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Alicloud designer software method/procedure
- Common components in the Miscellaneous devices. intlib Component Library in alicloud are:
Res pack *)
Inductance (inductor *)
Capacitor (Cap *, capacitor *)
Diode series (diode *, D *)
Transistor series (PNP *, PNP *, MOS *, MOS *, MESFET *, JFET *, IGBT *)
Operational Amplifier series (OP *)
Relay *)
8-bit Digital Display Manager (dpy *)
Bridge (BRI * Bridge)
Opto *, optoisolator)
PHOTODIODES and transistors (photo *)
Analog-to-digital converter (adc-8, dac-8)
Crystal Oscillator (xtal)
Battery speaker microphone (MIC *) light bulb (lamp *) bell)
Antenna (antenna)
Fuse (FUSE *)
Switch series (SW *) jumper (jumper *)
Transformer series (trans *)
The Component Library name of the crystal oscillator (Crystal Oscillator) is Miscellaneous devices. intlib. Enter * SOC in the search column.
- Common components in miscellaneous connectors. intlib Library Under alicloud are:
(Con *, connector *)
(Header *)
(Mhdr *)
The timer ne555 P is in the Ti analog timer circit. intlib library.
Resistance axial
Polar capacitor Rad
Electrolytic Capacitor RB-
Potentiometer Vr
Diode
Transistor
Power supply pressure block 78 and 79 series TO-126H and TO-126V
The same as the transistor
D-44 D-37 D-46
Single-row multi-needle socket con sip
Dual-row direct plug-in dip
Crystal Oscillator xtal1
Resistance: RES1, RES2, RES3, res4; Axial Series
Polar capacitance: CAP; encapsulation property is RAD-0.1 to rad-0.4
Electrolytic Capacitor: electroi; encapsulation attribute: rb.2/. 4 to rb.5/1.0
Potentiometer: pot1, pot2; encapsulation property is vr-1 to vr-5
Diode: encapsulation property: Diode-0.4 (Low Power) Diode-0.7 (high power)
Transistor: the common encapsulation property is to-18 (Common Transistor) to-22 (High-Power Transistor) to-3 (high-power Dalin
Dunguan)
The power supply regulator has 78 and 79 series; 78 series such as 7820, etc.
Series 79 includes 7920, etc.
Common encapsulation attributes include to126h and to126v.
Bridge: bridge1, bridge2: encapsulation property for D series (D-44, D-37, D-46)
Resistance: AXIAL0.3-AXIAL0.7 where 0.4-0.7 refers to the length of the resistance, usually with axial0.4
Porcelain capacitor: RAD0.1-RAD0.3. 0.1-0.3 refers to the capacitor size, generally use rad0.1
Electrolytic Capacitor: rb.1/. 2-rb.4/. 8 wherein. 1/. 2-.4/. 8 indicates the capacitor size. Generally, it is used for <100uf
Rb.1/. 2, rb.2/. 4 for 100uf-470uf,> rb.3/. 6 for 470uf
Diode: DIODE0.4-DIODE0.7 of which 0.4-0.7 refers to the length of the diode, usually with diode0.4
Light Emitting Diode: rb.1/. 2
Integrated Block: DIP8-DIP40, where 8-40 refers to how many feet, 8 feet is dip8
SMD Resistor
0603 indicates that the package size has no relationship with the specific resistance.
But the encapsulation size is generally related to power.
0201 1/20 million
0402 1/16 million
0603 1/10 million
0805 1/8 million
1206 1/4 million
The relationship between the shape size and encapsulation of the capacitor resistance is as follows:
0402 = 1.0x0.5
0603 = 1.6x0.8
0805 = 2.0x1.2
1206 = 3.2x1.6
1210 = 3.2x2.5
1812 = 4.5x3.2
2225 = 5.6X6.5
- As we have mentioned before about part encapsulation, except for components in the device. Lib library, all components in other libraries already have
Fixed component encapsulation, because the components in this library have multiple forms: the transistor is used as an example to describe:
The transistor is one of our commonly used components. In the device. Lib library, the only difference between the two elements is that
In fact, if it is 2n3055 of the type, it may be to-3 of the iron shell. If it is 2n3054 of the type, there is
May be Iron Shell to-66 or to-5, while learning to use cs9013, there are TO-92A, TO-92B, and to-5, to-46, to-5
2. ever-changing.
Another is resistance. In the device library, it also simply calls them RES1 and RES2, regardless of whether it is 100 Ω.
Or kb Ω is the same. For a circuit board, it is irrelevant to the Ohm number, which is determined by the power of the resistor.
The resistance of 1/4 W and even 1/2 W can be encapsulated with axial0.3, while the power is larger.
Can be used for axial0.4, axial0.5, etc. The common components are encapsulated as follows:
Resistance and non-polar double-ended element AXIAL0.3-AXIAL1.0
Stepless capacitance RAD0.1-RAD0.4
Polar capacitor rb.2/. 4-rb.5/1.0
Diode diode0.4 and diode0.7
Z crystal oscillator xtal1
Transistor, Fet, UJT to-xxx (to-3, to-5)
Variable Resistance (pot1, pot2) VR1-VR5
Of course, you can also open the c: \ client98 \ Release 98 \ library \ advpcb. Lib library to find the corresponding parts used
Installation.
We recommend that you back these commonly used component packages. These components can be divided into two parts.
For example, axial0.3 can be split into axial and 0.3. If axial is translated into Chinese, the axial is in the axial shape. If it is 0.3, the resistance is printed.
The distance between the pad on the brush board is mil (because in the field of motor, it is based on imperial units.
For the non-polar capacitor, the RAD0.1-RAD0.4 is also the same; For the polarity of the capacitor such as electrolytic capacitor, its encapsulation is R
B .2/. 4, rb.3/. 6, among which ". 2" is the Pad Spacing, and ". 4" is the outer diameter of the capacitor cylinder.
For a transistor, you can directly view its shape and power. For a high-power transistor, you can use the to-3, medium-power transistor.
If it is flat, use to-220. If it is a metal shell, use to-66, a small power transistor, and use to-5.
, To-46, TO-92A and so on can, anyway, its pin is also long, bend can also.
For commonly used integrated IC circuits, there are dixx, that is, dual-row direct insertion component encapsulation, and dip8 is double-row, each row has four
Foot, the distance between two rows is mil, and the distance between the pad is mil. sipxx is the encapsulation of a single row.
It is worth noting that the packaging of transistors and variable resistors is the most headache. The same packaging, its pins
May not be the same. For example, for TO-92B packaging, usually 1 foot for E (emission pole), and 2 foot may be
B pole (base pole), or C (collector); similarly, three may be C or B, specifically
Only the components can be determined. Therefore, the circuit software cannot hard define the pad name (PIN name ).
Mos can also be encapsulated in the same way as a transistor, which can be used as a component of Three pins.
Q1-B, in the PCB, when loading this network table, will not find the node (not ).
Similar problems also occur in the Variable Resistance. In the schematic diagram, the variable resistance pins are 1, W, and 2, respectively,
The resulting network table is 1, 2, and W. In the PCB, the pad is, 3. When the circuit has these two elements
The fastest way to change the difference between PCB and Sch is to directly display
Change the body tube pins to 1, 2, and 3. Change the variable resistance to 1, 2, and 3 in the same shape as the circuit board components.
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