VIH
Input HIGH Voltage (Single–Ended) –1210
–885 –1145
–820 –1085
–760 mV
VIL
Input LOW Voltage (Single–Ended) –1935
–1610 –1870
–1545 –1810
–1485 mV
VBB
Output Voltage Reference
–1510 –1410 –1310 –1445 –1345 –1245 –1385 –1285 –1185 mV
VIHCMR Input HIGH Voltage Common Mode
VEE+2.0
0.0
VEE+2.0
0.0
VEE+2.0
0.0
V
Range (Differential) (Note 11)
IIH
Input HIGH Current
150
150
150 mA
IIL
Input LOW Current
0.5
0.5
0.5
mA
NOTE: EP circuits are designed to meet the DC specifications shown in the above table after thermal equilibrium has been established. The
circuit is in a test socket or mounted on a printed circuit board and transverse airflow greater than 500 lfpm is maintained.
9. Input and output parameters vary 1:1 with VCC.
10. All loading with 50 W to VCC–2.0 volts.
11. VIHCMR min varies 1:1 with VEE, VIHCMR max varies 1:1 with VCC. The VIHCMR range is referenced to the most positive side of the differential
input signal.
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