Datasheet Texas Instruments SN74ALVCH244 — Datenblatt
Hersteller | Texas Instruments |
Serie | SN74ALVCH244 |
Oktalpuffer / Treiber mit 3-Zustands-Ausgängen
Datenblätter
SN74ALVCH244 datasheet
PDF, 835 Kb, Revision: F, Datei veröffentlicht: Aug 20, 2004
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Preise
Status
SN74ALVCH244DGVR | SN74ALVCH244DW | SN74ALVCH244DWR | SN74ALVCH244PW | SN74ALVCH244PWLE | SN74ALVCH244PWR | SN74ALVCH244PWRE4 | |
---|---|---|---|---|---|---|---|
Lifecycle Status | Active (Recommended for new designs) | Active (Recommended for new designs) | Active (Recommended for new designs) | Active (Recommended for new designs) | Obsolete (Manufacturer has discontinued the production of the device) | Active (Recommended for new designs) | Active (Recommended for new designs) |
Manufacture's Sample Availability | No | No | No | No | No | No | No |
Verpackung
SN74ALVCH244DGVR | SN74ALVCH244DW | SN74ALVCH244DWR | SN74ALVCH244PW | SN74ALVCH244PWLE | SN74ALVCH244PWR | SN74ALVCH244PWRE4 | |
---|---|---|---|---|---|---|---|
N | 1 | 2 | 3 | 4 | 5 | 6 | 7 |
Pin | 20 | 20 | 20 | 20 | 20 | 20 | 20 |
Package Type | DGV | DW | DW | PW | PW | PW | PW |
Industry STD Term | TVSOP | SOIC | SOIC | TSSOP | TSSOP | TSSOP | TSSOP |
JEDEC Code | R-PDSO-G | R-PDSO-G | R-PDSO-G | R-PDSO-G | R-PDSO-G | R-PDSO-G | R-PDSO-G |
Package QTY | 2000 | 25 | 2000 | 70 | 2000 | 2000 | |
Carrier | LARGE T&R | TUBE | LARGE T&R | TUBE | LARGE T&R | LARGE T&R | |
Device Marking | VB244 | ALVCH244 | ALVCH244 | VB244 | VB244 | VB244 | |
Width (mm) | 4.4 | 7.5 | 7.5 | 4.4 | 4.4 | 4.4 | 4.4 |
Length (mm) | 5 | 12.8 | 12.8 | 6.5 | 6.5 | 6.5 | 6.5 |
Thickness (mm) | 1.05 | 2.35 | 2.35 | 1 | 1 | 1 | 1 |
Pitch (mm) | .4 | 1.27 | 1.27 | .65 | .65 | .65 | .65 |
Max Height (mm) | 1.2 | 2.65 | 2.65 | 1.2 | 1.2 | 1.2 | 1.2 |
Mechanical Data | Herunterladen | Herunterladen | Herunterladen | Herunterladen | Herunterladen | Herunterladen | Herunterladen |
Parameter
Parameters / Models | SN74ALVCH244DGVR | SN74ALVCH244DW | SN74ALVCH244DWR | SN74ALVCH244PW | SN74ALVCH244PWLE | SN74ALVCH244PWR | SN74ALVCH244PWRE4 |
---|---|---|---|---|---|---|---|
Approx. Price (US$) | 0.20 | 1ku | ||||||
Bits | 8 | 8 | 8 | 8 | 8 | 8 | |
Bits(#) | 8 | ||||||
F @ Nom Voltage(Max), Mhz | 100 | 100 | 100 | 100 | 100 | 100 | |
F @ Nom Voltage(Max)(Mhz) | 100 | ||||||
ICC @ Nom Voltage(Max), mA | 0.01 | 0.01 | 0.01 | 0.01 | 0.01 | 0.01 | |
ICC @ Nom Voltage(Max)(mA) | 0.01 | ||||||
Input Type | LVTTL | ||||||
Operating Temperature Range, C | -40 to 85 | -40 to 85 | -40 to 85 | -40 to 85 | -40 to 85 | -40 to 85 | |
Operating Temperature Range(C) | -40 to 85 | ||||||
Output Drive (IOL/IOH)(Max), mA | -24/24 | -24/24 | -24/24 | -24/24 | -24/24 | -24/24 | |
Output Drive (IOL/IOH)(Max)(mA) | -24/24 | ||||||
Output Type | LVTTL | ||||||
Package Group | TVSOP | SOIC | SOIC | TSSOP | TSSOP | TSSOP | TSSOP |
Package Size: mm2:W x L, PKG | 20TVSOP: 32 mm2: 6.4 x 5(TVSOP) | 20SOIC: 132 mm2: 10.3 x 12.8(SOIC) | 20SOIC: 132 mm2: 10.3 x 12.8(SOIC) | 20TSSOP: 42 mm2: 6.4 x 6.5(TSSOP) | 20TSSOP: 42 mm2: 6.4 x 6.5(TSSOP) | 20TSSOP: 42 mm2: 6.4 x 6.5(TSSOP) | |
