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Silicon Labs SI5 DataSheet

No. Partie # Fabricant Description Fiche Technique
1
SI5351A

Silicon Labs
I2C-PROGRAMMABLE ANY-FREQUENCY CMOS CLOCK GENERATOR+VCXO

 https://www.silabs.com/timing/clock-
 Glitchless frequency changes generators/cmos
 Separate voltage supply pins
 Generates up to eight non-integer- provide level translation: related frequencies from 2.5 kHz to 200 MHz
 I2C user definabl
Datasheet
2
SI5351C-B

Silicon Labs
I2C-PROGRAMMABLE ANY-FREQUENCY CMOS CLOCK GENERATOR+VCXO

 https://www.silabs.com/timing/clock-
 Glitchless frequency changes generators/cmos
 Separate voltage supply pins
 Generates up to eight non-integer- provide level translation: related frequencies from 2.5 kHz to 200 MHz
 I2C user definabl
Datasheet
3
SI5351B-B

Silicon Labs
I2C-PROGRAMMABLE ANY-FREQUENCY CMOS CLOCK GENERATOR+VCXO

 https://www.silabs.com/timing/clock-
 Glitchless frequency changes generators/cmos
 Separate voltage supply pins
 Generates up to eight non-integer- provide level translation: related frequencies from 2.5 kHz to 200 MHz
 I2C user definabl
Datasheet
4
SI5351B

Silicon Labs
I2C-PROGRAMMABLE ANY-FREQUENCY CMOS CLOCK GENERATOR+VCXO

 https://www.silabs.com/timing/clock-
 Glitchless frequency changes generators/cmos
 Separate voltage supply pins
 Generates up to eight non-integer- provide level translation: related frequencies from 2.5 kHz to 200 MHz
 I2C user definabl
Datasheet
5
SI5351C

Silicon Labs
I2C-PROGRAMMABLE ANY-FREQUENCY CMOS CLOCK GENERATOR+VCXO

 https://www.silabs.com/timing/clock-
 Glitchless frequency changes generators/cmos
 Separate voltage supply pins
 Generates up to eight non-integer- provide level translation: related frequencies from 2.5 kHz to 200 MHz
 I2C user definabl
Datasheet
6
SI5356

Silicon Labs
QUAD FREQUENCY 8-OUTPUT CLOCK GENERATOR









 Generates any frequency from 1 to
 200 MHz on each of the 4 output banks Programmable frequency configuration
 Guaranteed 0 ppm frequency synthesis error for any combination of frequencies
 25 or 27 MHz xtal or 5
  –200 MHz input
Datasheet
7
SI5351

Silicon Labs
I2C-PROGRAMMABLE ANY-FREQUENCY CMOS CLOCK GENERATOR+VCXO

 https://www.silabs.com/timing/clock-
 Glitchless frequency changes generators/cmos
 Separate voltage supply pins
 Generates up to eight non-integer- provide level translation: related frequencies from 2.5 kHz to 200 MHz
 I2C user definabl
Datasheet
8
SI5351A-B

Silicon Labs
I2C-PROGRAMMABLE ANY-FREQUENCY CMOS CLOCK GENERATOR+VCXO

 https://www.silabs.com/timing/clock-
 Glitchless frequency changes generators/cmos
 Separate voltage supply pins
 Generates up to eight non-integer- provide level translation: related frequencies from 2.5 kHz to 200 MHz
 I2C user definabl
Datasheet
9
Si540

Silicon Labs
Crystal Oscillator
Datasheet
10
Si5367

Silicon Labs
uP-PROGRAMMABLE PRECISION CLOCK MULTIPLIER

 Not recommended for new
 Five clock outputs with selectable designs. For alternatives, see the signal format (LVPECL, LVDS, Si533x family of products. CML, CMOS)
 Generates any frequency from
 Support for ITU G.709 FEC ratios 2 kHz to 945
Datasheet
11
Si5322

Silicon Labs
PIN-PROGRAMMABLE PRECISION CLOCK MULTIPLIER

 Not recommended for new
 Dual clock outputs with designs. For alternatives, see the selectable signal format: Si533x family of products. LVPECL, LVDS, CML, CMOS
 Selectable output frequencies
 Support for ITU G.709 FEC ratios ranging from
Datasheet
12
Si5365

Silicon Labs
PIN-PROGRAMMABLE PRECISION CLOCK MULTIPLIER

 Not recommended for new
 Five clock outputs with selectable designs. For alternatives, see the signal format (LVPECL, LVDS, Si533x family of products. CML, CMOS)
 Selectable output frequencies
 Support for ITU G.709 FEC ratios ranging from
Datasheet
13
SI535

Silicon Labs
(SI535 / SI536) ULTRA LOW JITTER CRYSTAL OSCILLATOR

 Available with select frequencies from
 Available with LVPECL and 100 MHz to 312.5 MHz LVDS outputs
 3rd generation DSPLL® with superior
 3.3 and 2.5 V supply options
 Industry-standard 5 x 7 mm jitter performance and high-power package and pi
Datasheet
14
SI536

Silicon Labs
(SI535 / SI536) ULTRA LOW JITTER CRYSTAL OSCILLATOR

 Available with select frequencies from
 Available with LVPECL and 100 MHz to 312.5 MHz LVDS outputs
 3rd generation DSPLL® with superior
 3.3 and 2.5 V supply options
 Industry-standard 5 x 7 mm jitter performance and high-power package and pi
Datasheet
15
SI5356A

Silicon Labs
QUAD FREQUENCY 8-OUTPUT CLOCK GENERATOR

 Generates any frequency from 1 to
 OEB pin disables all outputs or per 200 MHz on each of the 4 output banks bank OEB control via I2C
 Programmable frequency configuration
 Low jitter: 50 ps pk-pk (typ), 75 ps
 Guaranteed 0 ppm frequency
Datasheet
16
SI5355

Silicon Labs
ANY-FREQUENCY 1-200 MHZ QUAD FREQUENCY 8-OUTPUT CLOCK GENERATOR









 Generates any frequency from 1 to
 200 MHz on each of the 4 output banks Eight CMOS clock outputs Guaranteed 0 ppm frequency synthesis
 error for any combination of frequencies
 25 or 27 MHz xtal or 5
  –200 MHz input clk
 Five pr
Datasheet
17
Si545

Silicon Labs
Crystal Oscillator
Datasheet
18
Si5368

Silicon Labs
ANY-FREQUENCY PRECISION CLOCK MULTIPLIER/JITTER ATTENUATOR

 Generates any frequency from
 Supports holdover and freerun 2 kHz to 945 MHz and select modes of operation frequencies to 1.4 GHz from an
 Five clock outputs with input frequency of 2 kHz to selectable signal format 710 MHz (LVPECL, LVDS,
Datasheet
19
Si5366

Silicon Labs
PRECISION CLOCK MULTIPLIER/JITTER ATTENUATOR

 Selectable output frequencies
 SONET frame sync switching ranging from 8 kHz to 1050 MHz and regeneration
 Ultra-low jitter clock outputs
 Support for ITU G.709 FEC ratios w/jitter generation as low as (255/238, 255/237, 255/236) 0.3 ps rm
Datasheet
20
Si5356B

Silicon Labs
QUAD FREQUENCY 8-OUTPUT CLOCK GENERATOR

 Generates any frequency from 1 to
 OEB pin disables all outputs or per 200 MHz on each of the 4 output banks bank OEB control via I2C
 Eight CMOS clock outputs
 Low jitter: 1.5 ps rms phase jitter
 Programmable frequency configuration
Datasheet



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