HRP-N3 - серия источников питания с максимальной пиковой мощностью в 350% от MEAN WELL

Datasheet Texas Instruments SN74LVCHR16245A — Даташит

ПроизводительTexas Instruments
СерияSN74LVCHR16245A
Datasheet Texas Instruments SN74LVCHR16245A

16-Bit Bus Transceiver With 3-State Outputs

Datasheets

SN74LVCHR16245A 16-Bit Bus Transceiver With 3-State Outputs datasheet
PDF, 1.0 Мб, Версия: Q, Файл опубликован: 12 окт 2014
Выписка из документа

Цены

SN74LVCHR16245A1R
Texas Instruments
по запросу
Выбираем схему BMS для заряда литий-железофосфатных (LiFePO4) аккумуляторов

Статус

74LVCHR162245ADLG474LVCHR16245AGRDR74LVCHR16245AGRG474LVCHR16245ALRG474LVCHR16245AZQLR74LVCHR16245AZRDRSN74LVCHR162245ADLSN74LVCHR16245AGRSN74LVCHR16245AKRSN74LVCHR16245ALRSN74LVCHR16245AVR
Статус продуктаВ производствеСнят с производстваВ производствеВ производствеВ производствеВ производствеВ производствеВ производствеСнят с производстваВ производствеВ производстве
Доступность образцов у производителяНетНетНетНетДаНетДаДаНетНетНет

Корпус / Упаковка / Маркировка

74LVCHR162245ADLG474LVCHR16245AGRDR74LVCHR16245AGRG474LVCHR16245ALRG474LVCHR16245AZQLR74LVCHR16245AZRDRSN74LVCHR162245ADLSN74LVCHR16245AGRSN74LVCHR16245AKRSN74LVCHR16245ALRSN74LVCHR16245AVR
N1234567891011
Pin4854484856544848564848
Package TypeDLGRDDGGDLZQLZRDDLDGGGQLDLDGV
Industry STD TermSSOPBGA MICROSTAR JUNIORTSSOPSSOPBGA MICROSTAR JUNIORBGA MICROSTAR JUNIORSSOPTSSOPBGA MICROSTAR JUNIORSSOPTVSOP
JEDEC CodeR-PDSO-GR-PBGA-NR-PDSO-GR-PDSO-GR-PBGA-NR-PBGA-NR-PDSO-GR-PDSO-GR-PBGA-NR-PDSO-GR-PDSO-G
Package QTY100020001000100010001000200010002000
CarrierLARGE T&RLARGE T&RLARGE T&RLARGE T&RLARGE T&RLARGE T&RLARGE T&RLARGE T&RLARGE T&R
МаркировкаLVCHR162245ALVCHR16245ALVCHR162245ALR245ALR245ALVCHR162245ALVCHR16245ALR245ALVCHR162245ALDR245A
Width (мм)7.495.56.17.494.55.57.496.14.57.494.4
Length (мм)15.88812.515.887815.8812.5715.889.7
Thickness (мм)2.59.81.152.59.75.82.591.15.752.591.05
Pitch (мм).635.8.5.635.65.8.635.5.65.635.4
Max Height (мм)2.791.21.22.7911.22.791.212.791.2
Mechanical DataСкачатьСкачатьСкачатьСкачатьСкачатьСкачатьСкачатьСкачатьСкачатьСкачатьСкачать

