Si5369-EVB Silicon Laboratories Inc, Si5369-EVB Datasheet - Page 2

MCU, MPU & DSP Development Tools SI5369 DEV KIT

Si5369-EVB

Manufacturer Part Number
Si5369-EVB
Description
MCU, MPU & DSP Development Tools SI5369 DEV KIT
Manufacturer
Silicon Laboratories Inc
Datasheets

Specifications of Si5369-EVB

Processor To Be Evaluated
Si5369
Interface Type
I2C, SPI
Operating Supply Voltage
3.3 V
Lead Free Status / Rohs Status
 Details
S i 5 3 6 5 / 6 6 - E V B
S i 5 3 6 7 / 6 8 - E V B
S i 5 3 6 9 - E V B
2. Applications
The Si536x Any-Frequency Precision Clocks have a comprehensive feature set, including any-frequency
synthesis, multiple clock inputs, multiple clock outputs, alarm and status outputs, hitless switching between input
clocks, programmable output clock signal format (LVPECL, LVDS, CML, CMOS), output phase adjustment
between output clocks, and output phase adjustment between all output clocks and the selected reference input
clock (phase increment/decrement). For more details, consult the Silicon Laboratories timing products website at
www.silabs.com/timing.
Both evaluation boards (EVBs) have a Silicon Laboratories MCU (C8051F340) that supports USB communications
with a PC host. For the pin controlled parts (Si5365 and Si5366), the pin settings of the devices are determined by
the MCU and the PC resident software that is provided with the EVB. For the MCU controlled parts (Si5367,
Si5368, and Si5369), the devices are controlled and monitored through the serial port (either SPI or I
sits between the MCU and the Precision Clock device that performs voltage level translation and stores the pin
configuration data for the pin controlled devices. Jumper plugs are provided so that the user can bypass the MCU/
CPLD to manually control the pin controlled devices. Ribbon headers and SMA connectors are included so that
external clock in, clock out and status pins can be easily accessed by the user. For the MCU controlled devices
(Si5367, Si5368, and Si5369)), the user also has the option of bypassing the MCU and controlling the parts from an
external serial device. On-board termination is included so that the user can evaluate either single-ended or
differential as well as ac or dc coupled clock inputs and outputs. A separate DUT (device under test) power supply
connector is included so that the Precision Clocks can be run at either 1.8, 2.5, or 3.3 V, while the USB MCU
remains at 3.3 V. LEDs are provided for convenient monitoring of key status signals.
For more detailed information about these devices, refer to the Any-Frequency Precision Clock Family Reference
Manual.
2
Si5365
Si5367
Si5366
Si5368
Si5369
4
4
4
4
4
5
5
5
5
5
Any-Frequency Precision Clock Multipliers with Jitter Attenuation
I
I
I
2
2
2
SPI
SPI
SPI
Pin
Pin
C or
C or
C or
.008 to
.002 to
.002 to
15 to
10 to
707
710
707
710
710
Table 1. Features by Part Number
.008 to
.002 to
.002 to
19 to
1050
10 to
1400
1050
1400
1400
Precision Clock Multipliers
rms typ
rms typ
rms typ
rms typ
rms typ
0.6 ps
0.6 ps
0.3 ps
0.3 ps
0.3 ps
Rev. 0.5
30 kHz–1.3 MHz
30 kHz–1.3 MHz
60 Hz–8.4 kHz
60 Hz–8.4 kHz
4 Hz–525 Hz
Y
Y
Y
Y
Y
N
N
Y
Y
Y
LOL, LOS,
LOL, LOS,
LOL, LOS,
LOS, FOS
LOS, FOS
FOS
FOS
FOS
2
C). A CPLD
100-TQFP
100-TQFP
100-TQFP
100-TQFP
100-TQFP
14 x 14
14 x 14
14 x 14
14 x 14
14 x 14

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