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NZF220TT1/D

型号:

NZF220TT1/D

描述:

EMI滤波与ESD保护\n[ EMI Filter with ESD Protection ]

品牌:

ETC[ ETC ]

页数:

4 页

PDF大小:

43 K

NZF220TT1  
Advance Information  
EMI Filter with ESD Protection  
Features:  
EMI/RFI Bi–directional “Pi” Low–Pass Filters  
ESD Protection Meets IEC6000–4–2, up to 15 kV Air Discharge,  
or 8 kV Contact Discharge  
http://onsemi.com  
Diode Capacitance: 7 – 10 pF  
Zener/Resistor Line Capacitance: 22 ±20% pF  
Low Zener Diode Leakage: 1 mA Maximum  
Zener Breakdown Voltage; 6 – 8 Volts  
Benefits:  
SC–75  
CASE 463  
PLASTIC  
Designed to suppress EMI/RFI Noise in Systems Subjected to  
Electromagnetic Interference  
Small Package Size Minimizes Parasitic Inductance, Thus a More  
“Ideal” Low Pass Filtering Response  
Typical Applications:  
MARKING DIAGRAM  
Cellular Phones  
Communication Systems  
Computers  
TBD  
Portable Products with Input/Output Conductors  
MAXIMUM RATINGS  
Rating  
Symbol  
Value  
Unit  
Peak Power Dissipation (Note 1.)  
P
PK  
TBD  
Watts  
CIRCUIT DESCRIPTION  
8 × 20 ms Pulse  
IEC6000–4–2 Air Discharge  
IEC6000402 Contact Discharge  
MIL STD 883C Method 3015–6  
ESD  
±25  
±8.0  
±16  
kV  
1
2
Maximum Junction Temperature  
1. All diodes under power  
T
J
150  
°C  
3
This document contains information on a new product. Specifications and information  
herein are subject to change without notice.  
ORDERING INFORMATION  
Device  
Package  
Shipping  
NZF220TT1  
SC–75  
TBD  
Semiconductor Components Industries, LLC, 2001  
1
Publication Order Number:  
March, 2001 – Rev. 0  
NZF220TT1/D  
NZF220TT1  
ELECTRICAL CHARACTERISTICS  
Symbol  
Characteristic  
Min  
6.0  
N/A  
N/A  
7.0  
17.6  
90  
Typ  
Max  
8.0  
1.0  
1.25  
10  
Unit  
V
V
Z
Zener Breakdown Voltage, @ I = 1 mA  
ZT  
I
r
Zener Leakage Current, @ V = 3 V  
mA  
V
R
V
F
Zener Forward Voltage, @ I = 50 mA  
F
Capacitance  
Capacitance  
Resistor  
Zener Internal Capacitance, @ 0 V Bias  
Zener/Resistor Array Line Capacitance  
Resistance  
pF  
pF  
W
26.4  
110  
F
C
(Note 2.)  
Cutoff Frequency  
220  
MHz  
2. 50 W Source and 50 W Lead Termination per Figure 2  
Applications Information  
Suppressing Noise at the Source  
Filter all I/O signals leaving the noisy environment  
Locate I/O driver circuits close to the connector  
Use the longest rise/fall times possible for all digital signals  
Reducing Noise at the Receiver  
Filter all I/O signals entering the unit  
Locate the I/O filters as close as possible to the connector  
Minimizing Noise Coupling  
Use multilayer PCBs to minimize power and ground inductance  
Keep clock circuits away from the I/O connector  
Ground planes should be used whenever possible  
Minimize the loop area for all high speed signals  
Provide for adequate power decoupling  
ESD Protection  
Locate the suppression devices as close to the I/O connector as possible  
Minimize the PCB trace length to the suppression device  
Minimize the PCB trace length for the ground return for the suppression device  
http://onsemi.com  
2
NZF220TT1  
Frequency Response Specification  
TRACKING  
GENERATOR  
SPECTRUM  
ANALYZER  
50 W  
TG OUTPUT  
RF INPUT  
NZF220T  
50 W  
V
G
V
in  
V
out  
TEST BOARD  
Test Conditions:  
NZF220T  
Source Impedance = 50 W  
Load Impedance = 50 W  
Input Power = 0 dB  
Figure 1. Measurement Conditions  
–6.3  
Y
Y
OUTPUT  
3 dB = 220 MHz  
–50  
1.0  
10  
100  
1000 3000  
f, FREQUENCY (MHz)  
Figure 2. Typical EMI Filter Response  
(50 W Source and 50 W Lead Termination)  
http://onsemi.com  
3
NZF220TT1  
OUTLINE DIMENSIONS  
EMI Filter with ESD Protection  
SC–75/SOT–416  
CASE 463–01  
ISSUE B  
–A–  
S
NOTES:  
2
1. DIMENSIONING AND TOLERANCING PER ANSI  
