Indian Manufacturers and Exporters of Inductive Proximity Barrel Round Switches, Inductive Proximity Rectangular Switches, Photo Electric Proximity Switches, Photoelectric Proximity Switches, Capacitive Proximity Switches, Switch Mode Power Supply (SMPS), Magnetic Door Contacts for security alarm systems, Magnetic Proximity Switches, Security Systems Magnetic Switches & Magnetic Float Switches..

Parasnath Electronic Pvt. Ltd.

Product Categories

Inductive Proximity Barrel Round Switches
Inductive Proximity Rectangular Switches
Inductive Proximity Special Type Switches
Inductive Proximity Switches (2 Wire)
Magnetic Proximity Switches
Magnetic Door Contacts for Security Alarm Systems
Photoelectric Proximity Switches
Float Switches
Capacitive Proximity Switches
Switch Mode Power Supply
Brake Interlock System
Flow Switch
Power Pack
LDR Type Proximity Switch
Lubricant Timer
Panic Switch

Intrinsically Safe Proximity Switch
 

Product Application

Our Products find varied applications in various industries such as -
Textiles
Food Processing
Automobile
Machine Tool
Entertainment
Advertising
Cement Industry
Packaging Industry
 


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Switch Mode Power Supply(SMPS)

Switch mode power supplies(SMPS) are an Switch Mode Power Supply(SMPS)extraordinary array of high frequency alternative. These are the Switching Regulators offers higher efficiency then liner regulators. In addition the Power Supply SMPS can step-up, down and invert the input voltage.

Working principal


A switching regulator is a circuit that uses an inductor, a tranformer, and a capacitor as energy-storage element to tranfer energy from input to output in discrete packets. Feedback circuitry regulates the energy tranfer to maintain a canstant voltage within the load limits of the circuit.

They use some form of pulse-width modulation to alter the on time relative to the off time to effect control. The device used in this to giveen the constraints of frequency and the speed are power ‘fets’

The use of power ‘fets’ with fast turn-on and turn-off characteristics have made switches that operate comfortable at frequency above 100khz practical.

There are two topologies are used

1. Forward converters
2. Flyback circuits.

Forward converters are used in medium and high power applications. They can be recognizeed by their power transformer and output choke.

Flybacks are favored for low power applications because they employ a transformer that doubles as the input choke .

Using a transformer as the energy-storage element also allows output voltage to be electrically isolated from the input voltage.

Advantages of Switch Mode Power Supply
  1. Switch Mode Power Supply(SMPS)Change the output to a different voltage level then the input ( step-up or step-down).
  2. Isolate the output from the input.
  3. Provide the user with a means to vary the output
  4. Can get constant output at variable input.
  5. Stabilize the output against the influence of:-
    • Source changes (source effect)
    • Load changes (load effect)
    • Temperature changes ( temp. Effect)
    • The passage of time ( time effect or drift)
  6. Output short circuit protected.

Applications

SMPS’s are having wide range of applications some of areas -
  1. Machine tool industries
  2. Security systems (Close Circuit Cameras)
  3. Where the size and wight very less is required
  4. Audio and vedio application
  5. Support supplies with PLC’s

Technical Specification Click Here

Switch Mode Power Supply(SMPS)



SMPS
IPS-01

Technical Specifications



Switch Mode Power Supply(SMPS) Switch Mode Power Supply(SMPS) Switch Mode Power Supply(SMPS)

PCB Size (mm)
HxWxL (fig.5)
24x41
x61
28x44
x98
31x65
x119
31x65
x119
36x80
x137
24x41
x61
24x44
x84
35x60
x112
31x65
x119
36x80
x137
35x96
x175
Output Voltage, VDC 5 5 5 5 5 12 12 12 12 12 12
Output Current, Amp 1.0 2.5 5.0 8.0 10.0 0.5 1.0 2.0 3.0 5.0 10.0
Input Voltage, VAC 125-260 125-260 125-260 140-260 140-260 125-260 125-260 140-260 140-260 140-260 140-260
Ripple Voltage, mVDC 50-80 50-80 50-80 50-80 50-80 50-80 50-80 50-80 50-80 50-80 50-80
Efficiency 92% 92% 92% 90% 90% 92% 92% 92% 92% 92% 92%
Output Load Regulation 0.10 to 0.20% 0.10 to 0.20% 0.10 to 0.20% 0.20 to 0.30% 0.20 to 0.30% 0.10 to 0.20% 0.10 to 0.20% 0.10 to 0.20% 0.10 to 0.30% 0.10 to 0.30% 0.10 to 0.30%
Box Size(mm) Fig 3 & 4
A 88   154 154 161 88 122 151 154 161 200
B 45   71 71 87 45 48 64 71 87 102
C 31   55 55 55 31 36 48 55 55 55
D 65   116 116 120 65 78 108 116 120 157
E 28   41 41 41 28   34 41 41 42
F     14 14 14     14 14 14 13
G     10 10 10     12 10 10 11
H 10   14 14 18   08 15 14 18 24
I 04   07 07 10   03 06 07 10 16
J 11   10 10 10   12 09 10 10 11

