551-10-056-09-041005

551-10-056-09-041005
Mfr. #:
551-10-056-09-041005
Fabricante:
Mill-Max
Descripción:
STANDRD SOLDER TAIL PGA SOCKET
Ciclo vital:
Nuevo de este fabricante.
Ficha de datos:
551-10-056-09-041005 Ficha de datos
Entrega:
DHL FedEx Ups TNT EMS
Pago:
T/T Paypal Visa MoneyGram Western Union
ECAD Model:
Atributo del producto
Valor de atributo
Tags
551-10-056, 551-10-05, 551-10-0, 551-10, 551-1, 551
Service Guarantees

We guarantee 100% customer satisfaction.

Quality Guarantees

We provide 90-360 days warranty.

If the items you received were not in perfect quality, we would be responsible for your refund or replacement, but the items must be returned in their original condition.
Our experienced sales team and tech support team back our services to satisfy all our customers.

we buy and manage excess electronic components, including excess inventory identified for disposal.
Email us if you have excess stock to sell.

Email: [email protected]

Step1: Vacuum Packaging with PL
Step1:
Vacuum Packaging with PL
Step2: Anti-Static Bag
Step2:
Anti-Static Bag
Step3: Packaging Boxes
Step3:
Packaging Boxes
***er Electronics
STANDRD SOLDER TAIL PGA SOCKET
***i-Key
CONN HDR SOLDRTL
Parte # Mfg. Descripción Valores Precio
551-10-056-09-041005
DISTI # V99:2348_21637128
Mill-Max Mfg CorpSTANDRD SOLDER TAIL PGA SOCKET0
  • 1000:$8.3050
  • 500:$9.3490
  • 250:$11.9600
  • 100:$16.0500
  • 50:$23.9700
551-10-056-09-041005
DISTI # 551-10-056-09-041005-ND
Mill-Max Mfg CorpCONN HDR SOLDRTL
Min Qty: 50
Container: Bulk
Temporarily Out of Stock
  • 50:$29.0760
551-10-056-09-041005
DISTI # MMX551-10-056-09-041005
Mill-Max Mfg Corp Asia - 0
    551-10-056-09-041005
    DISTI # 000000000005688476
    Mill-Max Mfg CorpSTANDRD SOLDER TAIL PGA SOCKET0
    • 50:$41.5300
    • 100:$25.2100
    • 250:$16.7800
    • 500:$11.4700
    Imagen Parte # Descripción
    551-10-056-09-041003

    Mfr.#: 551-10-056-09-041003

    OMO.#: OMO-551-10-056-09-041003

    Circuit Board Hardware - PCB STANDRD SOLDER TAIL PGA SOCKET
    551-10-056-09-041004

    Mfr.#: 551-10-056-09-041004

    OMO.#: OMO-551-10-056-09-041004

    Circuit Board Hardware - PCB STANDRD SOLDER TAIL PGA SOCKET
    551-10-056-09-041005

    Mfr.#: 551-10-056-09-041005

    OMO.#: OMO-551-10-056-09-041005-MILL-MAX

    STANDRD SOLDER TAIL PGA SOCKET
    551-10-056-09-041003

    Mfr.#: 551-10-056-09-041003

    OMO.#: OMO-551-10-056-09-041003-MILL-MAX

    STANDRD SOLDER TAIL PGA SOCKET
    Disponibilidad
    Valores:
    Available
    En orden:
    2000
    Ingrese la cantidad:
    El precio actual de 551-10-056-09-041005 es solo de referencia, si desea obtener el mejor precio, envíe una consulta o envíe un correo electrónico directo a nuestro equipo de ventas [email protected]
    Precio de referencia (USD)
    Cantidad
    Precio unitario
    Ext. Precio
    1
    0,00 US$
    0,00 US$
    10
    0,00 US$
    0,00 US$
    100
    0,00 US$
    0,00 US$
    500
    0,00 US$
    0,00 US$
    1000
    0,00 US$
    0,00 US$
    Debido a la escasez de semiconductores a partir de 2021, el precio inferior es el precio normal antes de 2021. Envíe una consulta para confirmar.
    Empezar con
    Nuevos productos
    • Straight and Right Angle Male PCB Pins
      Mill-Max's straight and right angle pins are precision-machined to assure consistent bends each time and offer full radius shaped tips to simplify fabrication.
    • Super Low-Profile Sockets
      Mill-Max's super low-profile sockets are ideal for board stacking and wire to board applications where minimizing package height is paramount.
    • Solder Cup Connectors and Terminal Pins
      Mill-Max's solder cup components simplify the task of making wired connections between PCBs or devices and PCBs.
    • Zero-Profile Dual-Entry Receptacle
      Mill-Max's zero-profile solderless press-fit receptacle has a .045” minimum mating pin length for bottom entry and .054” minimum length for top-entry insertion.
    • 0861 and 0871 Spring Pins
      Mill-Max's 0861 and 0871 spring pins, designed for rugged applications, offer excellent signal integrity in shock and vibration environments.
    Top