SL28610BLCT Silicon Laboratories Inc, SL28610BLCT Datasheet - Page 16

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SL28610BLCT

Manufacturer Part Number
SL28610BLCT
Description
Clock Generators & Support Products AtomPoulsbo Handheld Embed.1.5V PCIe G1
Manufacturer
Silicon Laboratories Inc
Datasheet

Specifications of SL28610BLCT

Lead Free Status / RoHS Status
Lead free / RoHS Compliant
DC Electrical Specifications
AC Electrical Specifications
...................... DOC #: SP-AP-0078 (Rev. AA) Page 16 of 23
C
C
L
V
V
Power
Crystal
T
T
T
T
L
Clock Input
T
T
T
T
V
V
I
I
CPU at 0.7V
T
T
T
T
T
T
T
T
T
T
T
T
T
T
T
IL
IH
IN
DC
PERIOD
R
CCJ
ACC
DC
R
CCJ
LTJ
DC
PERIOD
PERIOD
PERIOD
PERIOD
PERIODSS
PERIODSS
PERIODSS
PERIODSS
PERIODAbs
PERIODAbs
PERIODAbs
PERIODAbs
PERIODSSAbs
PERIODSSAbs
XIH
XIL
IL
IH
IN
OUT
Parameter
/T
/T
Parameter
F
F
XIN Duty Cycle
XIN Period
XIN Rise and Fall Times
XIN Cycle to Cycle Jitter
Long-term Accuracy
CLKIN Duty Cycle
CLKIN Rise and Fall Times
CLKIN Cycle to Cycle Jitter
CLKIN Long Term Jitter
Input Low Voltage
Input High Voltage
Input LowCurrent
Input HighCurrent
CPU Clock Duty Cycle
100 MHz CPU Clock Period
133 MHz CPU Clock Period
166 MHz CPU Clock Period
200 MHz
100 MHz CPU Clock Period, SSC
133 MHz CPU Clock Period, SSC
166 MHz CPU Clock Period, SSC
200 MHz
100 MHz CPU Clock Absolute period
133 MHz CPU Clock Absolute period
166 MHz CPU Clock Absolute period
200 MHz
100 MHz CPU Clock Absolute period,
SSC
133 MHz CPU Clock Absolute period,
SSC
Input Pin Capacitance
Output Pin Capacitance
Pin Inductance
Xin High Voltage
Xin Low Voltage
Power Consumption
CPU Clock
CPU Clock
CPU Clock
Description
Description
Period
Period, SSC
Absolute period
(continued)
The device operates reliably with input
duty cycles up to 30/70 but the REF clock
duty cycle will not be within specification
When XIN is driven from an external
clock source
Measured between 0.3V
As an average over 1-s duration
Measured at VDD/2 differential
Measured at VDD/2
Measured between 0.2V
Measured at VDD/2
Measured at VDD/2
XIN / CLKIN pin
XIN / CLKIN pin
XIN / CLKIN pin, 0 < VIN <0.8
XIN / CLKIN pin, VIN = VDD
Measured at 0V differential at 0.1s
Measured at 0V differential at 0.1s
Measured at 0V differential at 0.1s
Measured at 0V differential at 0.1s
Measured at 0V differential at0.1s
Measured at 0V differential at 0.1s
Measured at 0V differential at 0.1s
Measured at 0V differential at 0.1s
Measured at 0V differential at 0.1s
Measured at 0V differential at 1 clock
Measured at 0V differential at 1 clock
Measured at 0V differential at1 clock
Measured at 0V differential at 1 clock
Measured at 0V differential at1 clock
Measured at 0V differential at 1 clock
Condition
Condition
DD
DD
and 0.7V
and 0.8V
0.7V
Min.
1.5
0
DD
DD
DD
9.997001
7.497751
5.998201
9.997001
7.412751
5.998201
9.912001
7.412751
5.913201
9.912001
7.412751
4.99950
5.01203
4.91450
69.841
Min.
47.5
0.5
47
45
2
0.3V
Max.
V
100
5
6
7
DD
SL28610
VDD+0.3
10.00300
7.587251
6.001801
10.05327
7.624950
6.031960
10.08800
7.587251
6.086801
10.13827
7.624950
DD
5.00050
5.01303
5.08550
Max.
52.5
71.0
10.0
500
250
250
350
4.0
0.8
53
20
35
55
V/ns
Unit
ppm
Unit
mW
uA
uA
ns
ns
ps
ps
ps
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
%
%
%
ns
ns
ns
nH
pF
pF
V
V
V
V

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