MICROLAB AA15N

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1 - 1 $264.00000
2 - 2 $206.00000
3 - 4 $180.00000
5 - 6 $168.00000
7 + $156.00000



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MICROLAB
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Technical Document


DISCLAIMER: The information provided herein is solely for informational purposes. Customers must be aware of the suitability of this product for their application, and consider that variable factors such as Manufacturer, Product Category, Date Codes, Pictures and Descriptions may differ from available inventory.

®
© Coilcraft, Inc. 2012
1102 Silver Lake Road
Cary, IL 60013
Phone 800-981-0363
Fax 847-639-1508
Email cps@coilcraft.com
www.coilcraft-cps.com
This product may not be used in medical or high
risk applications without prior Coilcraft approval.
Specifications subject to change without notice.
Please check our web site for latest information.
High-Reliability
Chip Inductors
ML235RAA
0402 CHIP INDUCTORS
Document ML198-1 Revised 07/13/12
This 0402 size chip inductor series shares all of the
characteristics of Coilcraft’s other ceramic inductors: ex-
ceptionally high Q factors, especially at use frequencies;
outstanding self-resonant frequency; tight inductance
tolerance; and excellent batch-to-batch consistency.
This robust version of Coilcraft’s standard 0402CS series
features high temperature materials that allow operation
in ambient temperatures up to 155°C.
A B C D
max max max ref E F G H I J
0.047 0.025 0.026 0.010 0.020 0.009 0.022 0.026 0.014 0.018
1,19 0,64 0,66 0,25 0,51 0,23 0,56 0,66 0,36 0,46
A
B
overall
C
D
J
F
F
G
H
E
terminal
Te rminal wraparound:
approx 0.007/0,18 both ends
I
I
Suggested
Land Pattern
Core material Ceramic
Terminations Silver-palladium-platinum-glass frit
Ambient temperature –55°C to +125°C with Imax current, +125°C
to +155°C with derated current
Storage temperature Component: –55°C to +155°C.
Packaging: –55°C to +80°C
Resistance to soldering heat Max three 40 second reflows at
+260°C, parts cooled to room temperature between cycles
Temperature Coefficient of Inductance (TCL) +25 to +155 ppm/°C
Moisture Sensitivity Level (MSL) 1 (unlimited floor life at <30°C /
85% relative humidity)
Enhanced crush-resistant packaging 2000 per 7 reel
Paper tape: 8 mm wide, 0.68 mm thick, 2 mm pocket spacing
-40 -20 020406080 100 160140120
Ambient temperature (°C)
Percent of rated rmsI
120
110
100
90
80
70
60
50
40
30
20
10
0
25°C
Current Derating
Typical Q vs Frequency
Typical L vs Frequency
27 nH
19 nH
12 nH
5.6 nH
1 nH
0
5
10
15
20
25
30
110 100 1000 10000
Frequency (MHz)
Inductance (nH)
0
60
50
40
30
20
10
70
80
90
100
110
120
Q Factor
110 100 1000 10000
Frequency (MHz)
12 nH
19 nH
5.6 nH
27 nH
1 nH
®
© Coilcraft, Inc. 2012
1102 Silver Lake Road
Cary, IL 60013
Phone 800-981-0363
Fax 847-639-1508
Email cps@coilcraft.com
www.coilcraft-cps.com
This product may not be used in medical or high
risk applications without prior Coilcraft approval.
Specifications subject to change without notice.
Please check our web site for latest information.
Document ML198-2 Revised 07/13/12
ML235RAA Series (0402)
0402 CHIP INDUCTORS
1. When ordering, please specify tolerance and testing codes:
