28 Terminations4V~10V 28 Pin BQ51003 Specialized Power Management ICs1 Functions
SOT-23
BQ51003YFPR Datasheet
non-compliant
In-Stock: 0 items
Specifications
Name
Value
Type
Parameter
Factory Lead Time
6 Weeks
Lifecycle Status
ACTIVE (Last Updated: 4 days ago)
Contact Plating
Copper, Silver, Tin
Mount
Surface Mount
Mounting Type
Surface Mount
Package / Case
28-XFBGA, DSBGA
Number of Pins
28
Operating Temperature
-40°C~85°C
Packaging
Tape & Reel (TR)
JESD-609 Code
e1
Pbfree Code
yes
Part Status
Active
Moisture Sensitivity Level (MSL)
1 (Unlimited)
Number of Terminations
28
ECCN Code
EAR99
Terminal Finish
Tin/Silver/Copper (Sn/Ag/Cu)
Applications
Wireless Power Receiver
HTS Code
8542.39.00.01
Voltage - Supply
4V~10V
Terminal Position
BOTTOM
Terminal Form
BALL
Peak Reflow Temperature (Cel)
NOT SPECIFIED
Number of Functions
1
Terminal Pitch
0.4mm
[email protected] Reflow Temperature-Max (s)
NOT SPECIFIED
Base Part Number
BQ51003
Output Voltage
5V
Operating Supply Voltage
10V
Operating Supply Current
500mA
Output Current
500mA
Logic Function
Receiver
Telecom IC Type
TELECOM CIRCUIT
Height
500μm
Length
0m
Width
0m
Thickness
400μm
RoHS Status
ROHS3 Compliant
Lead Free
Lead Free
Pricing & Ordering
Quantity
Unit Price
Ext. Price
1
$1.68000
$1.68
500
$1.6632
$831.6
1000
$1.6464
$1646.4
1500
$1.6296
$2444.4
2000
$1.6128
$3225.6
2500
$1.596
$3990
BQ51003YFPR Product Details
BQ51003YFPR Description
A cutting-edge integrated receiver IC for wireless power transfer in portable applications, the BQ51003YFPR is designed for 2.5-W and less applications. While incorporating the digital control necessary to abide by the Qi v1.2 communication protocol, the gadget converts AC power to DC. Through mutually linked inductors, the receiver coil built within the portable device receives the power provided by the transmitter coil utilizing near-field inductive power transmission. The AC signal from the receiver coil is then rectified and controlled so that it can be used as a power source for the electronics in the down-system.
BQ51003YFPR Features
? Improved Load Transient Response with Dynamic Rectifier Control
? Optimized Performance Over a Wide Range of Output Power with Dynamic Efficiency Scaling
? Robust Communication with Adaptive Communication Limit