ARTESYN PTV12010

PTV12010
12 Vin single output
DC-DC CONVERTERS
POLA Non-isolated
1
NEW Product
• 8 A output current
• 12 V input voltage
• Wide-output voltage adjust
• 1.2 Vdc to 5.5 Vdc for suffix ‘W’ and
0.8 Vdc to 1.8 Vdc for suffix ‘L’
• Auto-track™ sequencing*
• Pre-bias start-up
• Efficiencies up to 93%
• Output ON/OFF inhibit
• Vertical through-hole mounting
• Point-of-Load-Alliance (POLA) compatible
• Undervoltage lockout
• Available RoHS compliant
The PTV12010 is a non-isolated dc-dc converter from Artesyn under the Point of Load
Alliance (POLA) standard. The vertical mounting option of the PTV12010 module provides
performance in less than 20% of the space that is required by alternative solutions. The
Auto-Track™ feature provides for sequencing between multiple modules, a function,
which is becoming a necessity for powering advanced silicon including DSP’s, FPGA’s
and ASIC’s requiring controlled power-up and power-down. The PTV12010 has an input
voltage of 10.8 Vdc to 13.2 Vdc and offers a wide 1.2 Vdc to 5.5 Vdc for suffix ‘W’ and
0.8 Vdc to 1.8 Vdc for suffix ‘L’ output voltage range with up to 8 A output current, which
allows for maximum design flexibility and a pathway for future upgrades.
2 YEAR WARRANTY
All specifications are typical at nominal input, full load at 25 °C unless otherwise stated
Cin = 100 µF and 10 µF (Ceramic), Cout = 0 µF
OUTPUT SPECIFICATIONS
SPECIFICATIONS
EMC CHARACTERISTICS
Voltage adjustability
(See Note 4)
Suffix ‘W’
Suffix ‘L’
Setpoint accuracy
(See Note 8)
1.2-5.5 Vdc
0.8-1.8 Vdc
±2.0% Vo
Electrostatic discharge
Conducted immunity
Radiated immunity
EN61000-4-2, IEC801-2
EN61000-4-6
EN61000-4-3
Line regulation
±10 mV typ.
GENERAL SPECIFICATIONS
Load regulation
±12 mV typ.
Efficiency
Total regulation
(See Note 8)
±3.0% Vo
0A
Minimum load
Ripple and noise
20 MHz bandwidth
Suffix ‘W’
Suffix ‘L’
20 mV pk-pk
15 mV pk-pk
Temperature co-efficient -40 ºC to +85 ºC
Transient response
(See Note 5)
±0.5% Vo
70 µs recovery time
Overshoot/undershoot 100 mV
(See Note 3)
Insulation voltage
Switching frequency
Suffix ‘W’
Suffix ‘L’
Non-isolated
250-400 kHz
200-300 kHz
325 kHz typ.
250 kHz typ.
Approvals and
standards
EN60950
UL/cUL60950
UL94V-0
Material flammability
Dimensions
(L x W x H)
22.86 x 8.38 x 10.16 mm
0.90 x 0.330 x 0.400 in
Weight
INPUT SPECIFICATIONS
Input voltage range
See Tables on page 2
10.8V-13.2 Vdc
Input standby current
10 mA typ.
Remote ON/OFF
(See Note 1)
Positive logic
Undervoltage lockout
(Increasing)
9.5 V typ.
Track input current
Pin 5 (See Notes 6 and 7)
-0.13 mA
MTBF
2.6 g (0.09 oz)
Telcordia SR-332
5,000,000 hours
ENVIRONMENTAL SPECIFICATIONS
Thermal performance
(See Note 2)
Operating ambient,
temperature
Non-operating
-40 ºC to +85 ºC
-40 ºC to +125 ºC
PROTECTION
Overcurrent
Auto reset
16 A typ.
International Safety Standard Approvals
UL/cUL CAN/CSA-C22.2 No. 60950
File No. E174104
TÜV Product Service (EN60950) Certificate No. B 04 06 38572 044
CB Report and Certificate to IEC60950, Certificate No.
US/8292/UL
*Auto-track™ is a trade mark of
Texas Instruments
File Name: ptv12010w.pdf Rev (02): 19 Dec 2005
PTV12010
12 Vin single output
DC-DC CONVERTERS
POLA Non-isolated
2
For the most current data and application support visit www.artesyn.com/powergroup/products.htm
NEW Product
OUTPUT
POWER
(MAX.)
