Datasheet Texas Instruments CDCE913-Q1 — Даташит
Производитель | Texas Instruments |
Серия | CDCE913-Q1 |

Программируемый синтезатор тактовых импульсов VCXO с 1 ФАПЧ и выходами LVCMOS 2,5 В или 3,3 В
Datasheets
CDCEx913-Q1 Programmable 1-PLL VCXO Clock Synthesizer With 1.8-V, 2.5-V, and 3.3-V Outputs datasheet
PDF, 1.5 Мб, Версия: C, Файл опубликован: 9 ноя 2016
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Цены
![]() 48 предложений от 28 поставщиков Микросхема Деталь тактового сигнала, Clock Generator 8MHz to 160MHz Input 230MHz Output 14Pin TSSOP Tube | |||
CDCE913PWRG4 Texas Instruments | 117 ₽ | ||
CDCE913PWR Texas Instruments | 371 ₽ | ||
CDCE913PW | по запросу | ||
CDCE913_10 Texas Instruments | по запросу |
Статус
CDCE913QPWRQ1 | |
---|---|
Статус продукта | В производстве |
Доступность образцов у производителя | Да |
Корпус / Упаковка / Маркировка
CDCE913QPWRQ1 | |
---|---|
N | 1 |
Pin | 14 |
Package Type | PW |
Industry STD Term | TSSOP |
JEDEC Code | R-PDSO-G |
Package QTY | 2000 |
Carrier | LARGE T&R |
Маркировка | CE913Q |
Width (мм) | 4.4 |
Length (мм) | 5 |
Thickness (мм) | 1 |
Pitch (мм) | .65 |
Max Height (мм) | 1.2 |
Mechanical Data | Скачать |
Параметры
Parameters / Models | CDCE913QPWRQ1![]() |
---|---|
Input Level | Crystal,LVCMOS |
Количество выходов | 3 |
Рабочий диапазон температур, C | от -40 до 125 |
Output Frequency(Max), МГц | 230 |
Output Level | LVCMOS |
Package Group | TSSOP |
Package Size: mm2:W x L, PKG | 14TSSOP: 32 mm2: 6.4 x 5(TSSOP) |
Special Features | Integrated EEPROM,I2C,Pin Programming,Spread Spectrum Clocking (SSC) |
VCC Out, В | 3.3 |
Экологический статус
CDCE913QPWRQ1 | |
---|---|
RoHS | Совместим |
Application Notes
- General I2C / EEPROM usage for the CDCE(L)9xx familyPDF, 40 Кб, Файл опубликован: 26 янв 2010
- Crystal or Crystal Oscillator Replacement with Silicon DevicesPDF, 894 Кб, Файл опубликован: 18 июн 2014
This application report is a general guide that outlines the advantages of using silicon-based timingdevices from Texas Instruments to generate system clocking solutions. This report covers theconventional way to derive system clocks using crystals and crystal oscillators, disadvantages of usingthese mechanical components, and details on replacing them with silicon-based timing devices from - VCXO Application Guideline for CDCE(L)9xx Family (Rev. A)PDF, 107 Кб, Версия: A, Файл опубликован: 23 апр 2012
- Practical consideration on choosing a crystal for CDCE(L)9xx familyPDF, 60 Кб, Файл опубликован: 24 мар 2008
- Usage of I2C for CDCE(L)949, CDCE(L)937, CDCE(L)925, CDCE(L)913PDF, 297 Кб, Файл опубликован: 23 сен 2009
This document presents a method to smoothly change frequency by IВІCв„ў protocol on Texas Instruments CDCE(L)949, CDCE(L)937, CDCE(L)925, CDCE(L)913 Clock Synthesizers, thus avoiding unnecessary intermediate frequencies. It also includes a code example to generate the IВІC protocol for the CDCE(L)9xx with the TMS320C645x. - Generating Low Phase-Noise Clocks for Audio Data Converters from Low FrequencyPDF, 860 Кб, Файл опубликован: 31 мар 2008
Generating a high-frequency system clock Fs (128fs to 768fs) from a low-frequency sampling clock fs (10 kHz to 200 kHz) is challenging, while attempting to maintain low phase jitter. A traditional phase-lock loop (PLL) can do the frequency translation, but the added phase jitter prevents the generated system clock signal from effectively driving high-performance audio data converters. This applica - Troubleshooting I2C Bus ProtocolPDF, 184 Кб, Файл опубликован: 19 окт 2009
When using the I2Cв„ў bus protocol, the designer must ensure that the hardware complies with the I2C standard. This application report describes the I2C protocol and provides guidelines on debugging a missing acknowledgment, selecting the pullup resistors, or meeting the maximum capacitance load of an I2C bus. A conflict occurs if devices sharing the I2C bus have the same slave address. This
Модельный ряд
Серия: CDCE913-Q1 (1)
Классификация производителя
- Semiconductors> Clock and Timing> Clock Generators> General Purpose