Y14.5M, 1982.  
2. CONTROLLING DIMENSION: MILLIMETER.  
3
G
–B–  
MILLIMETERS  
INCHES  
1
DIM MIN  
MAX  
0.80  
1.80  
0.90  
0.30  
MIN  
MAX  
0.031  
0.071  
0.035  
0.012  
D 3 PL  
0.20 (0.008)  
A
B
C
D
G
H
J
0.70  
1.40  
0.60  
0.15  
0.028  
0.055  
0.024  
0.006  
M
B
0.20 (0.008) A  
K
1.00 BSC  
0.039 BSC  
---  
0.10  
1.45  
0.10  
0.10  
0.25  
1.75  
0.20  
---  
0.004  
0.057  
0.004  
0.004  
0.010  
0.069  
0.008  
K
L
J
C
S
0.50 BSC  
0.020 BSC  
STYLE 4:  
L
PIN 1. CATHODE  
2. CATHODE  
3. ANODE  
H
ON Semiconductor and  
are trademarks of Semiconductor Components Industries, LLC (SCILLC). SCILLC reserves the right to make changes  
without further notice to any products herein. SCILLC makes no warranty, representation or guarantee regarding the suitability of its products for any particular  
purpose, nor does SCILLC assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability,  
including without limitation special, consequential or incidental damages. “Typical” parameters which may be provided in SCILLC data sheets and/or  
specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including “Typicals” must be  
validated for each customer application by customer’s technical experts. SCILLC does not convey any license under its patent rights nor the rights of others.  
SCILLC products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body, or other applications  
intended to support or sustain life, or for any other application in which the failure of the SCILLC product could create a situation where personal injury or  
death may occur. Should Buyer purchase or use SCILLC products for any such unintended or unauthorized application, Buyer shall indemnify and hold  
SCILLC and its officers, employees, subsidiaries, affiliates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable  
attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim  
alleges that SCILLC was negligent regarding the design or manufacture of the part. SCILLC is an Equal Opportunity/Affirmative Action Employer.  
PUBLICATION ORDERING INFORMATION  
NORTH AMERICA Literature Fulfillment:  
CENTRAL/SOUTH AMERICA:  
Literature Distribution Center for ON Semiconductor  
P.O. Box 5163, Denver, Colorado 80217 USA  
Spanish Phone: 303–308–7143 (Mon–Fri 8:00am to 5:00pm MST)  
Email: ONlit–spanish@hibbertco.com  
Phone: 303–675–2175 or 800–344–3860 Toll Free USA/Canada  
Fax: 303–675–2176 or 800–344–3867 Toll Free USA/Canada  
Email: ONlit@hibbertco.com  
Toll–Free from Mexico: Dial 01–800–288–2872 for Access –  
then Dial 866–297–9322  
ASIA/PACIFIC: LDC for ON Semiconductor – Asia Support  
Phone: 1–303–675–2121 (Tue–Fri 9:00am to 1:00pm, Hong Kong Time)  
Toll Free from Hong Kong & Singapore:  
Fax Response Line: 303–675–2167 or 800–344–3810 Toll Free USA/Canada  
N. American Technical Support: 800–282–9855 Toll Free USA/Canada  
001–800–4422–3781  
EUROPE: LDC for ON Semiconductor – European Support  
German Phone: (+1) 303–308–7140 (Mon–Fri 2:30pm to 7:00pm CET)  
Email: ONlit–german@hibbertco.com  
French Phone: (+1) 303–308–7141 (Mon–Fri 2:00pm to 7:00pm CET)  
Email: ONlit–french@hibbertco.com  
Email: ONlit–asia@hibbertco.com  
JAPAN: ON Semiconductor, Japan Customer Focus Center  
4–32–1 Nishi–Gotanda, Shinagawa–ku, Tokyo, Japan 141–0031  
Phone: 81–3–5740–2700  
Email: r14525@onsemi.com  
English Phone: (+1) 303–308–7142 (Mon–Fri 12:00pm to 5:00pm GMT)  
Email: ONlit@hibbertco.com  
ON Semiconductor Website: http://onsemi.com  
EUROPEAN TOLL–FREE ACCESS*: 00–800–4422–3781  
For additional information, please contact your local  
Sales Representative.  
*Available from Germany, France, Italy, UK, Ireland  
NZF220TT1/D  
厂商 型号 描述 页数 下载

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