SN74LVC8T245MPWREP

Texas Instruments
595-74LVC8T245MPWREP
SN74LVC8T245MPWREP

Tillverk:

Beskrivning:
Överföring - spänningsnivåer EP 8B Dual-Sply Bus Transc

ECAD-modell:
Ladda ned den kostnadsfria Libary Loader för att omvandla denna fil för ditt ECAD-verktyg. Läs mer om ECAD-modellen.

På lager: 2 729

Lager:
2 729
Kan skickas omedelbart
På beställningen:
4 000
Förväntad 2026-06-25
Fabrikens ledtid:
18
Veckor Uppskattad tillverkningstid i fabriken för kvantiteter som är större än vad som visas.
Minst: 1   Flera: 1
Enhetspris:
-,-- kr
Ext. pris:
-,-- kr
Est. Pris:
Förpackning:
Komplett Papprulle (beställ i multiplar av 2000)

Prissättning (SEK)

Antal Enhetspris
Ext. pris
Skärtejp/MouseReel™
92,65 kr 92,65 kr
72,05 kr 720,50 kr
66,93 kr 1 673,25 kr
61,26 kr 6 126,00 kr
60,60 kr 15 150,00 kr
Komplett Papprulle (beställ i multiplar av 2000)
60,60 kr 121 200,00 kr
† 58,00 kr MouseReel™-avgiften kommer att läggas till och beräknas i din kundvagn. MouseReel™-beställningar kan inte avbeställas eller returneras.

Produktattribut Attributvärde Välj attribut
Texas Instruments
Produktkategori: Överföring - spänningsnivåer
RoHS-direktivet:  
8-bit Translating Transceiver
500 Mb/s
TSSOP-24
5.5 V
1.65 V
SN74LVC8T245
8.2 ns
- 55 C
+ 125 C
SMD/SMT
Reel
Cut Tape
MouseReel
Märke: Texas Instruments
Logikfamilj: LVC
Utgångstyp: 3-State
Produkttyp: Translation - Voltage Levels
Fabriksförpackningskvantitet: 2000
Underkategori: Logic ICs
Del # Alias: V62/09615-01XE
Enhetens vikt: 89,500 mg
Hittade produkter:
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Attribut som valts: 0

                        
TIs Enhanced Product line is a commercial of-the-shelf (COTS)
solution with the following key benefits:

Fabrication and assembly controlled baseline
No use of Pure Sn bond pads, balls or Cu bond wires
DLA Vendor Items Drawings (VID or V62) part numbers that
eliminate the need for source controlled drawings
Extended product change notification (PCN)
Extended temperature performance (typically -55C to +125C
or customer specified)
Standalone data sheet
Qualification and Reliability reports
Extended HAST testing
Product traceability
Long product life cycles

Please contact a Mouser Technical Sales Representative for
further information.

5-0516-01

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TARIC:
8542319000
CNHTS:
8542399000
CAHTS:
8542390000
USHTS:
8542390090
JPHTS:
8542390990
MXHTS:
8542399999
ECCN:
EAR99

SN74LVC8T245-EP Non-Inverting Bus Transceiver

Texas Instruments SN74LVC8T245-EP 8-bit Non-Inverting Bus Transceiver uses two separate configurable power-supply rails. The device is optimized to operate with VCCA and VCCB set at 1.65V to 5.5V. The A port is designed to track VCCA. VCCA accepts any supply voltage from 1.65V to 5.5V. The B port is designed to track VCCB. VCCB accepts any supply voltage from 1.65V to 5.5 V. This allows for universal low-voltage bidirectional translation between any of the 1.8V, 2.5V, 3.3V, and 5.5V voltage nodes. The SN74LVC8T245-EP is designed for asynchronous communication between two data buses. The logic levels of the direction-control (DIR) input and the output-enable (OE) input activate either the B-port outputs or the A-port outputs or place both output ports into the high-impedance mode. The device transmits data from the A bus to the B bus when the B-port outputs are activated, and from the B bus to the A bus when the A-port outputs are activated. The input circuitry on both A and B ports is always active and must have a logic HIGH or LOW level applied to prevent excess ICC and ICCZ.

SN74LVC8T245 Dual Supply Bus Transceiver

Texas Instruments SN74LVC8T245 Dual Supply Bus Transceiver uses two separate configurable power-supply rails and is optimized to operate with VCCA and VCCB set at 1.65V to 5.5V. The TI SN74LVC8T245 dual supply bus transceiver is designed for asynchronous communication between two data buses. The Texas Instruments SN74LVC8T245 dual supply bus transceiver is fully specified for partial-power-down applications using Ioff. The Ioff circuitry disables the outputs, preventing damaging current backflow through the device when it is powered down. The VCC isolation feature ensures that if either VCC input is at GND, all outputs are in the high-impedance state.