USBN9604SLB

USBN9604SLB

$3.15
  • Description:USB BUS CONTROLLER, CMOS
  • Series:-

SKU:3334be099d0c Category: Brand:

  
  • Quantity
    • -
    • +
  •    
ChipApex WhatsApp

Consult the customer manager about the wholesale price.

consultation hotline:86-132-6715-2157

email:chipapexlimited@gmail.com
Contact the product manager for consultation. One-stop consultation is available.


Do you want a lower wholesale price? Please send us your inquiry and we will reply immediately.

*
*
*
*
Submitting!
Submission successful!
Submission failed!
Email error!
Phone number error!

Product Detailed Parameters

  • Description:USB BUS CONTROLLER, CMOS
  • Series:-
  • Mfr:National Semiconductor
  • Package:Bulk
  • Protocol:USB
  • Function:Controller
  • Interface:Parallel
  • Standards:USB 1.0 and 1.1
  • Voltage - Supply:3V ~ 5.5V
  • Current - Supply:30mA
  • Operating Temperature:0°C ~ 70°C
  • Package / Case:28-TFQFN, CSP
  • Supplier Device Package:28-CSP (5.5x4.5)
  • Grade:-
  • Qualification:-

Download product information

USBN9604SLB

Buying Guide
Summary

National Semiconductor USBN9604SLB is an electronic component in Controllers category. Key specs: description: USB BUS CONTROLLER, CMOS; packaging: Bulk; supply: 3V ~ 5.5V; temperature: 0°C ~ 70°C; package/case: 28-TFQFN, CSP.

Selection Notes
  • For USBN9604SLB, confirm package/case 28-TFQFN, CSP to ensure footprint compatibility.
  • For USBN9604SLB, validate the operating temperature range (0°C ~ 70°C) against your environment.
  • For USBN9604SLB, check the supply voltage requirement (3V ~ 5.5V) and any rail tolerance constraints.
FAQ

How can I request a quote for USBN9604SLB?
Send the part number (USBN9604SLB), quantity, target delivery date, and any required packaging or documentation.

Who is the manufacturer/brand for USBN9604SLB?
National Semiconductor

What is the supply current of USBN9604SLB?
30mA

What is the supply voltage range of USBN9604SLB?
3V ~ 5.5V

Application Scenarios
In the Controllers category, National Semiconductor USBN9604SLB is often evaluated by how well it fits electrical, thermal, and mechanical constraints in the target system. They are chosen when a targeted building block is more reliable and maintainable than a custom discrete implementation. A good selection improves integration speed and lowers lifecycle risk. In automotive subsystems, robust components help meet reliability targets under thermal cycling and electrical transients. In embedded systems with strict size and power budgets, integration reduces BOM and validation effort while keeping behavior predictable. Overall, it improves predictability by keeping key performance stable across manufacturing variance and operating conditions.
USBN9604SLBUSBN9604SLB
$3.15
Buy Now