TCA6507PWRG4

Texas Instruments
595-TCA6507PWRG4
TCA6507PWRG4

Fabricante:

Descripción:
IC de controladores de iluminación LED Low-Vltg 7B I2C and SMBus LED Driver ALT ALT 595-TCA6507PWR

Modelo ECAD:
Descargue Library Loader gratis para convertir este archivo para su herramienta ECAD. Conozca más sobre el modelo ECAD.

En existencias: 1,780

Existencias:
1,780 Se puede enviar inmediatamente
Plazo de entrega de fábrica:
12 Semanas Tiempo estimado de producción de fábrica para cantidades superiores a las que se muestran.
Mínimo: 1   Múltiples: 1
Precio unitario:
$-.--
Precio ext.:
$-.--
Est. Tarifa:
Empaque:
Envase tipo carrete completo (pedir en múltiplos de 2000)

Precio (USD)

Cantidad Precio unitario
Precio ext.
Cinta cortada / MouseReel™
$2.95 $2.95
$1.92 $19.20
$1.76 $44.00
$1.51 $151.00
$1.42 $355.00
$1.24 $620.00
$1.04 $1,040.00
Envase tipo carrete completo (pedir en múltiplos de 2000)
$0.848 $1,696.00
† $7.00 Se agregará y calculará la tarifa de MouseReel™ en su carrito de compras. Ningún artículo de MouseReel™ se puede cancelar ni devolver.

Embalaje alternativo

N.º de artículo del Fabricante:
Embalaje:
Reel, Cut Tape, MouseReel
Disponibilidad:
En existencias
Precio:
$2.95
Mín.:
1

Producto similar

Texas Instruments TCA6507PWR
Texas Instruments
IC de controladores de iluminación LED Low-Vltg 7B I2C and SMBus LED Driver A 5 A 595-TCA6507PW

Atributo del producto Valor de atributo Seleccionar atributo
Texas Instruments
Categoría de producto: IC de controladores de iluminación LED
RoHS:  
7 Output
Boost
40 mA
TSSOP-14
3.6 V
1.65 V
400 kHz
5.5 V
TCA6507
- 40 C
+ 85 C
I2C Control
Reel
Cut Tape
MouseReel
Marca: Texas Instruments
Voltaje de entrada: 1.65 V to 3.6 V
Corriente de salida de nivel bajo: 40 mA
Estilo de montaje: SMD/SMT
Número de canales: 7 Channel
Tipo de producto: LED Lighting Drivers
Cantidad de empaque de fábrica: 2000
Subcategoría: Driver ICs
Corriente de suministro - Máx.: 40 uA
Tipo: LED Driver
Peso de la unidad: 57.200 mg
Productos encontrados:
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Atributos seleccionados: 0

                        
The G4 and E4 suffixes were added for ROHS conversion. The
G4 and E4 parts are exactly the same as the original parts
without the G4 or E4 suffix.

For lead-frame-based devices, the RoHS-compliant solution
is backward-compatible with lead-based processes; so the
same part is shipped regardless of whether a unique part
number or a standard part number is ordered.

Lead-frame-based unique part numbers will consist of the
standard part number plus a two-character suffix (usually
E4 or G4, sometimes E3, E6, G3 or G6).

"E" = RoHS-compliant

"G" = Green (RoHS-compliant and no Br/Sb)

Please contact a Mouser Technical Sales Representative for
further information.


5-1011-9

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CNHTS:
8542399000
CAHTS:
8542390000
USHTS:
8542390090
JPHTS:
8542390990
TARIC:
8542399000
MXHTS:
85423999
ECCN:
EAR99

TCA6507 I2C LED Drivers

Texas Instruments TCA6507 I2C LED Drivers can automatically gradually fade and control the brightness and blinking pattern while simultaneously using pulse-width modulation intensity control. The device features an internal self-contained oscillator that controls two PWM modules and provides two independent blink/fade patterns. The driver has a very low power consumption of 25uA in operating mode and 10uA in standby, as well as superior drive capability. Applications include consumer, server, computing, and industrial markets, as well as applications in the handset market.

IS32LT3175N/P Single-Channel Linear LED Drivers

ISSI IS32LT3175N/P Single-Channel Linear LED Drivers come with fade in/out and PWM dimming. The regulators serve as a stand-alone LED driver-configurable from 20mA to 150mA with external resistors, no microcontroller is necessary. A logic level “courtesy light” signal from the PWM pin can be interfaced to precisely drive the LED channel. The IS32LT3175P obtains a positive polarity PWM signal. In addition, the IS32LT3175N obtains a negative polarity PWM signal. The regulator integrates a 63-step fade-in and fades out the algorithm (Gamma correction). This causes the output LED current to increasingly rise up to the full source value after the EN pin is pulsed.