参数资料
型号: MC100ES6011DTR2
厂商: MOTOROLA INC
元件分类: 时钟及定时
英文描述: 100E SERIES, LOW SKEW CLOCK DRIVER, 2 TRUE OUTPUT(S), 0 INVERTED OUTPUT(S), PDSO8
封装: TSSOP-8
文件页数: 2/8页
文件大小: 126K
代理商: MC100ES6011DTR2
MC100ES6011
MOTOROLA
TIMING SOLUTIONS
2
Table 1. ATTRIBUTES
Characteristics
Value
Internal Input Pulldown Resistor
75 k
Internal Input Pullup Resistor
56 k
ESD Protection
Human Body Model
Machine Model
Charged Device Model
> 4000 V
> 200 V
> 1500 V
θJA Thermal Resistance (Junction to
Ambient)
0LFPM, 8SOIC
500 LFPM, 8 SOIC
190°C/W
130°C/W
0LFPM, 8TSSOP
500 LFPM, 8 TSSOP
TBD
Meets or exceeds JEDEC Spec EIA/JESD78 IC Latchup Test
Table 2. MAXIMUM RATINGS a
Symbol
Parameter
Conditions
Rating
Units
VSUPPLY
Power Supply Voltage
Difference between
VCC &VEE
3.9
V
VIN
Input Voltage
VCC--VEE ± 3.6 V
VCC+0.3
V
IN
p
g
CC
EE ±
CC
VEE--0.3
V
Iout
Output Current
Continuous Surge
50
100
mA
TA
Operating Temperature Range
--40 to +85
°C
Tstg
Storage Temperature Range
--65 to +150
°C
a Absolute maxim continuous ratings are those maximum values beyond which damage to the device may occur. Exposure to these conditions
or conditions beyond those indicated may adversely affect device reliability. Functional operation at absolute--maximum--rated conditions is not
implied.
Table 3. DC CHARACTERISTICS (VCC =0V; VEE =--2.5 V±5% or VCC =2.5 V±5%; VEE =0V)a
--40°C
0°Cto 85°C
Symbol
Characteristic
Min
Typ
Max
Min
Typ
Max
Unit
IEE
Power Supply Current
12
25
12
25
mA
VOH
Output HIGH Voltageb
VCC--1085
VCC--1005
VCC--880
VCC--1025
VCC--955
VCC--740
mV
VOL
Output LOW Voltageb
VCC--1830
VCC--1605
VCC--1305 VCC--1810 VCC--1705 VCC--1405
mV
VoutPP
Output Peak-to-Peak Voltage
200
mV
VIH
Input HIGH Voltage (Single Ended)
VCC--1165
VCC--880
VCC--1165
VCC--880
mV
VIL
Input LOW Voltage (Single Ended)
VCC--1810
VCC--1475 VCC--1810
VCC--1475
mV
VPP
Differential Input Voltagec
0.12
1.3
0.12
1.3
V
VCMR
Differential Cross Point Voltaged
VEE+1.0
VCC--0.8
VEE+1.0
VCC--0.8
V
IIN
Input Current
±150
A
a ES6011 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 > 500 LFPM is maintained.
b Output termination voltage VTT =0V for VCC = 2.5V operation is supported but the power consumption of the device will increase.
cVPP (DC) is the minimum differential input voltage swing required to maintain device functionality.
dVCMR (DC) is the crosspoint of the differential input signal. Functional operation is obtained when the crosspoint is within the VCMR (DC) range
and the input swing lies within the VPP (DC) specification.
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