PCB Size (mm)
HxWxL (fig.5)
35x60
x112
35x60
x112
36x80
x137
35x60
x112
35x60
x112
35x60
x112
31x65
x119

36x80
x137

36x96
x175
31x65
x119
36x80
x137
36x100
x162
Output Voltage, VDC 15 15 15 18 24 24 24 24 24 36 36 27.5
Output Current, Amp 1.5 2.5 4.0 1.0 1 1 2 3 5 1 2.0 4
Input Voltage, VAC 140-260 140-260 140-260 140-260 140-260 140-260 140-260 140-260 140-260 140-260 140-260 140-260
Ripple Voltage, mVDC 50-80 50-80 50-80 50-80 50-80 50-80 50-80 50-80 50-80 50-80 50-80 50-80
Efficiency 92% 92% 92% 92% 92% 90% 90% 90% 90% 90% 90% 90%
Output Load Regulation 0.10 to 0.20% 0.10 to 0.30%
0.10 to 0.30%
0.10 to 0.20% 0.10 to 0.30%
0.10 to 0.30%
0.10 to 0.30%
0.10 to 0.20% 0.20 to 0.30% 0.20 to 0.30% 0.20 to 0.30% 0.20 to 0.30%
Box Size(mm) Fig 3 & 4
A 151 151 161 151 151 161 200 161 200 154 161  
B 64 64 87 64 64 87 102 87 102 71 87  
C 48 48 55 48 48 55 55 55 55 55 55  
D 108 108 120 108 108 120 157 120 157 116 120  
E 34 34 41 34 34 41 42 41 42 41 41  
F 14 14 14 14 14 14 13 14 13 14 14  
G 12 12 10 12 12 10 11 10 11 10 10  
H 15 15 18 15 15 18 24 18 24 14 18  
I 06 06 10 06 06 10 16 10 16 07 10  
J 09 09 10 09 09 10 11 10 11 10 10  

PCB Size (mm)
HxWxL (fig.5)
28x54
x94
31x75x119 28x54
x94
35x60
x112
36x85
x137
36x85
x137
36x120
x115

24x87x97

       
Output Voltage, VDC +/-5 +/-5 +/-12 +/-12 +/-12 +/-15 12-72 and - 24 12 V with 7AH Battery Charger 12 V with 14AH Battery Charger 12 V with 21AH Battery Charger 24 V with 30AH Battery Charger 24 V with 30AH Battery Charger
Output Current, Amp 1.0 2.5 0.5 1.0 2.0 1.5 2, 0.1 and 0.2 1.0 3.0 5.0 2.0 3.0
Input Voltage, VAC 140-260 140-260 140-260 140-260 140-260 140-260 140-260 140-260 140-260 140-260 140-260 140-260
Ripple Voltage, mVDC 50-80 50-80 50-80 50-80 50-80 50-80 50-80 50-80 50-80 50-80 50-80 50-80
Efficiency 92% 92% 92% 92% 92% 92% 85% 85% 85% 85% 85% 85%
Output Load Regulation 0.10 to 0.20% 0.10 to 0.20%
0.10 to 0.20% 0.10 to 0.20% 0.10 to 0.20% 0.10 to 0.20%
0.10 to 0.20% 0.20 to 0.30% 0.20 to 0.30% 0.20 to 0.30% 0.20 to 0.30%







As the market requires continuous R&D/Improvement, Data is subject to change without any prior notice.
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