L6910GTR STMicroelectronics, L6910GTR Datasheet - Page 19

IC PWM BUCK BST VM 16SOIC

L6910GTR

Manufacturer Part Number
L6910GTR
Description
IC PWM BUCK BST VM 16SOIC
Manufacturer
STMicroelectronics
Datasheet

Specifications of L6910GTR

Pwm Type
Voltage Mode
Number Of Outputs
1
Frequency - Max
230kHz
Duty Cycle
100%
Voltage - Supply
5 V ~ 12 V
Buck
Yes
Boost
Yes
Flyback
No
Inverting
No
Doubler
No
Divider
No
Cuk
No
Isolated
No
Operating Temperature
-40°C ~ 150°C
Package / Case
16-SOIC (3.9mm Width)
Frequency-max
230kHz
Topology
Step Down
Output Voltage
0.9 V to 12 V
Output Current
1300 mA
Switching Frequency
50 KHz to 1000 KHz
Duty Cycle (max)
100 %
Maximum Operating Temperature
+ 150 C
Minimum Operating Temperature
- 40 C
Mounting Style
SMD/SMT
Synchronous Pin
No
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
497-6111-2

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
L6910GTR
Manufacturer:
ST
0
Part Number:
L6910GTR
Manufacturer:
ST
Quantity:
20 000
Part Number:
L6910GTRE4
Manufacturer:
ST
0
Figure 22. Efficiency vs Output Current Source
Figure 23. Efficiency vs Output Current Sink
For very big systems (e.g. servers), the DDR memory
termination can require much higher currents, in the
range of 10A-15A and more.
Figures 24, 25 and 26, 27 show the efficiency of the
L6910G in sink and source mode, up to 17A both for
DDRI and DDRII memories.The measurements have
been realized with the 15A demo board. (See pag.11 )
Figure 24. Efficiency vs Output Current Sink
95
95
90
90
85
85
80
80
75
75
70
70
65
65
60
60
95
95
95
90
90
90
85
85
85
80
80
80
75
75
75
70
70
70
65
65
65
60
60
60
10 0
10 0
10 0
1
1
9 0
9 0
9 0
8 0
8 0
8 0
7 0
7 0
7 0
6 0
6 0
6 0
5 0
5 0
5 0
1
1
1
1
1
1
Mode
Mode
Mode
Vcc=12V
Vcc=12V
Vout=1.25V
Vout=1.25V
Fsw=200KHz
Fsw=200KHz
Vcc=12V
Vcc=12V
Vcc=12V
Vout=1.25V
Vout=1.25V
Vout=1.25V
Fsw=200KHz
Fsw=200KHz
Fsw=200KHz
2
2
2
2
2
Vcc=12V
Vcc=12V
Vcc=12V
Vcc=12V
Vout=1.25V
Vout=1.25V
Vout=1.25V
Vout=1.25V
Fsw=200KHz
Fsw=200KHz
Fsw=200KHz
Fsw=200KHz
3
3
3
Vin=12V
Vin=12V
5
5
5
Vin=12V
Vin=12V
Vin=12V
Vin=12V
3
3
3
3
3
Output Current (A)
Output Current (A)
Output Current (A)
Output Current (A)
Output Current (A)
Output Current (A)
Output Current (A)
Output Current (A)
Output Current (A)
7
7
7
4
4
4
4
4
9
9
9
5
5
Vin=12V
Vin=12V
Vin=12V
5
5
5
11
11
11
Vin=12V
Vin=12V
Vin=2.5V
Vin=2.5V
Vin=2.5V
Vin=2.5V
Vin=2.5V
Vin=2.5V
Vin=2.5V
13
13
13
6
6
Vin=2.5V
Vin=2.5V
6
6
6
15
15
15
7
7
7
7
7
17
17
17
8
8
8
8
8
Figure 25. Efficiency vs Output Current Sink
Figure 26. Efficiency vs Output Current Source
Figure 27. Efficiency vs Output Current Source
100
100
90
90
80
80
70
70
60
60
50
50
100
100
100
100
100
100
100
90
90
90
90
80
80
80
80
70
70
70
70
60
60
60
60
50
50
50
50
40
40
40
40
90
90
90
80
80
80
70
70
70
60
60
60
50
50
50
1
1
1
1
1
1
1
1
1
Mode
Mode
Mode
3
3
Vcc=12V
Vcc=12V
Vout=1.25V
Vout=1.25V
Fsw=200KHz
Fsw=200KHz
Vcc=12V
Vcc=12V
Vcc=12V
Vout=0.9V
Vout=0.9V
Vout=0.9V
Fsw=200KHz
Fsw=200KHz
Fsw=200KHz
Vin=12V
Vin=12V
Vin=12V
Vout=0.9V
Vout=0.9V
Vout=0.9V
Fsw=200KHz
Fsw=200KHz
Fsw=200KHz
3
3
3
3
3
3
3
5
5
5
5
5
5
5
5
5
Output Current (A)
Output Current (A)
Output Current (A)
Output Current (A)
7
7
7
7
7
7
7
7
7
Output Current (A)
Output Current (A)
9
9
9
9
9
9
9
9
9
Vout=12V
Vout=12V
11
11
Vin=12V
Vin=12V
Vin=12V
Vout=2.5V
Vout=2.5V
Vin=12V
Vin=12V
Vin=12V
11
11
11
11
11
11
11
Vin=1.8V
Vin=1.8V
Vin=1.8V
13
13
Vin=1.8V
Vin=1.8V
Vin=1.8V
13
13
13
13
13
13
13
15
15
15
15
15
15
15
15
15
17
17
L6910G
17
17
17
17
17
17
17
19/26

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