Параметры

Parameters / Models74LVCHR162245ADLG4
74LVCHR162245ADLG4
74LVCHR16245AGRDR
74LVCHR16245AGRDR
74LVCHR16245AGRG4
74LVCHR16245AGRG4
74LVCHR16245ALRG4
74LVCHR16245ALRG4
74LVCHR16245AZQLR
74LVCHR16245AZQLR
74LVCHR16245AZRDR
74LVCHR16245AZRDR
SN74LVCHR162245ADL
SN74LVCHR162245ADL
SN74LVCHR16245AGR
SN74LVCHR16245AGR
SN74LVCHR16245AKR
SN74LVCHR16245AKR
SN74LVCHR16245ALR
SN74LVCHR16245ALR
SN74LVCHR16245AVR
SN74LVCHR16245AVR
Approx. Price (US$)0.65 | 1ku0.65 | 1ku
Bits161616161616161616
Bits(#)1616
F @ Nom Voltage(Max), Mhz100100100100100100100100100
F @ Nom Voltage(Max)(Mhz)100100
ICC @ Nom Voltage(Max), мА0.020.020.020.020.020.020.020.020.02
ICC @ Nom Voltage(Max)(mA)0.020.02
Тип входаTTL/CMOSTTL/CMOS
Рабочий диапазон температур, Cот -40 до 125,-40 до 85от -40 до 125,-40 до 85от -40 до 125,-40 до 85от -40 до 125,-40 до 85от -40 до 125,-40 до 85от -40 до 125,-40 до 85от -40 до 125,-40 до 85от -40 до 125,-40 до 85от -40 до 125,-40 до 85
Operating Temperature Range(C)-40 to 125
-40 to 85
-40 to 125
-40 to 85
Output Drive (IOL/IOH)(Max), мА-12/12-12/12-12/12-12/12-12/12-12/12-12/12-12/12-12/12
Output Drive (IOL/IOH)(Max)(mA)-12/12-12/12
Тип выходаLVTTLLVTTL
Package GroupSSOPBGA MICROSTAR JUNIORTSSOPSSOPBGA MICROSTAR JUNIORBGA MICROSTAR JUNIORSSOPTSSOPBGA MICROSTAR JUNIORSSOPTVSOP
Package Size: mm2:W x L, PKG48SSOP: 164 mm2: 10.35 x 15.88(SSOP)48TSSOP: 101 mm2: 8.1 x 12.5(TSSOP)48SSOP: 164 mm2: 10.35 x 15.88(SSOP)56BGA MICROSTAR JUNIOR: 32 mm2: 4.5 x 7(BGA MICROSTAR JUNIOR)56BGA MICROSTAR JUNIOR: 32 mm2: 4.5 x 7(BGA MICROSTAR JUNIOR)48SSOP: 164 mm2: 10.35 x 15.88(SSOP)48TSSOP: 101 mm2: 8.1 x 12.5(TSSOP)48SSOP: 164 mm2: 10.35 x 15.88(SSOP)48TVSOP: 62 mm2: 6.4 x 9.7(TVSOP)
Package Size: mm2:W x L (PKG)56BGA MICROSTAR JUNIOR: 32 mm2: 4.5 x 7(BGA MICROSTAR JUNIOR)56BGA MICROSTAR JUNIOR: 32 mm2: 4.5 x 7(BGA MICROSTAR JUNIOR)
RatingCatalogCatalogCatalogCatalogCatalogCatalogCatalogCatalogCatalogCatalogCatalog
Schmitt TriggerNoNoNoNoNoNoNoNoNoNoNo
Technology FamilyLVCLVCLVCLVCLVCLVCLVCLVCLVCLVCLVC
VCC(Max), В3.63.63.63.63.63.63.63.63.6
VCC(Max)(V)3.63.6
VCC(Min), В1.651.651.651.651.651.651.651.651.65
VCC(Min)(V)1.651.65
Voltage(Nom), В1.8,2.5,2.7,3.31.8,2.5,2.7,3.31.8,2.5,2.7,3.31.8,2.5,2.7,3.31.8,2.5,2.7,3.31.8,2.5,2.7,3.31.8,2.5,2.7,3.31.8,2.5,2.7,3.31.8,2.5,2.7,3.3
Voltage(Nom)(V)1.8
2.5
2.7
3.3
1.8
2.5
2.7
3.3
tpd @ Nom Voltage(Max), нс12.5,9.5,5.7,4.812.5,9.5,5.7,4.812.5,9.5,5.7,4.812.5,9.5,5.7,4.812.5,9.5,5.7,4.812.5,9.5,5.7,4.812.5,9.5,5.7,4.812.5,9.5,5.7,4.812.5,9.5,5.7,4.8
tpd @ Nom Voltage(Max)(ns)12.5
9.5
5.7
4.8
12.5
9.5
5.7
4.8

