MC34025DWG ON Semiconductor, MC34025DWG Datasheet - Page 12

IC CTRLR PWM DBL END HF 16SOIC

MC34025DWG

Manufacturer Part Number
MC34025DWG
Description
IC CTRLR PWM DBL END HF 16SOIC
Manufacturer
ON Semiconductor
Datasheet

Specifications of MC34025DWG

Pwm Type
Voltage/Current Mode
Number Of Outputs
2
Frequency - Max
1MHz
Duty Cycle
45%
Voltage - Supply
10 V ~ 30 V
Buck
No
Boost
No
Flyback
No
Inverting
No
Doubler
No
Divider
No
Cuk
No
Isolated
Yes
Operating Temperature
0°C ~ 70°C
Package / Case
16-SOIC (0.300", 7.5mm Width)
Frequency-max
1MHz
Duty Cycle (max)
45 %
Output Voltage
5.05 V to 5.15 V
Output Current
500 mA
Mounting Style
SMD/SMT
Switching Frequency
1000 KHz
Operating Supply Voltage
30 V
Maximum Operating Temperature
+ 70 C
Fall Time
30 ns
Minimum Operating Temperature
0 C
Rise Time
30 ns
Synchronous Pin
Yes
Topology
Half-Bridge, Push-Pull
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
MC34025DWGOS

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MC34025DWG
Manufacturer:
ON/安森美
Quantity:
20 000
This method of slope compensation is easy to implement, however, it is noise sensitive. Capacitor C
signal is added to the current signal by a voltage divider consisting of resistors R
When only one output is used, this method of slope compensation can be used and it is relatively noise immune. Resistor R
capacitor C
can assume that its charge is linear. First choose C
pulse at the ramp input at the end of every cycle. The charge current I
R
Output
M
= V
CC
/I
M
M
R
.
M
provide the added slope necessary. By choosing R
C
M
Current Sense
Transformer
R
C
R
w
f
f
Figure 30. Current Mode Master/Slave Operation Over Short Distances
Ramp
Input
3
7
Figure 29. Keeps Fig numbering sequence correct
Figure 29A. Slope Compensation (Noise Sensitive)
1.25 V
Figure 29B. Slope Compensation (Noise Immune)
Oscillator
Current Sense
Information
C
M
T
, then R
4
5
6
R
2
http://onsemi.com
M
R
C
C
1
can be adjusted to achieve the required slope. The diode provides a reset
1
T
M
and C
12
4
5
6
7
3
R
M
T
can be calculated by I
V
M
ref
1.25 V
with a larger time constant than the switching frequency, you
Current Sense
Resistor
1
4
5
6
Oscillator
and R
2
.
Oscillator
M
R
f
= C
C
M
Output
1
M
provides AC coupling. The oscillator
S
R
e
C
M
. Then R
f
Ramp
7
3
Input
M
can be calculated by
1.25 V
M
and

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