
7
MC100EP222
MOTOROLA ADVANCED CLOCK DRIVERS DEVICE DATA
650
Table 2: PIN CONFIGURATION
Pin
I/O
Type
Description
CLK0, CLK0
Input
ECL/PECL
Differential reference clock signal input
CLK1, CLK1
Input
ECL/PECL
Alternative differential reference clock signal input
CLK_SEL
Input
ECL/PECL
Clock input select
QAn, QAn
Output
ECL/PECL
Bank A differential outputs
QBn, QBn
Output
ECL/PECL
Bank B differential outputs
QCn, QCn
Output
ECL/PECL
Bank C differential outputs
QDn, QDn
Output
ECL/PECL
Bank D differential outputs
FSELA
Input
ECL/PECL
Selection of bank A output frequency
FSELB
Input
ECL/PECL
Selection of bank B output frequency
FSELC
Input
ECL/PECL
Selection of bank C output frequency
FSELD
Input
ECL/PECL
Selection of bank D output frequency
MR
Input
ECL/PECL
Reset
VBB
Output
DC bias output for single ended input operation
VEEa
Supply
Negative power supply
VCC, VCCO
Supply
Positive power supply. All VCC and VCCO pins must be connected to the
positive power supply for correct DC and AC operation
a.
In ECL mode (negative power supply mode), VEE is either -3.3V or -2.5V and VCC is connected to GND (0V).
In PECL mode (positive power supply mode), VEE is connected to GND (0V) and VCC is either +3.3V or +2.5V .
In both modes, the input and output levels are referrenced to the most positive supply.
Table 3: ABSOLUTE MAXIMUM RATINGSa
Symbol
Characteristics
Min
Max
Unit
Condition
VCC
Supply Voltage
-0.3
4.6
V
VIN
DC Input Voltage
-0.3
VCC+0.3
V
VOUT
DC Output Voltage
-0.3
VCC+0.3
V
IIN
DC Input Current
±20
mA
IOUT
DC Output Current
±50
mA
TS
Storage temperature
-65
125
°C
a.
Absolute maximum continuos ratings are those maximum values beyond which damage to the device may occur. Exposure to these con-
ditions or conditions beyond those indicated may adversely affect device reliability. Functional operation at absolute-maximum-rated con-
ditions is not implied.
Table 4: GENERAL SPECIFICATIONS
Symbol
Characteristics
Min
Typ
Max
Unit
Condition
VTT
Output termination voltage
VCC - 2a
V
MM
ESD Protection (Machine model)
75
V
HBM
ESD Protection (Human body model)
1500
V
CDM
ESD Protection (Charged device model
500
V
LU
Latch-up immunity
200
mA
CIN
4.0
pF
Inputs
θJA
Thermal resistance junction to ambient
See application informationb
θJC
Thermal resistance junction to case
See application information
a.
Output termination voltage VTT = 0V for VCC=2.5V operation is supported but the power consumption of the device will increase
b.
Proper thermal management is critical for reliable system operation. This especially true for high-fanout and high drive capability prod-
ucts. Thermal package information and exposed pad land pattern design recommendations are available in the applications section of
this datasheet. In addition, the means of calculating die power consumption, the corresponding die temperature and the relationsship to
long-term reliability is addressed in the Motorola application note AN1545. Thermal modeling is recommended for the MC100EP222.