Экологический статус

74LVCHR162245ADLG474LVCHR16245AGRDR74LVCHR16245AGRG474LVCHR16245ALRG474LVCHR16245AZQLR74LVCHR16245AZRDRSN74LVCHR162245ADLSN74LVCHR16245AGRSN74LVCHR16245AKRSN74LVCHR16245ALRSN74LVCHR16245AVR
RoHSСовместимНе совместимСовместимСовместимСовместимСовместимСовместимСовместимНе совместимСовместимСовместим
Бессвинцовая технология (Pb Free)НетНет

Application Notes

  • Simultaneous-Switching Performance of TI Logic Devices (Rev. B)
    PDF, 378 Кб, Версия: B, Файл опубликован: 23 фев 2005
    Simultaneous-switching noise can generate and propagate glitches in electronic systems. Therefore, system designers are faced with challenges to minimize simultaneous-switching noise, while increasing switching speed and improving signal quality. This report presents the performance of different TI logic devices under various simultaneous-switching conditions. Factors such as the number of bits sw
  • Bus-Hold Circuit
    PDF, 418 Кб, Файл опубликован: 5 фев 2001
    When designing systems that include CMOS devices, designers must pay special attention to the operating condition in which all of the bus drivers are in an inactive, high-impedance condition (3-state). Unless special measures are taken, this condition can lead to undefined levels and, thus, to a significant increase in the device?s power dissipation. In extreme cases, this leads to oscillation of
  • 16-Bit Widebus Logic Families in 56-Ball 0.65-mm Pitch Very Thin Fine-Pitch BGA (Rev. B)
    PDF, 895 Кб, Версия: B, Файл опубликован: 22 май 2002
    TI?s 56-ball MicroStar Jr.E package registered under JEDEC MO-225 has demonstrated through modeling and experimentation that it is an optimal solution for reducing inductance and capacitance improving thermal performance and minimizing board area usage in integrated bus functions. Multiple functions released in the 56-ball MicroStar Jr.E package have superior performance characteristics compa
  • Use of the CMOS Unbuffered Inverter in Oscillator Circuits
    PDF, 796 Кб, Файл опубликован: 6 ноя 2003
    CMOS devices have a high input impedance high gain and high bandwidth. These characteristics are similar to ideal amplifier characteristics and hence a CMOS buffer or inverter can be used in an oscillator circuit in conjunction with other passive components. Now CMOS oscillator circuits are widely used in high-speed applications because they are economical easy to use and take significantly
  • LVC Characterization Information
    PDF, 114 Кб, Файл опубликован: 1 дек 1996
    This document provides characterization information about low-voltage logic (LVL) that operates from a 3.3-V power supply. It addresses the issues of interfacing to 5-V logic ac performance power considerations input and output characteristics and signal integrity for this family of devices.
  • Bus-Interface Devices With Output-Damping Resistors Or Reduced-Drive Outputs (Rev. A)
    PDF, 105 Кб, Версия: A, Файл опубликован: 1 авг 1997
    The spectrum of bus-interface devices with damping resistors or balanced/light output drive currently offered by various logic vendors is confusing at best. Inconsistencies in naming conventions and methods used for implementation make it difficult to identify the best solution for a given application. This report attempts to clarify the issue by looking at several vendors? approaches and discussi
  • Understanding Advanced Bus-Interface Products Design Guide
    PDF, 253 Кб, Файл опубликован: 1 май 1996
  • Power-Up 3-State (PU3S) Circuits in TI Standard Logic Devices
    PDF, 209 Кб, Файл опубликован: 10 май 2002
    Many telecom and networking applications require that cards be inserted and extracted from a live backplane without interrupting data or damaging components. To achieve this interface terminals of the card must be electrically isolated from the bus system during insertion or extraction from the backplane. To facilitate this Texas Instruments provides bus-interface and logic devices with features
  • Migration From 3.3-V To 2.5-V Power Supplies For Logic Devices
    PDF, 115 Кб, Файл опубликован: 1 дек 1997
