SIPEX SP6128AB

demo board for SP6128A, a synchronous buck controller
Non-Isolated DC-DC SIP Modules:
3.0Vdc-5.5Vdc In, 0.9Vdc-3.3Vdc out, 10A
FEATURES:
ƒ
ƒ
•
ƒ
ƒ
ƒ
ƒ
ƒ
ƒ
ƒ
ƒ
ƒ
High Efficiency: 94.5% at 3.3V output,10A
Small size and very low profile
43.2mm × 7.25mm × 13.97mm
(1.7in × 0.285in × 0.55in)
3V to 5.5V input voltage
All ceramic capacitors design
Negative or Positive remote On/Off
Thermal shut down protection
Low output ripple max 20mV
Output voltage adjustable with the trim function
Low EMI noise
Short circuit and over current protection
using Hiccup mode and auto-restart
Build in UVLO function
Wide operation temperature range
-40 °C to +85 °C
ƒ
± 0.1% line regulation & ± 0.3% load
regulation
-40 °C to +85 °C
DESCRIPTION:
The SP6128A demo board design is non-isolated dc-dc SIP module with a very high efficiency at
10A output. It has smallest size comparing with the current market products with the same power
range and low EMI. Standard features include remote ON/OFF with the customer selectable
positive and negative control, output voltage adjustment, soft start, over current and over
temperature protection. This demo board proves that SP6128A is a high performance, but yet
easy to use synchronous buck controller. It simplifies low voltage DC to DC power supply
designs without compromising performance.
-1-
APPLICATION
•
workstations, servers
•
computer and its peripheral
•
distribution power architecture
•
•
telecommunications equipment
data processing and storage equipment
•
LANs and WANs
•
high performance data processing IC
SCHEMATIC:
PCB Layout:
2
Top Layer
Internal-1 layer
Internal-2 layer
Bottom Layer
3
SST
SSB
CHARACTERISTIC CURVE (1.8V output)
SP6128A EVAL Board regulation
95
1.816
94
1.814
93
1.812
Output(V)
EFF (%)
SP6128A EVAL Board Eff
92
91
3.3V
90
5V
89
1.81
1.808
1.806
3.3V
1.804
5V
1.802
88
0
1
2
3
4
5
6
7
8
9
0
10
1
Load (A)
Figure 1
2
3
4
5
6
Load(A)
Figure 2
Figure 3: input ripple @ Vin=3.3V, Io=10A
Figure 4: input ripple @ Vin=5V, Io=10A
4
7
8
9
10
Figure 5:output ripple @ Vin=3.3V Io=10A
Figure 6:output ripple @ Vin=5V Io=10A
Figure 8 startup, Ch1:Vin, Ch2:Vout,
Ch3:Iin 2A/div @Io=10A
Figure 7: startup, Ch1:Vin, Ch2:Vout,
Ch3:Iin 2A/div @Io=10A
Figure 10: output short, Ch2: COM
Ch4:Iin 5A/div@Vin=5.0V
Figure 9: output short, Ch2: COM
Ch4:Iin 5A/div@Vin=3.0V
5
Figure11: transient response, Ch1:Vout
Ch2:Iout 2A/div load change
At 5A/us from 0.4A to 5A @
Vin=3.3V
Figure12: transient response, Ch1:Vout
Ch2:Iout 2A/div load change
At 5A/us from 0.4A to 5A @
Vin=5V
Figure13: short circuit Iin RMS value
Ch2: Vin, Ch4 Iin 2A/div
Figure14: short circuit Iin RMS value
Ch2: Vin, Ch4 Iin 2A/div
*short circuit protection tested at with Cin=100uF, Tantalum
6
ELECTRICAL SPECIFICATIONS
Parameter
Operating input voltage
Input voltage ripple
Output voltage set point
accurate
Output regulation
Line regulation
Load regulation
Output ripple&noise
Output current
Output current limit point
Over temperature protection
Negative remote control:
Logic low-module on
Logic high-module off
Positive remote control:
Logic high-module on
Logic low-module off
Symbol
Min
Vin
Vinripple
2.9
Typ
Max
Units
250
6
300
± 1.5
Vdc
mVp-p
%
± 0.1
± 0.3
%
%
mVp-p
A
A
15
Io
110
Vrem
Irem
Vrem
Irem
Vrem
Irem
Vrem
Irem
Turn-on time
Short circuit input
current(RMS)
Output voltage trim range
-0.7
25
10
16
120
0.3
100
2.4
0.5
°C
V
µA
1
0.8
1
5
0.5
V
mA
V
mA
V
µA
ms
A
+10
% Vout ,nom
2.4
-0.7
-10
FEATURE DISCRIPTION
Output voltage trim function:
In this design,there is a trim pin that allows the customer to trim the output voltage to ± 10% off the
nominal voltage.
