ROHM Semiconductor_BD3552
original

ROHM Semiconductor
BD3552

699-BD3552
PDF Datasheet
IC REG LDO ADJ 2A 8HSON

Why Choose Us?

Professional Platform

B2B & B2C purchasing

Delivery at full speed

1-2 days delivery

Wide variety

Original manufacturers

365 days guarantee

Responsible quality
APAC
ISO9001
Quality Policy
ISO45001
ISO14001
Original

Tech Specifications

Status
Active
Nominal Output Voltage (Min/Fixed)
0.65V
Maximum Input Voltage
4.5V
Output Type
Adjustable
Output Current
2A
Maximum Output Voltage
2.7V
Dropout Voltage-Max
0.3V @ 2A
Number of Regulators
1
Show More

BD3552 Description

This electronic device regards Reel - TR method as the top priority. This BD3552 packaging method makes it simple and quick to package big quantities of powdered commodities. This BD3552 is produced by this ROHM Semiconductor in order to provide enough products to meet consumers’ demand. The blueprint of this ROHM Semiconductor is to keep pace with the growth of world’s leading level of science and technology. This BD3552 belongs to Linear Voltage Regulators category. It’s previous category pertains to Power Management (PMIC). Complete power supply systems can be implemented using Power Management Integrated Circuits (PMICs). It combines several voltage regulators and control circuits onto a single chip. They simplify and cost-effectively manage system power management while reducing component count and board area. This BD3552 is a great fit for embedded processing in a variety of applications. They are includes edge computing, the Internet of Things (IoT), industrial and medical IoT, electric vehicles (EVs), and autonomous cars.

FAQ

Is BD3552 currently in stock?
Yes. BD3552 currently shows 9510 unit(s) in stock.
What is BD3552?
What voltage specification is listed for BD3552?
Are there related or alternative parts for BD3552?
What is the mounting type of BD3552?
Quick Quote
ADD TO RFQ LIST

Not available to buy online? Want the lower wholesale price? Please Send RFQ to get best price, we will respond immediately

QUICK RFQ