Showing posts with label circuit. Show all posts
Showing posts with label circuit. Show all posts

Output Relay Delay Audio Amplifier Circuit


Output Relay Delay Audio Amplifier Circuit
This is a simple circuit which I built to one of my audio amplifier projects to control the speaker output relay. The purpose of this circuit is to control the relay which turns on the speaker output relay in the audio amplifier. The idea of the circuit is wait around 5 seconds ofter the power up until the spakers are switched to the amplfier output to avoid annoying “thump” sound from the speakers. Another feeature of this circuit is that is disconnects the speaker immdiatly when the power in the amplifier is cut off, so avoinding sometimes nasty sounds when you turn the equipments off.
Output Relay Delay Audio Amplifier Circuit Component list
C1 100 uF 40V electrolytic
C2 100 uF 40V electrolytic
D1 1N4007
D2 1N4148
Q1 BC547
R1 33 kohm 0.25W
R2 2.2 kohm 0.25W
RELAY 24V DC relay, coil resistance >300 ohm
Circuit operation
Then power is applied to the power input of the circuit, the positive phase of AC voltage charges C1. Then C2 starts to charge slowly through R1. When the voltage in C2 rises, the emitter output voltage of Q1 rises tigether with voltage on C2. When the output voltage of Q2 is high enough (typically around 16..20V) the relay goes to on state and the relay witches connect the speakers to the amplifier output. It takes typically around 5 seconds after power up until the relay starts to condict (at absolute time depends on the size of C2, relay voltage and circuit input voltage).
When the power is switched off, C1 will loose it’s energu quite quicly. Also C2 will be charged quite quicly through R2. In less than 0.5 seconds the speakers are disconnected from the amplifier output.
Notes on the circuit
This circuit is not the most accurate and elegant design, but it has worked nicely in my small homebuilt PA amplifier. This circuit can be also used in many other applications where a turn on delay of few seconds is needed. The delay time can be increased by using bigger C2 and decreased by using a smaller C2 value. Note that the delay is not very accurate because of simplicity of this circuit and large tolerance of typical electrolytic capacitors (can be -20%..+50% in some capcitors).

Isolated RS422 Interface Circuit and Layout


 Isolated RS422 Interface Circuit
Figure 1 shows the circuit diagram of RS422 interface. Connector K1 is linked to the serial port of the PC, power to the PC side of the circuit is derived from the signal lines DTR and RTS. Positive supply is derived from RTS and negative supply from the DTR line. Optical isolation is achieved by optocouplers U1 and U2. Optocoupler  U1 provide TXD line isolation while optocoupler U2 provide RXD line isolation.

The other side of the isolator carries TTL levels. This side is powered by an unregulated dc supply between 9V and 12V ac/dc adapter. IC U5 provide 5V regulated output and ICs U3 & U4 provide the RS422 bus interface. The TXD and RXD lines status are provided by data indicating LEDs. The interface has been tested at the baud rate of 19.2k baud.

The connector K3 provide the RS422 bus signals plus the un-regulated dc supply output. An RJ45 connector can be used to provide the signals & power to the other end of the RS422 bus.
The PC RXD pin can only receive the data when the RS232 handshake lines are set accordingly,
RTS = 1  (at +ve supply level)
DTR = 0  (at -ve supply level)
For printing the pcb files on HP laser printer download the PCBs.zip file and run the Laser.bat file after extracting from the zip file.
Figure 2 & 3 shows the component layout of the RS422 single sided pcb and the track patterns respectively.



Component details of the project.
1 1 B1 BRIDGE 1A/100V (DIP TYPE)
2 3 C1,C2,C3 100nF CERAMIC
3 1 C4 10uF 16V
4 1 C5 470uF 25V
5 2 D1,D2 1N4148
6 2 D5,D3 LED RED 3mm
7 2 D4,D6 1N4003
8 1 K1 DB9 R/A PCB PLUG
9 1 K2 DC JACK SOCKET
10 1 K3 SIP CON 8 WAY
11 4 R1,R2,R5,R6 1K
12 1 R3 4K7
13 1 R4 470R
14 4 R7,R8,R9,R10 10R
15 2 R13,R11 120R
16 2 R14,R12 680R
17 1 U1 6N137
18 1 U2 CNY17-3
19 2 U3,U4 SN75176B, MAX485
20 1 U5 LM7805

Circuit : Telephone operated remote control using PIC16F84A microcontroller



Circuit : Telephone operated remote control using PIC16F84A microcontroller

 
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