MC100EPT25 ON Semiconductor, MC100EPT25 Datasheet - Page 2

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MC100EPT25

Manufacturer Part Number
MC100EPT25
Description
Differential LVECL/ECL to LVTTL Translator
Manufacturer
ON Semiconductor
Datasheet

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* Maximum Ratings are those values beyond which damage to the device may occur.
{
NOTE: 100EP circuits are designed to meet the DC specifications shown in the above table after thermal equilibrium has been established. The
1. (V CC = +3.3V, GND = 0V, V EE = –3.3V), all other pins floating.
2. All loading with 500 ohms to GND, C L = 20pF.
3. V IHCMR min varies 1:1 with V EE , max varies 1:1 with V CC .
4. Input and output parameters vary 1:1 with V CC .
DC CHARACTERISTICS, ECL/LVECL (V CC = +3.3V; V EE = –5.5V to –3.0V, GND = 0V)
MAXIMUM RATINGS*
IEE
V IH
V IL
V BB
V IHCMR Input HIGH Voltage Common Mode
I IH
I IL
Symbol
Use for inputs of same package only.
V CC
V EE
V I
I out
I BB
T A
T stg
T sol
JA
JC
Symbol
circuit is in a test socket or mounted on a printed circuit board and transverse airflow greater than 500lfpm is maintained.
Power Supply Current
(Note 1.)
Input HIGH Voltage Single Ended
(Note 4.)
Input LOW Voltage Single Ended
(Note 4.)
Output Voltage Reference
Range (Note 3.)
Input HIGH Current
Input LOW Current
Power Supply (Referenced to GND, V EE = –3.3V)
Power Supply (Referenced to GND, V CC = +3.3V)
Input Voltage (V I not more positive than GND)
Output Current
V BB Sink/Source Current
Operating Temperature Range
Storage Temperature
Thermal Resistance (Junction–to–Ambient)
Thermal Resistance (Junction–to–Case)
Solder Temperature (<2 to 3 Seconds: 245 C desired)
Characteristic
D
D
{
Parameter
–1165
–1810
–1550
–150
Min
8.0
0.5
V EE +2.0
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MC100EPT25
–40 C
–1450
Typ
16
2
–1625
–1350
–880
Max
150
0.0
25
Continuous
500lfpm
–1165
–1810
–1550
–150
Still Air
Min
8.0
0.5
Surge
V EE +2.0
–1450
25 C
Typ
16
–1625
–1350
–880
Max
150
0.0
25
41 to 44
–65 to +150
–40 to +85
–6.0 to 0
0 to 3.8
0 to 3.8
Value
100
190
130
265
50
0.5
–1810
–1550
–1165
–150
Min
8.0
0.5
V EE +2.0
5%
–1450
85 C
Typ
16
–1625
–1350
–880
Max
150
0.0
25
VDC
VDC
VDC
Unit
mA
mA
C/W
C/W
C
C
C
Unit
mA
mV
mV
mV
V
A
A

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