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Programmer Folha de dados(PDF) 3 Page - Cypress Semiconductor

Nome de Peças Programmer
Descrição Electrónicos  Programmable Spread Spectrum Clock Generator for EMI Reduction
PDF  15 Pages
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Fabricante Electrônico  CYPRESS [Cypress Semiconductor]
Página de início  http://www.cypress.com
Logo CYPRESS - Cypress Semiconductor

Programmer Folha de dados(HTML) 3 Page - Cypress Semiconductor

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CY25200
Document Number: 38-07633 Rev. *H
Page 3 of 15
Pin Configuration
Figure 1. Pin Diagram
General Description
The CY25200 is a Spread Spectrum Clock Generator (SSCG) IC
used to reduce Electro Magnetic Interference (EMI) found in
today’s high speed digital electronic systems.
The device uses a Cypress proprietary Phase-Locked Loop
(PLL) and Spread Spectrum Clock (SSC) technology to
synthesize and modulate the frequency of the input clock. By
frequency modulating the clock, the measured EMI at the
fundamental and harmonic frequencies are reduced. This
reduction in radiated energy significantly reduces the cost of
complying with regulatory agency requirements (EMC) and
improves
time
to
market,
without
degrading
system
performance.
The CY25200 uses a factory and field-programmable
configuration memory array to synthesize output frequency,
spread %, crystal load capacitor, clock control pins, PD#, and OE
options.
The spread % is factory and field-programmed to either center
spread or down spread with various spread percentages. The
range for center spread is from ±0.25% to ±2.50%. The range for
down spread is from –0.5% to –5.0%. Contact the factory for
smaller or larger spread % amounts, if required.
The input to the CY25200 is either a crystal or a clock signal. The
input frequency range for crystals is 8 to 30 MHz and for clock
signals is 8 to 166 MHz.
The CY25200 has six clock outputs, SSCLK1 to SSCLK6. The
frequency modulated SSCLK outputs are programmed from 3 to
200 MHz.
The CY25200 products are available in a 16-pin TSSOP
package with a commercial operating temperature range of 0 to
70
C.
Note
1. Pins are programmed to be any of the following control signals: OE: Output Enable, OE = 1, all the SSCLK outputs are enabled; PD#: Power down, PD# = 0, all the
SSCLK outputs are three-stated and the part enters a low power state; SSON: Spread Spectrum Control (SSON = 0, No Spread and SSON = 1, Spread Signal),
CLKSEL: SSCLK Output Frequency Select.See Control Pins (CP0, CP1, CP2 and CP3) for control pins programming options.
Table 1. Pin Summary
Name
Pin Number
Description
XIN
1
Crystal input or Reference Clock input
XOUT
16
Crystal output. Leave this pin floating if external clock is used
VDD
2
3.3 V power supply for digital logic and SSCLK5 and 6 clock outputs
AVDD
3
3.3 V analog–PLL power supply
VSS
13
Ground
AVSS
5
Analog ground
VDDL
11
2.5 V or 3.3 V power supply for SSCLK1/2/3/4 clock outputs
VSSL
6
VDDL power supply ground
SSCLK1
7
Programmable spread spectrum clock output at VDDL level (2.5 V or 3.3 V)
SSCLK2
8
Programmable spread spectrum clock output at VDDL level (2.5 V or 3.3 V)
SSCLK3
9
Programmable spread spectrum clock output at VDDL level (2.5 V or 3.3 V)
SSCLK4
12
Programmable spread spectrum clock output at VDDL level (2.5 V or 3.3 V)
SSCLK5/REFOUT/CP2
14
Programmable spread spectrum clock or buffered reference output at VDD
level (3.3 V) or control pin, CP2
SSCLK6/REFOUT/CP3
15
Programmable spread spectrum clock or buffered reference output at VDD
level (3.3 V) or control pin, CP3
CP0[1]
4
Control pin 0
CP1[1]
10
Control pin 1
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