INPUT
VOLTAGE
OUTPUT
VOLTAGE
OUTPUT
CURRENT
(MIN.)
OUTPUT
CURRENT
(MAX.) (2)
EFFICIENCY
(MAX.)
LINE
LOAD
MODEL
NUMBER (9,10)
15 W
10.8-13.2 Vdc
0.8-1.8 Vdc
0A
8A
87%
±10 mV
±12 mV
PTV12010L
44 W
10.8-13.2 Vdc
1.2-5.5 Vdc
0A
8A
92%
±10 mV
±12 mV
PTV12010W
Part Number System with Options
REGULATION
PTV12010WAH
Product Family
Point of Load Alliance
Compatible
Mounting Version
V = Vertical
Mounting Style (9)
D = Horizontal Through-Hole (Matte Sn)
H = Horizontal Through-Hole (Sn/Pb)
Pin Style
A = Through-Hole Std. Pin Length (0.150”)
Input Voltage
12 = 12 V
Output Current
01 = 8 A
Output Voltage Code
W = Wide
L = Low Voltage
Mechanical Package
Always 0
Output Voltage Adjustment of the PTV12010 Series
The ultra-wide output voltage trim range offers major advantages to users who
select the PTV12010. It is no longer necessary to purchase a variety of
modules in order to cover different output voltages. The output voltage can be
trimmed in a range of 1.2 Vdc to 5.5 Vdc for suffix ‘W’ and 0.8 Vdc to 1.8 Vdc
for suffix ‘L’. When the PTV12010 converter leaves the factory the output has
been adjusted to the default voltage of 1.2 V for the PTV12010W and 0.8 V for
PTV12010L.
EFFICIENCY TABLE - PTV12010L (IO = IOMAX)
EFFICIENCY TABLE - PTV12010W (IO = IOMAX)
OUTPUT VOLTAGE
EFFICIENCY
OUTPUT VOLTAGE
EFFICIENCY
Vo = 1.8 V
87%
Vo = 5.0 V
92%
Vo = 1.5 V
86%
Vo = 3.3 V
90%
Vo = 1.2 V
84%
Vo = 2.5 V
88%
Vo = 1.0 V
81%
Vo = 1.8 V
85%
Vo = 0.8 V
78%
Vo = 1.5 V
83%
Vo = 1.2 V
80%
Notes
1
2
3
4
5
6
7
Remote ON/OFF. Positive logic
Pin 7 open; or V > 2 V
ON:
OFF:
Pin 7 GND; or V < 0.6 V
See Figures 1, 2, 3 and 6 for safe operating curves.
A 100 µF electrolytic input capacitor is required for proper operation as
well as a 10 µF high-frequency ceramic capacitor. The electrolytic
capacitor must be rated for the minimum rms of ripple current.
An external output capacitor is not required for basic operation. Adding
100 µF of distributed capacitance at the load will improve the transient
response.
1 A/µs load step, 50 to 100% Iomax, C3 = 100 µF.
If utilized Vout will track applied voltage by ±0.3 V (up to Vo set point).
The pre-bias start-up feature is not compatible with Auto-Track™. This is
because when the module is under Auto-Track™ control, it is fully active
and will sink current if the output voltage is below that of a back-feeding
source. Therefore to ensure a pre-bias hold-off, one of the following two
techniques must be followed when input power is first applied to the
module. The Auto-Track™ function must either be disabled, or the
module’s output held off using the Inhibit pin. Refer to Application Note
196 for more details.
8 The set-point voltage tolerance is affected by the tolerance and stability
of Rset. The stated limit is unconditionally met if Rset has a tolerance of
1% with 100/ºC or better temperature stability.
9 To order Pb-free (RoHS compatible) through-hole parts replace the
mounting option ‘H’ with ‘D’, e.g. PTV12010WAD.
10 NOTICE: Some models do not support all options. Please contact your
local Artesyn representative or use the on-line model number search tool at
http://www.artesyn.com/powergroup/products.htm to find a suitable
alternative.