    This application report explores the possibilities for migrating to 3.3-V and 2.5-V power supplies and discusses the implications.Customers are successfully using a wide range of low-voltage 3.3-V logic devices. These devices are within Texas Instruments (TI) advanced low-voltage CMOS (ALVC) crossbar technology (CBT) crossbar technology with integrated diode (CBTD) low-voltage crossbar techn
  • How to Select Little Logic (Rev. A)
    PDF, 1.1 Мб, Версия: A, Файл опубликован: 26 июл 2016
    TI Little Logic devices are logic-gate devices assembled in a small single- dual- or triple- gate package. Little Logic devices are widely used in portable equipment such as mobile phones MP3 players and notebook computers. Little Logic devices also are used in desktop computers and telecommunications. Little Logic gates are common components for easy PC board routing schematic design and b
  • Texas Instruments Little Logic Application Report
    PDF, 359 Кб, Файл опубликован: 1 ноя 2002
    Portable and consumer electronic systems? needs present greater challenges today than ever before. Engineers strive to design smaller faster lower-cost systems to meet the market demand. Consequently the semiconductor industry faces a growing need to increase operating speed minimize power consumption and reduce packaging size. Texas Instruments manufactures a variety of Little Logic semicond
  • Selecting the Right Level Translation Solution (Rev. A)
    PDF, 313 Кб, Версия: A, Файл опубликован: 22 июн 2004
    Supply voltages continue to migrate to lower nodes to support today's low-power high-performance applications. While some devices are capable of running at lower supply nodes others might not have this capability. To haveswitching compatibility between these devices the output of each driver must be compliant with the input of the receiver that it is driving. There are several level-translati
  • Input and Output Characteristics of Digital Integrated Circuits
    PDF, 1.7 Мб, Файл опубликован: 1 окт 1996
    This report contains a comprehensive collection of the input and output characteristic curves of typical integrated circuits from various logic families. These curves go beyond the information given in data sheets by providing additional details regarding the characteristics of the components. This knowledge is particularly useful when for example a decision must be made as to which circuit shou
  • Selecting the Right Texas Instruments Signal Switch
    PDF, 769 Кб, Файл опубликован: 7 сен 2001
    Texas Instruments offers a wide variety of electronic switches (digital analog bilateral bilateral analog) in a variety of families including CBT CBTLV HC LV and LVC. Depending on the application the right solution may be an analog switch that passes digital signals or vice versa. This application report summarizes the various switching technologies and provides considerations for choosi
  • Live Insertion
    PDF, 150 Кб, Файл опубликован: 1 окт 1996
    Many applications require the ability to exchange modules in electronic systems without removing the supply voltage from the module (live insertion). For example an electronic telephone exchange must always remain operational even during module maintenance and repair. To avoid damaging components additional circuitry modifications are necessary. This document describes in detail the phenomena tha
  • CMOS Power Consumption and CPD Calculation (Rev. B)
    PDF, 89 Кб, Версия: B, Файл опубликован: 1 июн 1997
    Reduction of power consumption makes a device more reliable. The need for devices that consume a minimum amount of power was a major driving force behind the development of CMOS technologies. As a result CMOS devices are best known for low power consumption. However for minimizing the power requirements of a board or a system simply knowing that CMOS devices may use less power than equivale

Модельный ряд

Классификация производителя

  • Semiconductors> Logic> Buffer/Driver/Transceiver> Standard Transceiver

На английском языке: Datasheet Texas Instruments SN74LVCHR16245A

Электронные компоненты. Бесплатная доставка по России