CM1630-08DE ON Semiconductor, CM1630-08DE Datasheet

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CM1630-08DE

Manufacturer Part Number
CM1630-08DE
Description
IC LCD/CAM EMI FILTER 8CH 16DFN
Manufacturer
ON Semiconductor
Datasheet

Specifications of CM1630-08DE

Resistance (ohms)
100
Capacitance
8.5pF
Power (watts)
0.1W, 1/10W
Package / Case
16-BGA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Tolerance
-
Features
Applications
©2010 SCILLC. All rights reserved.
May 2010 – Rev. 2
Four, six and eight channels of EMI filtering with
integrated ESD protection
Pi-style EMI filters in a capacitor-resistor-
capacitor (C-R-C) network
±15kV ESD protection on each channel
(IEC 61000-4-2 Level 4, contact discharge)
±30kV ESD protection on each channel (HBM)
Greater than 25dB attenuation (typical) at 1
GHz
UDFN package with 0.40mm lead pitch:
Tiny UDFN package size:
Increased robustness against vertical impacts
during manufacturing process
Lead-free version available
LCD and Camera data lines in mobile handsets
I/O port protection for mobile handsets,
notebook computers, PDAs etc.
EMI filtering for data ports in cell phones, PDAs
or notebook computers.
Wireless handsets
Handheld PCs/PDAs
LCD and camera modules
• 4-ch. = 8-lead UDFN
• 6-ch. = 12-lead UDFN
• 8-ch. = 16-lead UDFN
• 8-lead: 1.7mm x 1.35mm x 0.5mm
• 12-lead: 2.5mm x 1.35mm x 0.5mm
• 16-lead: 3.3mm x 1.35mm x 0.5mm
LCD and Camera EMI Filter Array
Product Description
The CM1630 is a family of pi-style EMI filter arrays
with ESD protection, which integrates four, six and
eight filters (C-R-C) in small form factor UDFN
0.40mm
component
channel. The CM1630 has a cut-off frequency of
200MHz and can be used in applications with data
rates up to 80Mbps. The parts include ESD diodes
on every pin, which provide a very high level of
protection for sensitive electronic components that
may be subjected to electrostatic discharge (ESD).
The ESD protection diodes safely dissipate ESD
strikes of ±15kV, well beyond the maximum
requirement of the IEC61000-4-2 international
standard. Using the MIL-STD-883 (Method 3015)
specification for Human Body Model (HBM) ESD,
the pins are protected for contact discharges at
greater than ±30kV.
These devices are particularly well-suited for
portable electronics (e.g. wireless handsets, PDAs,
notebook computers) because of their small
package and easy-to-use pin assignments. In
particular, the CM1630 is ideal for EMI filtering and
protecting data and control lines for the I/O data
ports, LCD display and camera interface in mobile
handsets.
The CM1630 is housed in space-saving, low-profile
8-, 12- and 16-lead UDFN packages with a 0.4mm
pitch and is available with lead-free finishing. This
new small UDFN package provides up to 42%
board space savings vs. the 0.50mm pitch UDFN
packages.
pitch
values
with ESD Protection
packages.
of
8.5pF-100Ω-8.5pF
The
Publication Order Number:
CM1630
CM1630
CM1630/D
has
per

Related parts for CM1630-08DE

CM1630-08DE Summary of contents

Page 1

... SCILLC. All rights reserved. May 2010 – Rev. 2 LCD and Camera EMI Filter Array with ESD Protection Product Description The CM1630 is a family of pi-style EMI filter arrays with ESD protection, which integrates four, six and eight filters (C-R-C) in small form factor UDFN 0.40mm pitch packages ...

Page 2

... Electrical Schematic EMI/RFI Filter Channels with Integrated ESD Protection Rev.2 | Page www.onsemi.com CM1630 ...

Page 3

... Storage Temperature Range DC Power per Resistor DC Package Power Rating PIN DESCRIPTIONS DEVICE PIN(s) - PART NUMBERING INFORMATION Package Ordering Part Number UDFN-8 CM1630-04DE CM1630-06DE CM1630-08DE ABSOLUTE MAXIMUM RATINGS Rev Page www.onsemi.com NAME DESCRIPTION -06 - FILTER1 Filter + ESD Channel FILTER2 Filter + ESD Channel 2 10 ...

Page 4

... LOAD I = -10mA LOAD Note 2 Channel R = 100Ω, Channel C = 8.5pF Z = 50Ω, Z SOURCE 50Ω, DC Bias = 0V; Notes 1 and 50Ω, Z SOURCE 50Ω, DC Bias = 0V; Notes 1 and 3 Rev.2 | Page www.onsemi.com CM1630 RATING UNITS -40 to +85 °C (SEE NOTE1) MIN TYP MAX UNITS Ω 80 100 120 8 ...

Page 5

... CM1630 Performance Information Typical Filter Performance (T =25°C, DC Bias=0V, 50 Ohm Environment) A Figure 1. Insertion Loss vs. Frequency (FILTER1 Input to GND, CM1436-04DE) Figure 2. Insertion Loss vs. Frequency (FILTER2 Input to GND, CM1436-04DE) Rev Page www.onsemi.com ...

