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MC100E116FN View Datasheet(PDF) - Motorola => Freescale

Part Name
Description
Manufacturer
MC100E116FN
Motorola
Motorola => Freescale Motorola
MC100E116FN Datasheet PDF : 4 Pages
1 2 3 4
MC10E116 MC100E116
LOGIC DIAGRAM
D0
Q0
D0
Q0
D1
Q1
D1
Q1
D2
Q2
D2
Q2
D3
Q3
D3
Q3
D4
Q4
D4
Q4
VBB
DC CHARACTERISTICS (VEE = VEE(min) to VEE(max); VCC = VCCO = GND)
–40°C
0°C
25°C
85°C
Symbol Characteristic Min Typ Max Min Typ Max Min Typ Max Min Typ Max Unit Cond
VBB
Output Reference
Voltage
10E –1.43
100E –1.38
–1.30 –1.38
–1.26 –1.38
–1.27 –1.35
–1.26 –1.38
–1.25 –1.31
–1.26 –1.38
V
–1.19
–1.26
IIH
Input HIGH
Current
200
200
200
200 µA
IEE
Power Supply
Current
10E
100E
29 35
29 35
29 35
29 35
29 35
29 35
mA
29 35
29 40
VPP(DC) Input Sensitivity 150
VCMR
Commom Mode –2.0
Range
150
–0.6 –2.0
150
–0.6 –2.0
150
–0.6 –2.0
mV 1
–0.6 V
2
1. Differential input voltage required to obtain a full ECL swing on the outputs.
2. VCMR is defined as the range within which the VIH level may vary, with the device still meeting the propagation delay specification. The VIL level
must be such that the peak to peak voltage is less than 1.0 V and greater than or equal to VPP(min).
AC CHARACTERISTICS (VEE = VEE (min) to VEE (max); VCC = VCCO = GND)
–40°C
0°C to 85°C
Symbol
Characteristic
Min
Typ
Max
Min
Typ
Max Unit Condition
tPLH
tPHL
Propagation Delay to Output
ps
D (Differential) 150
300
500
200
300
450
D (Single-Ended) 150
300
550
150
300
500
tskew
Within-Device Skew
50
50
ps
1
tskew
Duty Cycle Skew
tPLH – tPHL
±10
±10
ps
2
VPP(AC) Minimum Input Swing
150
150
mV
3
tr/tf
Rise/Fall Time
250
375
625
275
375
575
ps
20–80%
1. Within-device skew is defined as identical transitions on similar paths through a device.
2. Duty cycle skew is defined only for differential operation when the delays are measured from the cross point of the inputs to the cross point
of the outputs.
3. Minimum input swing for which AC parameters are guaranteed.
MOTOROLA
2–2
ECLinPS and ECLinPS Lite
DL140 — Rev 4

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