In the schematic on page 2, R3, R14, R2 and external trim resistor (Rtrim) comprise the trim function
circuit. To trim-up, connect Rtrim between trim pin and GND. The Rtrim value is equal to:
Rtrim=
0 .8 × R 2
− R14
∆V
To trim-down, connect Rtrim between trim pin and Vout. The Rtrim value can be derived from:
2
Rtrim=
0.8 × R2
− R2 − R14
R3 × ∆V
Remote On/OFF:
7
This design allows user to select positive or negative logic remote control. This demo board only
implements the negative logic remote control circuit. To change to positive logic, remove Q5, R7, R8,
and R12.and add D2 andD3.
Over temperature protection:
The over temperature protection will shut down the module when abnormal high temperature is detected
by the circuit.. The module will attempt to restart once the temperature cools down. The temperature set
point can be adjusted by resistor R11.
Mechanical Outline Diagram
Dimensions are in millimeter (inch)
43.2(1.7)
7.25(0.285)
13.95(5.5)
1 2 3 4
5 6 7
8 9
IN
1
2
3
4
5
6
7
8
9
*the pin out is not the same as standard
BILL MATERIAL
8
FUNCTION
Vo
Vo
GND
GND
GND
ON/OFF
Trim
Vi
Vi
Item
Quantity
Reference
Part
Manufacture information
1
2 C1,C2
22u
TDK C3225X5R1A226M
2
3 C3,C8,C13
1u
TDK C2012X7R1C105K
3
3 C4,C5,C6
47u
TDK C3225X5R0J476M
4
1 C9
470p
TDK C1608C0G1H471J
5
1 C10
22p
TDK C1608C0G1H220J
6
2 C11,C12
0.1u
TDK C1608X7R1H104K
7
1 C14
6.8n
TDK C1608X7R1H682K
8
1 D1
MBR0530
ON semiconductor
10
1 D4
STPS2L25U
ST
11
12
9 J1,J2,J3,J4,J5,J6,J7 PIN
,J8,J9
1 L1
SC5018-1R2M
Easy Magnetic
13
2 Q1,Q2
IRF7811W
IRF
14
1 R1
300
0603
15
1 R2
10.2k
0603
16
1 R3
8k
0603
17
1 R5
20k
0603
18
1 R6
4.22k
0603
19
1 R13
0
0603
20
1 R14
45k
0603
21
1 U1
SP6128A
SIPEX
22
1 R11
100
0603
23
4 R7,R8,R10,R12
10K
0603
24
2 Q3,Q4
MMBT4401
ON semiconductor
25
1 Q5
MMBT2907
ON semiconductor
22
1 R9
NTC-100K
TDK NTCG204CH104J
∗ For the low profile application, SC5015-1R2M from Easy magnetic recommended for L1
9
EFFICIENCY ON THE DIFFERENT OUTPUT VOLTAGE
Input voltage
3.0-5.5V
3.0-5.5V
3.0-5.5V
3.0-5.5V
3.0-5.5V
3.0-5.5V
3.0-5.5V
4.5-5.5V
Output voltage
0.9V
1V
1.2V
1.5V
1.8V
2.0V
2.5V
3.3V
Output current
10A
10A
10A
10A
10A
10A
10A
10A
SIGNAL PROCESSING EXCELLENCE
Headquarters and sales office
22 Linnell Circle
Billerica,MA 01821
TEL:978-667-8700
FAX:978-670-9001
E-mail: [email protected]
Sales office
233 South Hillview Drive
Milpitas,CA 95035
TEL:408-934-7500
FAX:408-935-7600
Application support
Jack Ni
TEL:978-671-4644
Email: [email protected]
10
Efficiency
82%
84%
86%
88%
90.5%
90.5%
92.7%
94.5%
Internal Trim resistor
80.6K
40.2K
20.5K
11.8K
8.06K
6.81K
4.75K
3.24K