Pin descriptions, Functional block diagram, Absolute maximum ratings – Diodes AP8800A User Manual

Page 2: Ap8800a

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AP8800A

Document number: DS35100 Rev. 3 - 2

2 of 13

www.diodes.com

August 2012

© Diodes Incorporated

AP8800A

Pin Descriptions


Pin Name

Pin Number

Function

SW

1

Switch Pin. Connect inductor/freewheeling diode here, minimizing track length at this pin to reduce EMI.

GND 2

GND

Pin

CTRL 3

Dimming and On/Off Control Input.

• Input voltage of 0.2V or lower forces the device into low current standby mode and shuts off the output.

An open-drain/collector PWM signal allows the output current to be adjusted below the level set by the
resistor connected to SET input pin.

• The input impedance is about 50kΩ, and if the pin is left open V

CTRL

= V

REF

.

• Drive with DC voltage (0.3V < V

CTRL

< 2.5V) to adjust output current from 24% to 200% of I

OUTnom

SET 4

Set Nominal Output Current Pin.
Configures the output current of the device.

V

IN

5

Input Supply Pin. Must be locally decoupled to GND with > 2.2µF X7R ceramic capacitor – see applications
section for more information.



Functional Block Diagram



Absolute Maximum Ratings

(@T

A

= +25°C, unless otherwise specified.)

Symbol Parameter

Ratings

Unit

V

IN

Continuous V

IN

Pin Voltage Relative to GND

-0.3 to +30

V

V

SET

Set Voltage Relative to V

IN

V

IN

-5 to V

IN

+0.3

V

V

SW

SW Voltage Relative to GND

-0.3 to +30

V

V

CTRL

CTRL Pin Input Voltage

-0.3 to +5

V

I

SW

Switch

Current

0.45 A

T

J

Junction Temperature

105

°C

T

LEAD

Lead Temperature Soldering

300

°C

T

ST

Storage Temperature Range

-55 to +150

°C

Caution:

Stresses greater than the 'Absolute Maximum Ratings' specified above, may cause permanent damage to the device. These are stress ratings only;
functional operation of the device at these or any other conditions exceeding those indicated in this specification is not implied. Device reliability may be
affected by exposure to absolute maximum rating conditions for extended periods of time.

Semiconductor devices are ESD sensitive and may be damaged by exposure to ESD events. Suitable ESD precautions should be taken when

handling and transporting these devices.





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