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  • Contents

Catalog

Resistors and Capacitors

Electrolytic capacitors

Transistor & diode packages

Integrated circuit SMD packages

Ball Grid Array

Small Outline Packages

Flat Packages

 

 

Surface Mount Technology (SMT) is a technique for mounting electrical components directly to the surface of a printed circuit board (PCB). The component that is mounted on the surface of the PCB using surface mount technology is called Surface Mount Device (SMD). SMT has essentially replaced the through-hole PCB manufacturing technology to reduce cost, and increase efficiency and productivity. Since the size of SMD components is very small, compared to through-hole components many more SMD components can be arranged in a given place. Selecting and knowing the right SMD component for your PCB is very necessary. SMD components have standard codes and sizes which as a PCB designer one should know. Kynix offers all sorts of SMD components for PCB manufacturing which can be found here. This article will help you choose the right SMD component from the Kynix library.

 

SMD components come in various packages and sizes to facilitate the automated manufacturing of PCBs. Most of the SMD components are standardized to make manufacturing easy. The most commonly used SMD components are capacitors and resistors. The standards of these components are set by Joint Electron Device Engineering Council.

 

There are different types of packages. When a new package is introduced in the industry, it is named after its initials such as Quad Flat Package (QFP). While some packages have no name, it creates confusion in the industry. Below we have discussed flat chip SMD resistors, capacitors, diodes & transistors, and IC packages. The size of the SMD chip for resistor, capacitors, and some of the diodes is given by a 4 digits code, which represents the dimension of the flat chip either in inches or in millimeters. In the US it is represented in inches while outside the US it is represented in mm. The first two digits represent the length (L) of the component while the last two digits represent the width (W) of the component. While the thickness is also an important factor in manufacturing, it is not mentioned in the 4 digits code, for this, the actual datasheet of the component provided by the manufacturer should be used.

 

Many PCB components such as resistors, capacitors, diodes, FETs, and other transistors are available in SMD. SMD resistors and capacitors, also known as passive devices, come in different sizes. Depending upon the availability of space, soldering capability, and environment temperature, different packages can be used. The names of these packages given in the table below are derived from the size of the components in inches.

 

Resistors and Capacitors

Below are the most common size codes for capacitors and resistors. You can find these resistors and capacitors here.

 

S. No Package Dimensions (in)
1 201 0.02 x 0.01
2 2016 0.2 x 0.16
3 202 0.02 x 0.02
4 204 0.02 x 0.04
5 207 0.02 x 0.07
6 303 0.03 x 0.03
7 306 0.03 x 0.06
8 402 0.04 x 0.02
9 404 0.04 x 0.04
10 406 0.04 x 0.02
11 502 0.05 x 0.05
12 505 0.05 x 0.08
13 508 0.05 x 0.1
14 510 0.05 x 0.1
15 603 0.06 x 0.03
16 606 0.06 x 0.06
17 612 0.06 x 12
18 705 0.07 x 0.05
19 805 0.08 x 0.05
20 808 0.08 x 0.08
21 815 0.08 x 0.15
22 816 0.08 x 0.16
23 830 0.08 x 0.3
24 1010 0.1 x 0.1
25 1020 0.1 x 0.2
26 1050 0.1 x 0.5
27 1206 0.12 x 0.06
28 1210 0.12 x 0.1
29 1216 0.12 x 0.16
30 1218 0.12 x 0.18
31 1220 0.12 x 0.2
32 1224 0.12 x 0.24
33 1225 0.12 x 0.25
34 1405 0.14 x 0.05
35 1505 0.15 x 0.05
36 1506 0.15 x 0.06
37 1510 0.15 x 0.1
38 1575 0.15 x 0.75
39 1608 0.16 x 0.08
40 1632 0.16 x 0.32
41 1812 0.18 x 0.12
42 2010 0.2 x 0.1
43 2012 0.2 x 0.12
44 2018 0.2 x 0.18
45 2030 0.2 x 0.3
46 2208 0.22 x 0.08
47 2409 0.24 x 0.09
48 2412 0.24 x 0.12
49 2510 0.25 x 0.1
50 2512 0.25 x 0.12
51 2515 0.25 x 0.15
52 2615 0.26 x 0.15
53 2725 0.27 x 0.25
54 2726 0.27 x 0.26
55 2728 0.27 x 0.28
56 2816 0.28 x 0.16
57 2817 0.28 x 0.17
58 2818 0.28 x 0.18
59 3014 0.3 x 0.14
60 3020 0.3 x 0.2

 

At present most manufacturers can manufacture PCBs with SMD components up to 0603 easily, going below this size to such as 0402 or 0201 is still difficult for the manufacturers, and thus the cost of manufacturing increases if these components are included in the design. Therefore, most of the manufacturers recommend using 0603 components for PCB design.

