TPSI2260QDWQRQ1

Texas Instruments
595-TPSI2260QDWQRQ1
TPSI2260QDWQRQ1

Tillverk:

Beskrivning:
Halvledarreläer - PCB-montering Automotive 600V 50m A isolated switch wi

Livscykel:
Ny produkt:
Nytt från denna tillverkare.
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Tillgänglighet

Lager:
Ej på lager
Fabrikens ledtid:
18 Veckor Uppskattad tillverkningstid i fabriken.
Minst: 2000   Flera: 2000
Enhetspris:
-,-- kr
Ext. pris:
-,-- kr
Est. Pris:
Denna produkt levereras UTAN KOSTNAD

Prissättning (SEK)

Antal Enhetspris
Ext. pris
Komplett Papprulle (beställ i multiplar av 2000)
19,08 kr 38 160,00 kr
18,64 kr 74 560,00 kr

Produktattribut Attributvärde Välj attribut
Texas Instruments
Produktkategori: Halvledarreläer - PCB-montering
Reel
SMD/SMT
SOIC-11
MOSFET
5 mA
- 40 C
+ 125 C
Märke: Texas Instruments
Isoleringsmetod för ingång till utgång: Reinforced Isolation
Isoleringsspänning: 1500 Vrms
På-resistans - Max: 150 Ohms
Pd - Effektavledning: 30.5 mW
Produkt: Solid State Relay
Produkttyp: SSR - Solid State Relays
Fabriksförpackningskvantitet: 2000
Underkategori: Relays
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Attribut som valts: 0

USHTS:
8542390090
ECCN:
EAR99

TPSI2260-Q1 Reinforced Solid-State Relay

Texas Instruments TPSI2260-Q1 Reinforced Solid-State Relay is designed for high-voltage automotive and industrial applications. The isolated solid-state relay implements high-reliability reinforced capacitive isolation technology, merged with internal back-to-back MOSFETs, to form a completely integrated solution that requires no secondary-side power supply. TI's capacitive isolation technology does not exhibit mechanical wearout or photo-degradation failure modes common to mechanical relays and photo relays, thereby enhancing system reliability. The primary side of the TPSI2260-Q1 draws only 5mA of input current and incorporates a fail-safe EN pin that prevents back-powering the VDD supply. The VDD pin of the device should be connected to a system supply between 4.5V and 20V, and the EN pin should be driven by a GPIO output with a logic high between 2.1V and 20V in most applications. Furthermore, in other applications, the VDD and EN pins could be driven together directly from the system supply or from a GPIO output. The secondary side incorporates back-to-back MOSFETs with a standoff voltage of ±600V from S1 to S2.