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CDCE949 Fiches technique(PDF) 2 Page - Texas Instruments |
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CDCE949 Fiches technique(HTML) 2 Page - Texas Instruments |
2 / 31 page CDCE949 CDCEL949 SCAS844D – AUGUST 2007 – REVISED MARCH 2010 www.ti.com This integrated circuit can be damaged by ESD. Texas Instruments recommends that all integrated circuits be handled with appropriate precautions. Failure to observe proper handling and installation procedures can cause damage. ESD damage can range from subtle performance degradation to complete device failure. Precision integrated circuits may be more susceptible to damage because very small parametric changes could cause the device not to meet its published specifications. DESCRIPTION The CDCE949 and CDCEL949 are modular PLL-based low cost, high-performance, programmable clock synthesizers, multipliers and dividers. They generate up to 9 output clocks from a single input frequency. Each output can be programmed in-system for any clock frequency up to 230 MHz, using up to four independent configurable PLLs. The CDCx949 has separate output supply pins, VDDOUT, 1.8 V for the CDCEL949, and 2.5 V to 3.3 V for CDCE949. The input accepts an external crystal or LVCMOS clock signal. If an external crystal is used, an on-chip load capacitor is adequate for most applications. The value of the load capacitor is programmable from 0 to 20 pF. Additionally, an on-chip VCXO is selectable, allowing synchronization of the output frequency to an external control signal, that is, a PWM signal. The deep M/N divider ratio allows the generation of zero-ppm audio/video, networking (WLAN, BlueTooth™, Ethernet, GPS) or Interface (USB, IEEE1394, Memory Stick) clocks from a reference input frequency, such as 27 MHz. All PLLs support SSC (Spread-Spectrum Clocking). SSC can be Center-Spread or Down-Spread clocking. This is a common technique to reduce electro-magnetic interference (EMI). Based on the PLL frequency and the divider settings, the internal loop-filter components are automatically adjusted to achieve high stability, and to optimize the jitter-transfer characteristics of each PLL. The device supports non-volatile EEPROM programming for easy customization of the device to the application. It is preset to a factory-default configuration (see the Default Device Configuration section). It can be reprogrammed to a different application configuration before PCB assembly, or reprogrammed by in-system programming. All device settings are programmable through the SDA/SCL bus, a 2-wire serial interface. Three programmable control inputs, S0, S1 and S2, can be used to control various aspects of operation including frequency selection, changing the SSC parameters to lower EMI, PLL bypass, power down, and choosing between low level or 3-state for the output-disable function. The CDCx949 operates in a 1.8 V environment. It operates within a temprateure range of –40° C to 85° C. DEVICE INFORMATION TERMINAL FUNCTIONS TERMINAL I/O NAME NO. (TSSOP24) 21, 19, 18, 7, 8, Y1, Y2, ...Y9 O LVCMOS outputs 16, 15, 11, 12 Xin/CLK 1 I Crystal oscillator input or LVCMOS clock input (selectable via SDA/SCL bus) Xout 24 O Crystal oscillator output (leave open or pull up when not used) VCtrl 4 I VCXO control voltage (leave open or pull up when not used) VDD 3, 13 Power 1.8V power supply for the device CDCEL949: 1.8 V supply for all outputs VDDOUT 6, 10, 17 Power CDCE949: 3.3 V or 2.5 V supply for all outputs GND 5, 9, 14, 20 Ground Ground S0 2 I User-programmable control input S0; LVCMOS inputs; internal pull-up 500 k Ω SDA: Bi-directional serial data input/output (default configuration), LVCMOS; internal SDA / S1 23 I/O / I pull-up 500 k Ω; or S1: User-programmable control input; LVCMOS inputs; internal pull-up 500 k Ω SCL: Serial clock input (default configuration), LVCMOS; internal pull-up 500 k Ω; or SCL / S2 22 I S2: User-programmable control input; LVCMOS inputs; internal pull-up 500 k Ω 2 Submit Documentation Feedback Copyright © 2007–2010, Texas Instruments Incorporated Product Folder Link(s): CDCE949 CDCEL949 |
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