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5V49EE704NDGI8 - 5V49EE704 - Block Diagram

5V49EE704NDGI8

Obsolete
Renesas Electronics Corporation

EEPROM PROGRAMMABLE CLOCK GENERATOR

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5V49EE704NDGI8 - 5V49EE704 - Block Diagram

5V49EE704NDGI8

Obsolete
Renesas Electronics Corporation

EEPROM PROGRAMMABLE CLOCK GENERATOR

Deep-Dive with AI

Technical Specifications

Parameters and characteristics for this part

Specification5V49EE704NDGI8
Differential - Input:OutputNo/Yes
Frequency - Max [Max]200 MHz
InputLVTTL, Crystal, LVCMOS
Mounting TypeSurface Mount
Number of Circuits1
Operating Temperature [Max]85 °C
Operating Temperature [Min]-40 °C
OutputLVCMOS, LVTTL
Package / Case28-VFQFN Exposed Pad
PLLYes with Bypass
Ratio - Input:Output [custom]6
Ratio - Input:Output [custom]2
Supplier Device Package28-VFQFPN (4x4)
TypeClock Generator, Multiplexer
Voltage - Supply [Max]3.465 V
Voltage - Supply [Min]3.135 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

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Description

General part information

5V49EE704 Series

The 5V49EE704 is a programmable clock generator intended for high performance data-communications, telecommunications, consumer, and networking applications. There are four internal PLLs, each individually programmable, allowing for four unique non-integer-related frequencies. The frequencies are generated from a single reference clock. The reference clock can come from one of the two redundant clock inputs. Automatic or manual switchover function allows any one of the redundant clocks to be selected during normal operation. The 5V49EE704 is in-system, programmable and can be programmed through the use of I2C interface. An internal EEPROM allows the user to save and restore the configuration of the device without having to reprogram it on power-up. Each of the four PLLs has an 7-bit reference divider and a 12-bit feedback divider. This allows the user to generate four unique non-integer-related frequencies. The PLL loop bandwidth is programmable to allow the user to tailor the PLL response to the application. For instance, the user can tune the PLL parameters to minimize jitter generation or to maximize jitter attenuation. Spread spectrum generation and/or fractional divides are allowed on two of the PLLs. There are a total of five 8-bit output dividers. The outputs are connected to the PLLs via a switch matrix. The switch matrix allows the user to route the PLL outputs to any output bank. This feature can be used to simplify and optimize the board layout. In addition, each output's slew rate and enable/disable function is programmable.

Documents

Technical documentation and resources