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MC10EP16TDTR2 데이터시트(PDF) 3 Page - ON Semiconductor

부품명 MC10EP16TDTR2
상세설명  3.3V / 5V ECL Differential Receiver/Driver with Internal Termination
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제조업체  ONSEMI [ON Semiconductor]
홈페이지  http://www.onsemi.com
Logo ONSEMI - ON Semiconductor

MC10EP16TDTR2 데이터시트(HTML) 3 Page - ON Semiconductor

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MC10EP16T, MC100EP16T
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3
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
16
23
31
16
23
31
16
23
31
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)
1365
1690
1430
1755
1490
1815
mV
VIHCMR
Input HIGH Voltage Common Mode
Range (Differential) (Note 5)
2.0
3.3
2.0
3.3
2.0
3.3
V
RT
Internal Termination Resistor
43
57
43
50
57
43
57
W
IIH
Input HIGH Current
150
150
150
µA
IIL
Input LOW Current
–150
–150
–150
µA
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
Power Supply Current
16
23
31
16
23
31
16
23
31
mA
VOH
Output HIGH Voltage (Note 7)
3865
3990
4115
3930
4055
4180
3990
4115
4240
mV
VOL
Output LOW Voltage (Note 7)
3065
3190
3315
3130
3255
3380
3190
3315
3440
mV
VIH
Input HIGH Voltage (Single–Ended)
3790
4115
3855
4180
3915
4240
mV
VIL
Input LOW Voltage (Single–Ended)
3065
3390
3130
3455
3190
3515
mV
VIHCMR
Input HIGH Voltage Common Mode
Range (Differential) (Note 8)
2.0
5.0
2.0
5.0
2.0
5.0
V
RT
Internal Termination Resistor
43
57
43
50
57
43
57
W
IIH
Input HIGH Current
150
150
150
µA
IIL
Input LOW Current
–150
–150
–150
µA
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
16
23
31
16
23
31
16
23
31
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
VIHCMR
Input HIGH Voltage Common Mode
Range (Differential) (Note 11)
VEE+2.0
0.0
VEE+2.0
0.0
VEE+2.0
0.0
V
RT
Internal Termination Resistor
43
57
43
50
57
43
57
W
IIH
Input HIGH Current
150
150
150
µA
IIL
Input LOW Current
–150
–150
–150
µA
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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