CL0608 [EATON]

Multi-phase power inductors;
CL0608
型号: CL0608
厂家: Eaton All Rights Reserved.    Eaton All Rights Reserved.
描述:

Multi-phase power inductors

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Technical Data 10578  
Effective December 2016  
CL0608  
Multi-phase power inductors  
Applications  
For exclusive use with Maxim® Multi-phase  
controllers  
Voltage Regulator Modules (VRMs) and high  
power density VRMs  
Server and desktop  
Central processing unit (CPU)  
Graphics processing unit (GPU)  
Application specific integrated circuit (ASIC)  
Data networking and storage systems  
High current Point-of-Load (POL) modules  
Vcore regulators  
Environmental data  
Storage temperature range (Component):  
Product features  
-40 °C to +125 °C  
Operating temperature range: -40 °C to +125 °C  
(ambient plus self-temperature rise)  
High current multi-phase inductor  
100 nH per phase coupled inductor  
Solder reflow temperature:  
J-STD-020 (latest revision) compliant  
10.8 mm x 6.35 mm footprint surface mount  
package in an 8.2 mm height  
Halogen free, lead free, RoHS compliant  
Ferrite core material  
HALOGEN  
Moisture Sensitivity Level (MSL): 1  
HF  
Pb  
FREE  
Maxim® is a registered trademark of Maxim Integrated Devices, Inc.  
CL0608  
Multi-phase power inductors  
Technical Data 10578  
Effective December 2016  
Product specifications  
DCR (mΩ)  
±120  
@ ±2 °C  
4
Inductor  
Phases  
OCL1  
(nH) ±±20  
FLL±  
(nH) minimum  
Isat1±  
(A)  
SCL3  
(nH) ±±20  
Isat±  
(A)  
Part Number5  
CL0608- 2- 100TR-R  
2
380  
300  
15  
0.89  
100  
38  
1. Open Circuit Inductance (OCL) Test Parameters: 1.0 MHz, 0.1 Vrms, 0.0 Adc, +25 °C  
2. Full Load Inductance (FLL) Test Parameters: 1.0 MHz, 0.1 Vrms, Isat1, +25 °C  
3. Short Circuit Inductance (SCL) Test Parameters: 1.0 MHz, 0.1 Vrms, 0.0 Adc, +25 °C  
CL0608-2-100TR-R short (1 & 4), measure (2 & 3), and divide by 2.  
8. Part Number Definition: CL0608-x-100TR-R  
CL0608 = Product code and size  
x = Number of phases  
100 = Inductance value per phase in nH  
TR = Tape and reel packaging  
4. Isat2: Peak current where SCL drops approximately 20% @ +25 °C  
-R suffix = RoHS compliant  
Note: This device is licensed for use only when incorporated within a voltage regulator  
employing power regulating devices manufactured by Maxim Integrated Devices, Inc.  
No license is granted expressly or by implication to use this device with power  
regulating devices manufactured by any company other than Maxim.  
Dimensions (mm)  
Part marking: CL0608-x-100TR-R (x = number of phases), xxxx = lot code  
Tolerances are 0.25 millimeters unless stated otherwise  
All soldering surfaces to be coplanar within 0.13 millimeters  
PCB tolerances are 0.1 millimeters unless stated otherwise  
DCR measured from point “a” to point “b”  
Do not route traces or vias underneath the inductor  
Packaging information (mm)  
Supplied in tape and reel packaging , 500 parts per 13” diameter reel  
Drawing not to scale  
www.eaton.com/electronics  
2
CL0608  
Multi-phase power inductors  
Technical Data 10578  
Effective December 2016  
Inductance characteristics – SCL vs. current  
CL0608-2-100TR-R  
120  
100  
80  
60  
40  
20  
0
+25 °C  
+105 °C  
+125 °C  
0
5
10  
15  
20  
25  
30  
35  
40  
45  
50  
Idc (A)  
Inductance characteristics – OCL vs. current  
CL0608-2-100TR-R  
450  
400  
350  
300  
250  
200  
150  
100  
50  
+25 °C  
+105 °C  
+125 °C  
0
0
2
4
6
8
10  
12  
14  
16  
18  
20  
22  
24  
Idc (A)  
www.eaton.com/electronics  
3
CL0608  
Multi-phase power inductors  
Technical Data 10578  
Effective December 2016  
Solder reflow profile  
TP  
Table 1 - Standard SnPb Solder (T )  
c
TC -5°C  
tP  
Volume  
Volume  
Max. Ramp Up Rate = 3°C/s  
Max. Ramp Down Rate = 6°C/s  
Package  
mm3  
mm3  
Thickness  
<352  
352  
TL  
<2.5mm)  
235 °C  
220 °C  
220 °C  
220 °C  
Preheat  
t
2.5mm  
Tsmax  
Table 2 - Lead (Pb) Free Solder (T )  
c
Volume  
Volume  
Volume  
mm3  
Package  
mm3  
mm3  
Tsmin  
Thickness  
<352  
352 - ±222  
>±222  
ts  
<1.6mm  
260 °C  
260 °C  
250 °C  
260 °C  
250 °C  
245 °C  
260 °C  
245 °C  
245 °C  
1.6 – 2.5mm  
>2.5mm  
25°C  
Time 25°C to Peak  
Time  
Reference JDEC J-STD-020  
Profile Feature  
Standard SnPb Solder  
100 °C  
Lead (Pb) Free Solder  
150 °C  
Preheat and Soak • Temperature min. (T  
)
smin  
• Temperature max. (T  
)
150 °C  
200 °C  
smax  
• Time (T  
smin  
to T  
) (t )  
smax  
60-120 Seconds  
3 °C/ Second Max.  
60-120 Seconds  
3 °C/ Second Max.  
s
Average ramp up rate T  
smax  
to T  
p
Liquidous temperature (Tl)  
Time at liquidous (t )  
183°C  
60-150 Seconds  
217°C  
60-150 Seconds  
L
Peak package body temperature (T )*  
Table 1  
Table 2  
P
Time (t )** within 5 °C of the specified classification temperature (T )  
20 Seconds**  
6 °C/ Second Max.  
6 Minutes Max.  
30 Seconds**  
6 °C/ Second Max.  
8 Minutes Max.  
p
c
Average ramp-down rate (T to T  
p
)
smax  
Time 25 °C to Peak Temperature  
* Tolerance for peak profile temperature (T ) is defined as a supplier minimum and a user maximum.  
p
** Tolerance for time at peak profile temperature (t ) is defined as a supplier minimum and a user maximum.  
p
Life Support Policy: Eaton does not authorize the use of any of its products for use in life support devices or systems without the express written  
approval of an officer of the Company. Life support systems are devices which support or sustain life, and whose failure to perform, when properly  
used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in significant injury to the user.  
Eaton reserves the right, without notice, to change design or construction of any products and to discontinue or limit distribution of any products. Eaton also  
reserves the right to change or update, without notice, any technical information contained in this bulletin.  
Eaton  
Electronics Division  
1000 Eaton Boulevard  
Cleveland, OH 44122  
United States  
www.eaton.com/electronics  
© 2016 Eaton  
All Rights Reserved  
Eaton is a registered trademark.  
Printed in USA  
Publication No. 10578 BU-MC16092  
December 2016  
All other trademarks are property  
of their respective owners.  

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