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ZLED-PCB1 数据表(PDF) 8 Page - List of Unclassifed Manufacturers

部件名 ZLED-PCB1
功能描述  Universal LED Driver with Temperature Compensation
PDF  16 Pages
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制造商  ETC2 [List of Unclassifed Manufacturers]
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标志 ETC2 - List of Unclassifed Manufacturers

ZLED-PCB1 数据表(HTML) 8 Page - List of Unclassifed Manufacturers

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ZLED7001
Universal LED Driver with Temperature Compensation
Data Sheet
August 12, 2010
© 2010 Zentrum Mikroelektronik Dresden AG — Rev. 1.1
All rights reserved. The material contained herein may not be reproduced, adapted, merged, translated, stored, or used without
the prior written consent of the copyright owner. The information furnished in this publication is subject to changes without
notice.
8 of 15
2.3.
Input Voltage Regulator
The value and rating of the RIN input resistor must be selected as needed to drop the application supply
voltage (Vs) to the proper operating voltage for the ZLED7001 specified in section 1 (see equation (2) below).
When these conditions are met, the ZLED7001’s internal input voltage regulator maintains a stable 7.1V
(typical) at the VIN pin to power the ZLED7001. A low-equivalent-series-resistance (ESR) bypass capacitor is
required on the VIN pin to provide a low-impedance path for the GATE pin output driver’s high frequency
current.
The VIN pin draws an input current that is the sum of the 0.5mA (typical) required by the internal circuit and the
average current drawn by the GATE driver. The GATE driver current is primarily determined by the GATE
charge (QG) and switching frequency (fs) of the external MOSFET as shown in equation (1).

S
G
IN
f
Q
mA
5
.
0
I
(1)
Where
fS = Switching frequency
G
Q
= External MOSFET gate charge (refer to the MOSFET data sheet)
The input resistor RIN value is given by equation (2).
IN
IN
INDC
IN
I
V
V
R
(2)
For two typical MOSFET types, the following IIN diagram will result:
Figure 2.1
Input Current



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