Technical Document
Specifications
Mounting Type
Surface Mount
Package Type
MSOP
Pin Count
10
Dimensions
4 x 4 x 0.85mm
Length
4mm
Width
4mm
Height
0.85mm
Maximum Operating Supply Voltage
3.6 V
Minimum Operating Temperature
-40 °C
Maximum Operating Temperature
+85 °C
Minimum Operating Supply Voltage
3 V
Maximum Output Frequency
160MHz
Product details
Si535x Clock Generators, Silicon Labs
The Silicon Labs Si535x factory and I²C programmable LVCMOS clock generators are customisable to generate multiple, independent non-integer-related frequencies. They provide equivalent frequency synthesis capability of 8 PLLs, with exact frequency synthesis (0 ppm error), low jitter, low power, all in a small package size.
Factory customisation options are available to minimise EMI, including configurable edge rates, output impedance, output skew, and spread spectrum. Perfect for consumer audio/video and embedded applications, consolidating all system clock requirements into a single device.
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EGP 177.57
Each (In a Pack of 5) (ex VAT)
Standard
5
EGP 177.57
Each (In a Pack of 5) (ex VAT)
Standard
5
Technical Document
Specifications
Mounting Type
Surface Mount
Package Type
MSOP
Pin Count
10
Dimensions
4 x 4 x 0.85mm
Length
4mm
Width
4mm
Height
0.85mm
Maximum Operating Supply Voltage
3.6 V
Minimum Operating Temperature
-40 °C
Maximum Operating Temperature
+85 °C
Minimum Operating Supply Voltage
3 V
Maximum Output Frequency
160MHz
Product details
Si535x Clock Generators, Silicon Labs
The Silicon Labs Si535x factory and I²C programmable LVCMOS clock generators are customisable to generate multiple, independent non-integer-related frequencies. They provide equivalent frequency synthesis capability of 8 PLLs, with exact frequency synthesis (0 ppm error), low jitter, low power, all in a small package size.
Factory customisation options are available to minimise EMI, including configurable edge rates, output impedance, output skew, and spread spectrum. Perfect for consumer audio/video and embedded applications, consolidating all system clock requirements into a single device.