Package Size: mm2:W x L (PKG) | 20TSSOP: 42 mm2: 6.4 x 6.5(TSSOP) | ||||||
Rating | Catalog | Catalog | Catalog | Catalog | Catalog | Catalog | Catalog |
Schmitt Trigger | No | No | No | No | No | No | No |
Technology Family | ALVC | ALVC | ALVC | ALVC | ALVC | ALVC | ALVC |
VCC(Max), V | 3.6 | 3.6 | 3.6 | 3.6 | 3.6 | 3.6 | |
VCC(Max)(V) | 3.6 | ||||||
VCC(Min), V | 1.65 | 1.65 | 1.65 | 1.65 | 1.65 | 1.65 | |
VCC(Min)(V) | 1.65 | ||||||
Voltage(Nom), V | 1.8,2.5,2.7,3.3 | 1.8,2.5,2.7,3.3 | 1.8,2.5,2.7,3.3 | 1.8,2.5,2.7,3.3 | 1.8,2.5,2.7,3.3 | 1.8,2.5,2.7,3.3 | |
Voltage(Nom)(V) | 1.8 2.5 2.7 3.3 | ||||||
tpd @ Nom Voltage(Max), ns | 3.1,2.8 | 3.1,2.8 | 3.1,2.8 | 3.1,2.8 | 3.1,2.8 | 3.1,2.8 | |
tpd @ Nom Voltage(Max)(ns) | 3.1 2.8 |
Öko-Plan
SN74ALVCH244DGVR | SN74ALVCH244DW | SN74ALVCH244DWR | SN74ALVCH244PW | SN74ALVCH244PWLE | SN74ALVCH244PWR | SN74ALVCH244PWRE4 | |
---|---|---|---|---|---|---|---|
RoHS | Compliant | Compliant | Compliant | Compliant | Not Compliant | Compliant | Compliant |
Pb Free | No |
Anwendungshinweise
- TI SN74ALVC16835 Component Specification Analysis for PC100PDF, 43 Kb, Datei veröffentlicht: Aug 3, 1998
The PC100 standard establishes design parameters for the PC SDRAM DIMM that is designed to operate at 100 MHz. The 168-pin, 8-byte, registered SDRAM DIMM is a JEDEC-defined device (JC-42.5-96-146A). Some of the defined signal paths include data signals, address signals, and control signals. This application report discusses the SN74ALVC16835 18-bit universal bus driver that is available from T - Logic Solutions for PC-100 SDRAM Registered DIMMs (Rev. A)PDF, 96 Kb, Revision: A, Datei veröffentlicht: May 13, 1998
Design of high-performance personal computer (PC) systems that are capable of meeting the needs imposed by modern operating systems and software includes the use of large banks of SDRAMs on DIMMs (see Figure 1).To meet the demands of stable functionality over the broad spectrum of operating environments, meet system timing needs, and to support data integrity, the loads presented by the large - Bus-Hold CircuitPDF, 418 Kb, Datei veröffentlicht: Feb 5, 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 Kb, Revision: B, Datei veröffentlicht: May 22, 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 - Benefits & Issues of Migrating 5-V and 3.3-V Logic to Lower-Voltage Supplies (Rev. A)PDF, 154 Kb, Revision: A, Datei veröffentlicht: Sep 8, 1999
In the last few years the trend toward reducing supply voltage (VCC) has continued as reflected in an additional specification of 2.5-V VCC for the AVC ALVT ALVC LVC LV and the CBTLV families.In this application report the different logic levels at VCC of 5 V 3.3 V 2.5 V and 1.8 V are compared. Within the report the possibilities for migration from 5-V logic and 3.3-V logic families
Modellreihe
Serie: SN74ALVCH244 (7)
Herstellerklassifikation
- Semiconductors> Logic> Buffer/Driver/Transceiver> Non-Inverting Buffer/Driver