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932QL456 Datasheet, PDF (10/23 Pages) Integrated Device Technology – Low-Power CK420BQ Derivative for PCIe
932SQL456 DATASHEET
Electrical Characteristics–Input/Supply/Common Parameters
TA = TAMB; Supply Voltage VDDx = 3.3 V +/-5%
PARAMETER
SYMBOL
CONDITIONS
MIN
TYP
MAX
Operating Voltage
V
3.135
3.3
3.465
UNITS NOTES
V
Ambient Operating
Temperature
Input High Voltage
Input Low Voltage
TAMB
VIH
VIL
Commmercial range
0
Industrial range
Single-ended inputs, except
SMBus, low threshold and tri-
level inputs
Single-ended inputs, except
SMBus, low threshold and tri-
level inputs
-40
2
GND - 0.3
70
°C
85
°C
VDD + 0.3 V
0.8
V
Single-ended inputs,
IIN
VIN = GND, VIN = VDD
-5
5
uA
Input Current
Single-ended inputs.
VIN = 0 V; Inputs with internal
IINP
pull-up resistors
-200
VIN = VDD; Inputs with internal
pull-down resistors
Low Threshold Input-
High Voltage
VIH_FS
3.3 V +/-5%
0.7
Low Threshold Input-
Low Voltage
VIL_FS
3.3 V +/-5%
VSS - 0.3
Input Frequency
Pin Inductance
Capacitance
Fi
Lpin
CIN
COUT
Logic Inputs
Output pin capacitance
CINX
X1 & X2 pins
Clk Stabilization
TSTAB
From VDD Power-Up and after
input clock stabilization or de-
assertion of PD# to 1st clock
Tdrive_PD#
tDRVPD
Differential output enable after
PD# de-assertion
Tfall
Trise
SMBus Input Low
Voltage
tF
tR
VILSMB
Fall time of control inputs
Rise time of control inputs
SMBus Input
High Voltage
VIHSMB
2.1
SMBus Output
Low Voltage
VOLSMB
@ IPULLUP
SMBus Sink Current
IPULLUP
@ VOL
4
Nominal Bus Voltage
VDDSMB
3V to 5V +/- 10%
2.7
SCLK/SDATA Rise Time
tRSMB
(Max VIL - 0.15) to (Min VIH +
0.15)
SCLK/SDATA Fall Time
tFSMB
(Min VIH + 0.15) to (Max VIL -
0.15)
SMBus Operating
Frequency
fSMB
SMBus operating frequency
400
1Guaranteed by design and characterization, not 100% tested in production.
2Control input must be monotonic from 20% to 80% of input swing.
3Time from deassertion until outputs are >200 mV
LOW-POWER CK420BQ DERIVATIVE FOR PCIE SEPARATE CLOCK ARCHITECTURES
25.00
200
uA
VDD + 0.3 V
0.35
V
MHz
7
nH
5
pF
5
pF
5
pF
1.8
ms
300
us
5
ns
5
ns
0.8
V
VDDSMB
V
0.4
V
mA
5.5
V
1000
ns
300
ns
kHz
10
2
1
1
1
1
2
1,3
1,2
1,2
1
1
1
REVISION B 09/29/15