File Name: ptv12010w.pdf Rev (02): 19 Dec 2005
PTV12010
12 Vin single output
DC-DC CONVERTERS
POLA Non-isolated
3
For the most current data and application support visit www.artesyn.com/powergroup/products.htm
NEW Product
90
90
80
80
TEMPERATURE (ºC)
TEMPERATURE (ºC)
PTV12010W Characteristic Data
70
400 LFM
200 LFM
100 LFM
Nat conv
60
50
40
30
70
60
400 LFM
200 LFM
100 LFM
Nat conv
50
40
30
20
20
0
1
2
3
4
5
6
7
0
8
OUTPUT CURRENT (A)
1
2
3
4
5
6
7
8
OUTPUT CURRENT (A)
Figure 2 - Safe Operating Area
Vin = 12 V, Output Voltage = 3.3 V (See Note A)
Figure 1 - Safe Operating Area
Vin = 12 V, Output Voltage = 5 V (See Note A)
90
100
TEMPERATURE (ºC)
80
EFFICIENCY (%)
70
400 LFM
200 LFM
100 LFM
Nat conv
60
50
40
30
90
Vout
5.0V
3.3V
1.8V
1.2V
80
70
60
50
20
0
0
2
4
6
OUTPUT CURRENT (A)
2
4
6
8
8
OUTPUT CURRENT (A)
Figure 3 - Safe Operating Area
Vin = 12 V, Output Voltage = 1.8 V (See Note A)
Figure 4 - Efficiency vs Load Current
Vin = 12 V (See Note B)
Notes
A SOA curves represent the conditions at which internal components are
within the Artesyn derating guidelines.
B Characteristic data has been developed from actual products tested at
25 °C. This data is considered typical data for the converter.
Track
5
Track
2
8
Vin
Vin
3
Vo
Vo
PTVxx010
Inhibit
7
GND
6
1
Vo Adj
4
L
O
A
Inhibit
C1
100uF
(Required)
C2
10uF
Ceramic
(Required)
Rset
1%
0.05W
D
C3
100uF
Optional
GND
GND
Figure 5 - Standard Application
File Name: ptv12010w.pdf Rev (02): 19 Dec 2005
PTV12010
12 Vin single output
DC-DC CONVERTERS
POLA Non-isolated
4
For the most current data and application support visit www.artesyn.com/powergroup/products.htm
NEW Product
PTV12010L Characteristic Data
90
100
TEMPERATURE (ºC)
80
EFFICIENCY (%)
70
400 LFM
200 LFM
100 LFM
Nat conv
60
50
40
30
90
Vout
1.2V
1.0V
0.8V
80
70
60
50
20
0
2
4
6
OUTPUT CURRENT (A)
0
8
2
4
6
8
OUTPUT CURRENT (A)
Figure 7 - Efficiency vs Load Current
Vin = 12 V (See Note B)
Figure 6 - Safe Operating Area
Vin = 12 V, Output Voltage ≤ 1.8 V (See Note A)
Notes
A SOA curves represent the conditions at which internal components are
within the Artesyn derating guidelines.
B Characteristic data has been developed from actual products tested at
25 °C. This data is considered typical data for the converter.
Track
5
Track
2
8
Vin
Vin
3
Vo
Vo
PTVxx010
Inhibit
7
GND
6
1
Vo Adj
4
L
O
A
Inhibit
C1
100uF
(Required)
C2
10uF
Ceramic
(Required)
Rset
1%
0.05W
D
C3
100uF
Optional
GND
GND
Figure 8 - Standard Application
File Name: pth12010wl.pdf Rev (06): 07 Feb 2005
PTV12010
12 Vin single output
DC-DC CONVERTERS
POLA Non-isolated
5
For the most current data and application support visit www.artesyn.com/powergroup/products.htm
SIDE VIEW
NEW Product
FRONT VIEW
0.330±0.008
(8.38±0.20)
PCB
0.900 (22.86)
0.400 (10.16)
0.150 (3.81)
1
0.025 (0.64)
Min 8 Places
Plated Through Hole
2
3
4
5
6
7
8
0.020 (0.51)
0.100 (2.54)
Dimensions in Inches (mm)
Tolerances (unless otherwise specified)
2 Places ±0.030 (±0.76)
3 Places ±0.010 (±0.25)
0.100 (2.54)
PIN CONNECTIONS
PIN NO.
FUNCTION
1
Ground
2
Vout
3
Vout
4
Vo Adjust
5
Track
6
Ground
7
Inhibit
8
Vin
Figure 9 - Mechanical Drawing and Pinout Table
Datasheet © Artesyn Technologies® 2005
The information and specifications contained in this datasheet are believed to be correct at time of publication. However, Artesyn Technologies accepts no responsibility for consequences arising
from printing errors or inaccuracies. The information and specifications contained or described herein are subject to change in any manner at any time without notice. No rights under any patent
accompany the sale of any such product(s) or information contained herein.
Please consult our website for the following items: 4 Application Note
www.artesyn.com
File Name: ptv12010w.pdf Rev (02): 19 Dec 2005