ML235RAAR10GLZ
Tolerance: F = 1% G = 2% J = 5%
Testing: Z = COTS
H = Screening per Coilcraft CP-SA-10001
N = Screening per Coilcraft CP-SA-10003
2. Inductance measured at 250 MHz using a Coilcraft SMD-F test fixture
and Coilcraft-provided correlation pieces with an Agilent/HP 4286A
impedance analyzer or equivalent.
Inductance
2
Percent
900 MHz 1.7 GHz
SRF min
5
DCR max
6
Imax
Part number
1
(nH) tolerance Q min
3
L typ
Q typ
4
L typ
Q typ
4
(GHz) (Ohms) (mA)
ML235RAA1N0JLZ 1.0 5 20 1.02 77 1.02 69 >5.00 0.045 600
ML235RAA1N8JLZ 1.8 5 20 1.78 54 1.78 75 >5.00 0.070 600
ML235RAA1N9JLZ 1.9 5 20 1.72 68 1.74 82 >5.00 0.070 600
ML235RAA2N0_LZ 2.0 5,2 20 1.93 54 1.93 75 >5.00 0.070 600
ML235RAA2N2_LZ 2.2 5,2 20 2.19 59 2.23 100 >5.00 0.070 600
ML235RAA2N4_LZ 2.4 5,2 20 2.24 51 2.27 68 >5.00 0.068 600
ML235RAA3N3_LZ 3.3 5,2,1 20 3.10 65 3.12 87 >5.00 0.066 600
ML235RAA3N6_LZ 3.6 5,2,1 20 3.56 45 3.62 71 >5.00 0.066 600
ML235RAA3N9_LZ 3.9 5,2,1 20 3.89 50 4.00 75 >5.00 0.066 600
ML235RAA4N3_LZ 4.3 5,2,1 20 4.19 47 4.30 71 >5.00 0.091 600
ML235RAA4N7_LZ 4.7 5,2,1 20 4.55 48 4.68 68 4.77 0.130 600
ML235RAA5N1_LZ 5.1 5,2,1 20 5.15 56 5.25 82 4.80 0.083 600
ML235RAA5N6_LZ 5.6 5,2,1 20 5.16 54 5.28 81 4.80 0.083 600
ML235RAA6N2_LZ 6.2 5,2,1 20 6.16 52 6.37 76 4.80 0.083 600
ML235RAA6N8_LZ 6.8 5,2,1 20 6.56 63 6.93 78 4.80 0.083 600
ML235RAA7N5_LZ 7.5 5,2,1 22 7.91 60 8.22 88 4.80 0.104 600
ML235RAA8N2_LZ 8.2 5,2,1 22 8.50 57 8.85 84 4.40 0.104 600
ML235RAA8N7_LZ 8.7 5,2,1 20 8.78 54 9.21 73 3.80 0.195 480
ML235RAA9N0_LZ 9.0 5,2,1 22 9.07 62 9.53 78 4.66 0.100 680
ML235RAA9N5_LZ 9.5 5,2,1 20 9.42 54 9.98 69 3.48 0.195 480
ML235RAA10N_LZ 10.0 5,2,1 21 9.8 50 10.10 67 3.68 0.195 480
ML235RAA11N_LZ 11.0 5,2,1 24 10.7 52 11.20 78 3.48 0.120 580
ML235RAA12N_LZ 12.0 5,2,1 24 11.9 53 12.70 71 3.60 0.120 580
ML235RAA13N_LZ 13.0 5,2,1 20 13.4 51 14.63 57 3.28 0.210 440
ML235RAA15N_LZ 15.0 5,2,1 22 14.6 55 15.50 77 3.10 0.172 500
ML235RAA16N_LZ 16.0 5,2,1 23 16.6 46 18.86 47 3.05 0.220 480
ML235RAA18N_LZ 18.0 5,2,1 24 18.3 57 20.28 62 2.68 0.230 420
ML235RAA19N_LZ 19.0 5,2,1 24 19.1 50 21.10 67 3.00 0.202 460
ML235RAA20N_LZ 20.0 5,2,1 24 20.7 52 23.66 53 2.90 0.250 400
ML235RAA22N_LZ 22.0 5,2,1 24 23.2 53 26.75 53 2.80 0.300 380
ML235RAA23N_LZ 23.0 5,2,1 24 23.8 49 26.90 64 2.72 0.300 400
ML235RAA24N_LZ 24.0 5,2,1 24 25.1 51 29.50 50 2.60 0.300 390
ML235RAA27N_LZ 27.0 5,2,1 24 28.7 49 33.50 63 2.48 0.298 380
ML235RAA30N_LZ 30.0 5,2,1 24 31.1 46 38.50 39 2.35 0.410 340
ML235RAA33N_LZ 33.0 5,2,1 20 34.9 31 41.74 32 2.30 0.300 340
ML235RAA36N_LZ 36.0 5,2,1 24 39.5 44 48.40 53 2.20 0.440 310
ML235RAA40N_LZ 40.0 5,2,1 24 39.0 44 47.40 33 2.24 0.440 290
3. Q measured at 250 MHz using an Agilent/HP 4291A with an Agilent/
HP 16197A test fixture or equivalents.
4. Q measured using an Agilent/HP 4291A with an Agilent/HP 16197A
test fixture or equivalents.
5. SRF measured using an Agilent/HP 8753ES network analyzer and a
Coilcraft CCF1192 test fixture.
6. DCR measured on a Keithley 580 micro-ohmmeter and a Coilcraft
CCF1192 test fixture.
7. Electrical specifications at 25°C.
Refer to Doc 362 “Soldering Surface Mount Components” before soldering.

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