5V50017DCG

DATASHEET
LOW EMI CLOCK GENERATOR IDT5V50017
IDT™
LOW EMI CLOCK GENERATOR 1
IDT5V50017 REV D 040709
Description
The IDT5V50017 generates a low EMI output clock from a
clock input. The part is designed to dither the LCD interface
clock for PDAs, printers, DTVs, scanners, modems, copiers,
and others. Using IDT’s proprietary mix of analog and
digital Phase-Locked Loop (PLL) technology, the device
spreads the frequency spectrum of the output, reducing the
frequency amplitude peaks by several dB.
IDT offers many other clocks for computers and computer
peripherals. Consult IDT when you need to remove crystals
and oscillators from your board.
Features
Packaged in 8-pin SOIC
Provides a spread spectrum output clock
15 - 60 MHz operation
Accepts a clock input (provides same frequency dithered
output)
Down spread modulation
Peak reduction by 8 dB to 16 dB typical on 3rd through
19th odd harmonics
Low EMI feature can be disabled
Operating voltage of 3.3 V
Advanced, low-power CMOS process
Block Diagram
PLL Clock
Synthesis
and Spread
Spectrum
Circuitry
S1:0
SSCLK
2
GND
VDD
ICLK
IDT5V50017
LOW EMI CLOCK GENERATOR SSCG
IDT™
LOW EMI CLOCK GENERATOR 2
IDT5V50017 REV D 040709
Pin Assignment Spread Direction and Percentage
Select Table
0 = connect to GND
1 = connect directly to VDD
Pin Descriptions
ICLK
VDD
GND
S0
SSCLK
S1
GND
VDD1
2
3
4
8
7
6
5
8 pin (150 mil) SOIC
S1
Pin 6
S0
Pin 7
Spread
Direction
Spread
Percentage
00 OFF -
01 Down -1.0%
10 Down -2.0%
11 Down -3.0%
Pin
Number
Pin
Name
Pin Type Pin Description
1 ICLK Input 15-60 MHz clock input.
2 VDD Power Connect to +3.3 V.
3 GND Power Connect to ground.
4 SSCLK Output Clock output with spread spectrum.
5 GND Power Connect to ground.
6 S1 Input Function select 1 input. Selects spread amount and direction per table above.
Internal pull-down.
7 S0 Input Function select 0 input. Selects spread amount and direction per table above.
Internal pull-down.
8 VDD Power Connect to +3.3 V.
IDT5V50017
LOW EMI CLOCK GENERATOR SSCG
IDT™
LOW EMI CLOCK GENERATOR 3
IDT5V50017 REV D 040709
External Components
The IDT5V50017 requires a minimum number of external
components for proper operation.
Decoupling Capacitor
A decoupling capacitor of 0.01µF must be connected
between VDD and GND on pins 2 and 3, as close to these
pins as possible. For optimum device performance, the
decoupling capacitor should be mounted on the component
side of the PCB. Avoid the use of vias in the decoupling
circuit.
Series Termination Resistor
When the PCB trace between the clock output and the load
is over 1 inch, series termination should be used. To series
terminate a 50Ω trace (a commonly used trace impedance)
place a 33Ω resistor in series with the clock line, as close to
the clock output pin as possible. The nominal impedance of
the clock output is 20Ω.
PCB Layout Recommendations
For optimum device performance and lowest output phase
noise, the following guidelines should be observed.
1) The 0.01µF decoupling capacitor should be mounted on
the component side of the board as close to the VDD pin as
possible. No vias should be used between the decoupling
capacitor and VDD pin. The PCB trace to VDD pin should
be kept as short as possible, as should the PCB trace to the
ground via.
2) To minimize EMI, the 33Ω series termination resistor (if
needed) should be placed close to the clock output.
3) An optimum layout is one with all components on the
same side of the board, minimizing vias through other signal
layers. Other signal traces should be routed away from the
IDT5V50017. This includes signal traces just underneath
the device, or on layers adjacent to the ground plane layer
used by the device.
Spread Spectrum Profile
The IDT5V50017 low EMI clock generator uses an
optimized frequency slew rate algorithm to facilitate down
stream tracking of zero delay buffers and other PLL devices.
The frequency modulation amplitude is constant with
variations of the input frequency.
Time
Frequency
Modulation Rate

5V50017DCG

Mfr. #:
Manufacturer:
Description:
IC CLK GENERATOR LOW EMI 8SOIC
Lifecycle:
New from this manufacturer.
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