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UP9616PDYA 데이터시트(PDF) 13 Page - uPI Group Inc.

부품명 UP9616PDYA
상세설명  3.3A Charger Interface, Wide Input Sensorless CC/CV Synchronous-Rectified Buck Converter
PDF  18 Pages
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제조업체  UPI [uPI Group Inc.]
홈페이지  http://www.ubiq-semi.com/
Logo UPI - uPI Group Inc.

UP9616PDYA 데이터시트(HTML) 13 Page - uPI Group Inc.

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Conceptual
uP9616
13
uP9616-DS-C3202, Feb. 2017
www.upi-semi.com
Application Information
Layout Guidelines For uP9616PDYA:
1. Arrange the power components to reduce the AC loop size consisting of C
IN, VIN (Pin 5) and LX (Pin 6,7)
2. The input decoupling ceramic capacitor 1uF must be placed closest to the VIN (Pin 5) and Exposed Pad GND plane
through vias or a short and wide path.
3. Return SENSE+ (PIN 9) to signal GND pin, and connect the signal GND to power GND at a single point for best noise
immunity. Connect exposed pad to power ground copper area with copper and vias.
4. Apply copper plane to Exposed Pad GND for best heat dissipation and noise immunity. The exposed pad is the main
path for heat convection and should be well-soldered to the PCB for best thermal performance.
5. Use a short trace connecting the bootstrap capacitor C
BOOT to BOOT (Pin 8) and LX (Pin 6,7) to form a bootstrap
circuit.
6. Use a short trace connecting R-C to LX (Pin 6,7) and Exposed Pad GND Plane to form a Snubber Circuit.
7. The LX (Pin 6,7) pad is the noise node switching from VIN (Pin 5) to GND. LX node copper area should be minimized
to reduce EMI and should be isolated from the rest of circuit for good EMI and low noise operation.
8. The CC1 (Pin 4), CC2 (Pin 5), D+ (Pin 2) pad and D- (Pin 1) pad of the uP9616 are the USB detect data line input
node, the CC1, CC2, D+ and D- Pin of the via or trace area should be isolated using 0.96mm space to prevent direct
contact with VIN area components which may cause voltage of CC1, CC2, D+ and D- pins to exceed maximum
rating of 6V.
uP9616PDYA
VIN Plane
SENSE+
Plane
+
+
5V
D+
D-
GND
USB Connector
SENSE-
Plane
GND Plane
GND Plane
Via to D+
Via to D-
Via to GND Plan
-
-
Exposed
Pad (GND)
5
4
3
2
9
8
7
6
1
10
Via to CC2
Via to CC1
CC1
CC2



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