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CY29653
Document #: 38-07477 Rev. *C
Page 3 of 7
Absolute Maximum Conditions
Parameter
Description
Condition
Min.
Max.
Unit
VDD
DC Supply Voltage
–0.3
5.5
V
VDD
DC Operating Voltage
Functional
3.135
3.465
V
VIN
DC Input Voltage
Relative to VSS
–0.3
VDD + 0.3
V
VOUT
DC Output Voltage
Relative to VSS
–0.3
VDD + 0.3
V
VTT
Output termination Voltage
VDD ÷ 2V
LU
Latch Up Immunity
Functional
200
mA
RPS
Power Supply Ripple
Ripple Frequency < 100 kHz
150
mVp-p
TS
Temperature, Storage
Non-functional
–65
+150
°C
TA
Temperature, Operating Ambient
Functional
–
+85
°C
TJ
Temperature, Junction
Functional
150
°C
ØJC
Dissipation, Junction to Case
Functional
42
°C/W
ØJA
Dissipation, Junction to Ambient
Functional
105
°C/W
ESDH
ESD Protection (Human Body Model)
2000
V
FIT
Failure in Time
Manufacturing test
10
ppm
DC Parameters (VDD = 3.3V ± 5%, TA = operating temperature range)
Parameter
Description
Condition
Min.
Typ.
Max.
Unit
VIL
Input Voltage, Low
LVCMOS
–
–
0.8
V
VIH
Input Voltage, High
LVCMOS
2.0
–
VDD+0.3
V
VPP–DC
Peak-Peak Input Voltage
LVPECL
250
–
1000
mV
VCMR
Common Mode Range[4]
LVPECL
1.0
–
VDD – 0.6
V
VOL
Output Voltage, Low[5]
IOL = 24 mA
–
–
0.55
V
IOL = 12 mA
–
–
0.30
VOH
Output Voltage, High[5]
IOH = –24 mA
2.4
–
V
IIL
Input Current, Low[6]
VIL = VSS
–
–
–100
µA
IIH
Input Current, High[6]
VIL = VDD
––
100
µA
IDDA
PLL Supply Current
AVDD only
–
–
7
mA
IDDQ
Quiescent Supply Current
All VDD pins except AVDD
––
4
mA
IDD
Dynamic Supply Current
Outputs loaded @ 100 MHz
–
330
–
mA
CIN
Input Pin Capacitance
–
4
–
pF
ZOUT
Output Impedance
12
15
18
Ω
AC Parameters (VDD = 3.3V ± 5%, TA = operating temperature range) [3]
Parameter
Description
Condition
Min.
Typ.
Max.
Unit
fVCO
VCO Frequency
140
–
500
MHz
fin
Input Frequency
÷4 Feedback
35
–
125
MHz
÷8 Feedback
25
–
62.5
Bypass mode (BYPASS# = 0)
0
–
200
frefDC
Input Duty Cycle
40
–
60
%
VPP
Peak-Peak Input Voltage
LVPECL
500
–
1000
mV
Notes:
3. AC characteristics apply for parallel output termination of 50
Ω to VTT. Parameters are guaranteed by characterization and are not 100% tested.
4. VCMR (DC) is the crossing point of the differential input signal. Normal operation is obtained when the crossing point is within the VCMR range and the input swing
is within the VPP (DC) specification.
5. Driving one 50
Ω parallel terminated transmission line to a termination voltage of VTT. Alternatively, each output drives up to two 50 Ω series terminated
transmission lines.
6. Inputs have pull-up or pull-down resistors that affect the input current.