 

Electrolytic capacitors

The electronic industry adopted EIA and IECQ standards for molded tantalum capacitors. These packages are named A, B, C, D, and E. These correspond to different sizes in millimeters.

 

Package height is not included in the size code.

 

EIA code Metric code Dimension
A 3216 3.2 x1.6 mm
B 3528 3.5 x 2.8 mm
C 6032 6.0 x 3.2 mm
D 7343 7.3 x 4.3 mm

 

Several other electronic devices can not follow any standard because of their unique nature. SMD components like an inductor, transformers, crystals, resonators, and temperature-controlled oscillators require different packages often larger than the standard packages. It is very unlikely that these packages will be standardized because of their unique nature. However, the package must be chosen in a way to make pick and place possible. These capacitors can be found here.

 

Transistor & diode packages

SMD transistors and diodes have the same package type. Transistors have three pins while a diode has two pins. The third pin is added to the diode package to keep the orientation right. Diodes are packages that come in different varieties. Some packages follow the standards of capacitors and resistors that we discussed above.

 

Some of the most common diode and transistor packages are

  • SOT-23 - Small Outline Transistor: It is the most common diode and transistor package. It has three pins and measures 3 mm x 1.75 mm x 1.3 mm. It is used for low-power applications.
  • SOT-223 - Small Outline Transistor: This diode package is used for high-power applications. It is bigger than SOT-23. It measures 6.7 mm x 3.7 mm x1.8 mm. It has four pins with which the fourth one is used for heat dissipation.

Integrated circuit SMD packages

IC packages are found in many packages and can be classified in many different ways. It is very common to hear the terms DIP, SOP, SIP, TSOP, QSOP, MSOP, SOIC, QFP etc. These are the different packages of IC. They can be categorized as.

 

There are three main package types for surface mount integrated circuits:

  • Ball grid array (BGA)
  • Small outline package (SOP)
  • Quad flat pack (QFP)

Ball Grid Array

 

Ball Grid Array package has solder balls attached to the underside of the package. Beneath the balls are electrical traces of IC. Ball Grid Array has further the following types.

  • Molded Array Process Ball Grid Array (MAPBGA)
  • Plastic Ball Grid Array (PBGA)  
  • Thermally Enhanced Plastic Ball Grid Array (TEPBGA)
  • Tape Ball Grid Array (TBGA)
  • Package on Package   
  • MicroBGA.

Small Outline Packages

 

Small Outline Package is another IC package in which pins come out from the sides of the IC. The convention used for SOIC or SO package is the name followed by the number of pins used in the package. i.e SO-12 means the IC has 12 pins.

 

Further types of SOP/SOIC are

  • SOJ - Small Out-Line J-Leaded Package
  • TSOP -Thin Small Outline Package
  • VSOP -Very Small Outline Package).
  • TSSOP -Thin Shrink Small Outline Package 
  • SSOP -Shrink Small Outline Package
  • QSOP -Quarter-size Small Outline Package

Flat Packages

 

Flat IC package have pins arranged on its side in L or J shape. These pins are arranged on the side of the package with the leads coming out. This package further has many subtypes.

  • QFP (Quad Flat Package)
  • TQFP (Thin Quad Flat Package)
  • STQFP (Small Thin Quad Plastic Flat Package)
  • FQFP (Fine-pitch Quad Flat Package),
  • (Low profile Quad Flat Package)
  • VQFP (Very-small Quad Flat Package)
  • ETQFP (Exposed thin quad Flat Package)
  • PQFN (Power Quad Flat Package)
  • PQFP (Plastic Quad Flat Package)
  • QFJ (Quad Flat J-Leaded Package)
  • QFN (Quad Flat Non-Leaded Package)

Allen

Allen is a seasoned professional with over 10 years of experience in the semiconductor industry. He possesses in-depth industry knowledge and a unique perspective on the market landscape. Allen has a proven track record of success in leading and managing teams, driving innovation, and delivering results.

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