Page 6

... Performance Information (cont’d) Typical Filter Performance (T =25°C, DC Bias=0V, 50 Ohm Environment) A Figure 3. Insertion Loss vs. Frequency (FILTER3 Input to GND, CM1436-04DE) Figure 4. Insertion Loss vs. Frequency (FILTER4 Input to GND, CM1436-04DE) Rev.2 | Page www.onsemi.com CM1630 ...

Page 7

... CM1630 Performance Information (cont’d) Typical Filter Performance (T =25°C, DC Bias=0V, 50 Ohm Environment) A Figure 5. Insertion Loss vs. Frequency (FILTER1 Input to GND, CM1436-06DE) Figure 6. Insertion Loss vs. Frequency (FILTER2 Input to GND, CM1436-06DE) Rev Page www.onsemi.com ...

Page 8

... Performance Information (cont’d) Typical Filter Performance (T =25°C, DC Bias=0V, 50 Ohm Environment) A Figure 7. Insertion Loss vs. Frequency (FILTER3 Input to GND, CM1436-06DE) Figure 8. Insertion Loss vs. Frequency (FILTER4 Input to GND, CM1436-06DE) Rev.2 | Page www.onsemi.com CM1630 ...

Page 9

... CM1630 Performance Information (cont’d) Typical Filter Performance (T =25°C, DC Bias=0V, 50 Ohm Environment) A Figure 9. Insertion Loss vs. Frequency (FILTER5 Input to GND, CM1436-06DE) Figure 10. Insertion Loss vs. Frequency (FILTER6 Input to GND, CM1436-06DE) Rev Page www.onsemi.com ...

Page 10

... Performance Information (cont’d) Typical Filter Performance (T =25°C, DC Bias=0V, 50 Ohm Environment) A Figure 11. Insertion Loss vs. Frequency (FILTER1 Input to GND, CM1436-08DE) Figure 12. Insertion Loss vs. Frequency (FILTER2 Input to GND, CM1436-08DE) Rev.2 | Page www.onsemi.com CM1630 ...

Page 11

... CM1630 Performance Information (cont’d) Typical Filter Performance (T =25°C, DC Bias=0V, 50 Ohm Environment) A Figure 13. Insertion Loss vs. Frequency (FILTER3 Input to GND, CM1436-08DE) Figure 14. Insertion Loss vs. Frequency (FILTER4 Input to GND, CM1436-08DE) Rev Page www.onsemi.com ...

Page 12

... Performance Information (cont’d) Typical Filter Performance (T =25°C, DC Bias=0V, 50 Ohm Environment) A Figure 15. Insertion Loss vs. Frequency (FILTER5 Input to GND, CM1436-08DE) Figure 16. Insertion Loss vs. Frequency (FILTER6 Input to GND, CM1436-08DE) Rev.2 | Page www.onsemi.com CM1630 ...

Page 13

... CM1630 Performance Information (cont’d) Typical Filter Performance (T =25°C, DC Bias=0V, 50 Ohm Environment) A Figure 17. Insertion Loss vs. Frequency (FILTER7 Input to GND, CM1436-08DE) Figure 18. Insertion Loss vs. Frequency (FILTER8 Input to GND, CM1436-08DE) Rev Page www.onsemi.com ...

Page 14

... Performance Information (cont’d) Typical Diode Capacitance vs. Input Voltage Figure 19. Filter Capacitance vs. Input Voltage (normalized to capacitance at 2.5VDC and 25°C) Rev.2 | Page www.onsemi.com CM1630 ...

Page 15

... CM1630 Mechanical Details UDFN-08 Mechanical Specifications Dimensions for the CM1630 supplied in a 8-lead, 0.4mm pitch UDFN package are presented below. PACKAGE DIMENSIONS UDFN Package JEDEC MO-229C No. 8 Leads Millimeters Dim. Min Nom Max 0.45 0.50 0.55 A 0.00 0.02 0.05 A1 0.127 REF A3 0 ...

Page 16

... Mechanical Details (cont’d) UDFN-12 Mechanical Specifications Dimensions for the CM1630 suplied in a 12-lead, 0.4mm pitch UDFN package are presented below. PACKAGE DIMENSIONS UDFN Package JEDEC MO-229C No. 12 Leads Millimeters Dim. Min Nom Max 0.45 0.50 0.55 A 0.00 0.02 0.05 A1 0.127 REF A3 0 ...

Page 17

... CM1630 Mechanical Details (cont’d) UDFN-16 Mechanical Specifications Dimensions for the CM1630 supplied in a 16-lead, 0.4mm pitch UDFN package are presented below. PACKAGE DIMENSIONS UDFN Package JEDEC MO-229C No. 16 Leads Millimeters Dim. Min Nom Max 0.45 0.50 0.55 A 0.00 0.02 0. ...

Page 18

... Europe, Middle East and Africa Technical Support:  Phone: 421 33 790 2910 Japan Customer Focus Center    Phone: 81-3-5773-3850 Rev.2 | Page www.onsemi.com CM1630 ON Semiconductor Website: www.onsemi.com    Order Literature: http://www.onsemi.com/orderlit For additional information, please contact your local   ...

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