SI5319B-C-GM Silicon Laboratories Inc, SI5319B-C-GM Datasheet - Page 8

IC CLOCK MULT/ATTENUATOR 36QFN

SI5319B-C-GM

Manufacturer Part Number
SI5319B-C-GM
Description
IC CLOCK MULT/ATTENUATOR 36QFN
Manufacturer
Silicon Laboratories Inc
Datasheet

Specifications of SI5319B-C-GM

Input
*
Output
*
Frequency - Max
*
Voltage - Supply
*
Operating Temperature
*
Mounting Type
Surface Mount
Package / Case
36-VQFN
Frequency-max
*
Operating Temperature (max)
85C
Operating Temperature (min)
-40C
Package Type
QFN EP
Mounting
Surface Mount
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Table 2. DC Characteristics (Continued)
(V
Si5319
8
Output Voltage High
Output Voltage High
Disabled Leakage
Current
Notes:
Table 3. Microprocessor Control
(V
I
Input Voltage Low
Input Voltage High
Input Current
Hysteresis of Schmitt
trigger inputs
Output Voltage Low
SPI Specifications
Duty Cycle, SCLK
Cycle Time, SCLK
Rise Time, SCLK
Fall Time, SCLK
DD
2
DD
C Bus Lines (SDA, SCL)
1.
2.
3. LVPECL outputs require nominal V
4. This is the amount of leakage that the 3-level inputs can tolerate from an external driver. See Si53xx Family
5. LVPECL, CML, LVDS and low-swing LVDS measured with Fo = 622.08 MHz.
= 1.8 ± 5%, 2.5 ±10%, or 3.3 V ±10%, T
= 1.8 ± 5%, 2.5 ±10%, or 3.3 V ±10%, T
Parameter
Current draw is independent of supply voltage.
No under- or overshoot is allowed.
Reference Manual for more details.
Parameter
Symbol
VHYS
Symbol
VOL
VIH
VIL
V
I
II
OZ
t
OH
DC
I2C
t
t
t
c
r
f
I2C
I2C
I2C
I2C
A
A
= –40 to 85 °C)
DD
= –40 to 85 °C)
Test Condition
V
V
V
V
SCLK = 10 MHz
VIN = 0.1 x V
IO = –2 mA
IO = –2 mA
Test Condition
≥ 2.5 V.
DD
DD
DD
DD
RSTb = 0
to 0.9 x V
V
V
IO = 3 mA
IO = 3 mA
= 2.5 or 3.3 V
DD
= 2.5 or 3.3 V
DD
20–80%
20–80%
= 1.71 V
= 2.97 V
= 1.8 V
= 1.8V
Rev. 1.0
DD
DD
V
V
DD
DD
–100
0.05 x V
Min
0.7 x V
0.1 x V
–0.4
–0.4
Min
–10
100
40
DD
DD
DD
Typ
Typ
0.25 x V
0.2 x V
Max
V
0.4
Max
10
60
25
25
100
DD
DD
DD
Unit
Unit
µA
ns
ns
ns
%
V
V
V
V
V
V
µA
V
V

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