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PDF AP2161A Data sheet ( Hoja de datos )

Número de pieza AP2161A
Descripción 1A SINGLE CHANNEL CURRENT-LIMITED POWER SWITCH
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AP2161A/ AP2171A
1A SINGLE CHANNEL CURRENT-LIMITED POWER SWITCH
Description
The AP2161A and AP2171A are integrated high-side power switches
optimized for Universal Serial Bus (USB) and other hot-swap
applications. The family of devices complies with USB 2.0 and is
available with both polarities of Enable input. They offer current and
thermal limiting and short circuit protection as well as controlled rise
time and undervoltage lockout functionality. A 7ms deglitch capability
on the open-drain Flag output prevents false over-current reporting and
does not require any external components.
All devices are available in SO-8, MSOP-8EP, SOT25, and
U-DFN2018-6 packages.
Pin Assignments
GND 1
( Top View )
IN 2
IN 3
EN 4
SO-8
8 NC
7 OUT
6 OUT
5 FLG
Features
Single USB Port Power Switches
Over-Current and Thermal Protection
1.5A Accurate Current Limiting
Reverse Current Blocking
95mOn-Resistance
Input Voltage Range: 2.7V – 5.5V
0.6ms Typical Rise Time
Very Low Shutdown Current: 1µA (max)
Fault Report (FLG) with Blanking Time (7ms typ)
ESD Protection: 4kV HBM, 300V MM
Active Low (AP2161A) or Active High (AP2171A) Enable
Ambient Temperature Range: -40°C to +85°C
SOT25, SO-8, MSOP-8EP (Exposed Pad), and U-DFN2018-6:
Available in “Green” Molding Compound (No Br, Sb)
Totally Lead-Free & Fully RoHS Compliant (Notes 1 & 2)
Halogen and Antimony Free. “Green” Device (Note 3)
UL Recognized, File Number E322375
IEC60950-1 CB Scheme Certified
Applications
Consumer Electronics – LCD TVs & Monitors, Game Machines
Communications – Set-Top-Boxes, GPS, Smartphones
Computing – Laptops, Desktops, Servers, Printers, Docking
Stations, HUBs
( Top View )
GND 1
6 OUT
IN 2
5 OUT
EN 3
4 FLG
U-DFN2018-6
Notes:
1. No purposely added lead. Fully EU Directive 2002/95/EC (RoHS) & 2011/65/EU (RoHS 2) compliant.
2. See http://www.diodes.com/quality/lead_free.html for more information about Diodes Incorporated’s definitions of Halogen- and Antimony-free, "Green"
and Lead-free.
3. Halogen- and Antimony-free "Green” products are defined as those which contain <900ppm bromine, <900ppm chlorine (<1500ppm total Br + Cl) and
<1000ppm antimony compounds.
AP2161A/AP2171A
Document number: DS37617 Rev. 1 - 2
1 of 18
www.diodes.com
March 2015
© Diodes Incorporated

1 page




AP2161A pdf
Typical Performance Characteristics
AP2161A/ AP2171A
VEN
VOUT
50%
50%
VEN
50%
50%
TR
TD(ON)
90%
10%
TD(OFF)
TF
90%
10%
VOUT
TR
TD(ON)
90%
10%
TD(OFF)
TF
90%
10%
Figure 1 Voltage Waveforms: AP2161A (left), AP2171A (right)
All Enable Plots are for AP2171A Active High
Turn-On Delay and Rise Time
Turn-Off Delay and Fall Time
Ven
5V/div
Vout
2V/div
500µs/div
Ven
5V/div
CL = 1µF
TA = +25°C
RL = 10
Vout
2V/div
Turn-On Delay and Rise Time
CL = 1µF
TA = +25°C
RL = 10
500µs/div
Turn-Off Delay and Fall Time
Ven
5V/div
Vout
2V/div
500µs/div
Ven
5V/div
CL = 100µF
TA = +25°C
RL = 10
Vout
2V/div
500µs/div
CL = 100µF
TA = +25°C
RL = 10
AP2161A/AP2171A
Document number: DS37617 Rev. 1 - 2
5 of 18
www.diodes.com
March 2015
© Diodes Incorporated

5 Page





AP2161A arduino
AP2161A/ AP2171A
Application Information (continued)
Undervoltage Lockout (UVLO)
The undervoltage lockout function (UVLO) keeps the internal power switch from being turned on until the power supply has reached at least 1.9V,
even if the switch is enabled. Whenever the input voltage falls below approximately 1.9V, the power switch is quickly turned off. This facilitates the
design of hot-insertion systems where it is not possible to turn off the power switch before input power is removed.
Host/Self-Powered And Bus-Powered HUBs
Hosts and self-powered hubs have a local power supply that powers the embedded functions and the downstream ports (see Figure 2). This power
supply must provide from 5.25V to 4.75V to the board side of the downstream connection under full-load and no-load conditions. Hosts and SPHs
are required to have current-limit protection and must report over-current conditions to the USB controller. Typical SPHs are desktop PCs, monitors,
printers, and stand-alone hubs.
Figure 2 Typical One-Port USB Host / Self-Powered Hub
Generic Hot-Plug Applications
In many applications it may be necessary to remove modules or pc boards while the main unit is still operating. These are considered hot-plug
applications. Such implementations require the control of current surges seen by the main power supply and the card being inserted. The most
effective way to control these surges is to limit and slowly ramp the current and voltage being applied to the card, similar to the way in which a
power supply normally turns on. Due to the controlled rise times and fall times of the AP2161A/AP2171A, these devices can be used to provide a
softer start-up to devices being hot-plugged into a powered system. The UVLO feature of the AP2161A/AP2171A also ensures that the switch is off
after the card has been removed, and that the switch is off during the next insertion.
By placing the AP2161A/AP2171A between the VCC input and the rest of the circuitry, the input power reaches these devices first after insertion.
The typical rise time of the switch is approximately 1ms, providing a slow voltage ramp at the output of the device. This implementation controls
system surge current and provides a hot-plugging mechanism for any device.
Dual-Purpose Port Applications
AP2161A/AP2171A is suitable for use in dual-purpose port applications in which a single port is used for data communication between the host and
peripheral devices while simultaneously maintaining a charge to the battery of the peripheral device. An example of this is a shared HDMI/MHL
(Mobile High-definition Link) port that allows streaming video between an HDTV or set-top box and a smartphone or tablet while maintaining a
charge to the smartphone or tablet battery. In such dual-purpose port applications, it is important to insure Vin of the AP2161A/AP2171A is ramped
to its operating voltage prior to enabling the output.
AP2161A/AP2171A
Document number: DS37617 Rev. 1 - 2
11 of 18
www.diodes.com
March 2015
© Diodes Incorporated

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