CY2304
Document #: 38-07247 Rev. *F
Page 5 of 9
IDD (PD mode) Power Down Supply Current REF = 0 MHz
–
25.0
μA
IDD
Supply Current
Unloaded outputs, 100 MHz, Select inputs
at VDD or GND
–45.0
mA
Unloaded outputs, 66 MHz REF (–1, –2)
–
35.0
mA
Unloaded outputs, 33 MHz REF (–1, –2)
–
20.0
mA
Switching Characteristics for CY2304SI-X Industrial Temperature Devices
Parameter[5]
Name
Test Conditions
Min
Typ.
Max
Unit
t1
Output Frequency
30 pF load, All devices
10
100
MHz
t1
Output Frequency
15 pF load, All devices
10
133.3
MHz
tDC
Duty Cycle[4] = t2 ÷ t1
(–1,–2)
Measured at 1.4V, FOUT = 66.66 MHz,
30 pF load
40.0
50.0
60.0
%
tDC
Duty Cycle[4] = t2 ÷ t1
(–1,–2)
Measured at 1.4V, FOUT < 50 MHz,
15 pF load
45.0
50.0
55.0
%
t3
Rise Time[4]
(–1, –2)
Measured between 0.8V and 2.0V,
30 pF load
–
–
2.50
ns
t3
Rise Time[4]
(–1, –2)
Measured between 0.8V and 2.0V,
15 pF load
–
–
1.50
ns
t4
Fall Time[4]
(–1, –2)
Measured between 0.8V and 2.0V,
30 pF load
–
–
2.50
ns
t4
Fall Time[4]
(–1, –2)
Measured between 0.8V and 2.0V,
15 pF load
–
–
1.50
ns
t5
Output-to-Output Skew on
same Bank (–1,–2)[4]
All outputs equally loaded
–
–
200
ps
Output Bank A to Output
Bank B Skew (–1)
All outputs equally loaded
–
–
200
ps
Output Bank A to Output
Bank B Skew (–2)
All outputs equally loaded
–
–
400
ps
t6
Skew, REF Rising Edge to
FBK Rising Edge[4]
Measured at VDD/2
–
0
±250
ps
t7
Device-to-Device Skew[4]
Measured at VDD/2 on the FBK pins of
devices
–
0
500
ps
tJ
Cycle-to-Cycle Jitter[4]
(–1)
Measured at 66.67 MHz, loaded outputs,
15 pF load
–
–
180
ps
Measured at 66.67 MHz, loaded outputs,
30 pF load
–
–
200
ps
Measured at 133.3 MHz, loaded outputs,
15 pF load
–
–
100
ps
tJ
Cycle-to-Cycle Jitter[4]
(–2)
Measured at 66.67 MHz, loaded outputs,
30 pF load
–
–
400
ps
Measured at 66.67 MHz, loaded outputs,
15 pF load
–
–
380
ps
tLOCK
PLL Lock Time[4]
Stable power supply, valid clocks
presented on REF and FBK pins
––
1.0
ms
Electrical Characteristics for CY2304SI-X Industrial Temperature Devices (continued)
Parameter
Description
Test Conditions
Min
Max
Unit
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