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APTS006A0X-SRZ

Part # APTS006A0X-SRZ
Description CONVERTER DC-DC 0.59 5.5V @ 6A
Category MODULE
Availability Out of Stock
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Technical Document


DISCLAIMER: The information provided herein is solely for informational purposes. Customers must be aware of the suitability of this product for their application, and consider that variable factors such as Manufacturer, Product Category, Date Codes, Pictures and Descriptions may differ from available inventory.

Data Sheet
September 4, 2009
12V Pico TLynx
TM
6A: Non-isolated DC-DC Power Modules
4.5 – 14Vdc input; 0.59Vdc to 5.5Vdc output; 6A output current
LINEAGE POWER 4
General Specifications
Parameter Device Min Typ Max Unit
Calculated MTBF (I
O
=0.8I
O, max
, T
A
=40°C) Telecordia Issue 2
Method 1 Case 3
APTS 14,353,850 Hours
APXS 22,280,045 Hours
Weight
1.95 (0.0687)
g (oz.)
Feature Specifications
Unless otherwise indicated, specifications apply over all operating input voltage, resistive load, and temperature
conditions. See Feature Descriptions for additional information.
Parameter Device Symbol Min Typ Max Unit
On/Off Signal Interface
(V
IN
=V
IN, min
to V
IN, max
; open collector or equivalent,
Signal referenced to GND)
Device is with suffix “4” – Positive Logic (See Ordering
Information)
Logic High (Module ON)
Input High Current All IIH
10 µA
Input High Voltage All VIH
3.5
V
IN,max
V
Logic Low (Module OFF)
Input Low Current All IIL
1 mA
Input Low Voltage All VIL
-0.3
0.8 V
Device Code with no suffix – Negative Logic (See Ordering
Information)
(On/OFF pin is open collector/drain logic input with
external pull-up resistor; signal referenced to GND)
Logic High (Module OFF)
Input High Current All IIH 1 mA
Input High Voltage All VIH 3.5 V
IN, max
Vdc
Logic Low (Module ON)
Input low Current All IIL 10 μA
Input Low Voltage All VIL -0.2 0.6 Vdc
Turn-On Delay and Rise Times
(V
IN
=V
IN, nom
, I
O
=I
O, max ,
V
O
to within ±1% of steady state)
Case 1: On/Off input is enabled and then input power is
applied (delay from instant at which V
IN
= V
IN, min
until Vo =
10% of V
o, set)
All Tdelay 2 msec
Case 2: Input power is applied for at least one second and
then the On/Off input is enabled (delay from instant at
which Von/Off is enabled until V
o = 10% of Vo, set)
All Tdelay 2 msec
Output voltage Rise time (time for Vo to rise from
10% of Vo, set to 90% of Vo, set
)
All Trise
4 msec
Output voltage overshoot (T
A
= 25
o
C 3.0 % V
O, set
V
IN
= V
IN, min
to V
IN, max
,I
O
= I
O, min
to I
O, max
)
With or without maximum external capacitance
Over Temperature Protection All T
ref
140 °C
(See Thermal Considerations section)
Tracking Accuracy (Power-Up: 2V/ms) APTS VSEQ –Vo 100 mV
(Power-Down: 2V/ms) APTS VSEQ –Vo 100 mV
(V
IN, min
to V
IN, max
; I
O, min
to I
O, max
VSEQ
< Vo)
Data Sheet
September 4, 2009
12V Pico TLynx
TM
6A: Non-isolated DC-DC Power Modules
4.5 – 14Vdc input; 0.59Vdc to 5.5Vdc output; 6A output current
LINEAGE POWER 5
Feature Specifications (cont.)
Parameter Device Symbol Min Typ Max Units
Input Undervoltage Lockout
Turn-on Threshold All
4.0 Vdc
Turn-off Threshold All
3.6 Vdc
Hysteresis All
0.4 Vdc
PGOOD (Power Good)
Signal Interface Open Drain, V
supply
5VDC
Output Voltage Limit for PGOOD All
90% 110% V
O, set
Pulldown resistance of PGOOD pin All
7 50
Ω
Data Sheet
September 4, 2009
12V Pico TLynx
TM
6A: Non-isolated DC-DC Power Modules
4.5 – 14Vdc input; 0.59Vdc to 5.5Vdc output; 6A output current
LINEAGE POWER 6
Characteristic Curves
The following figures provide typical characteristics for the 12V Pico TLynx
TM
6A at 0.6Vo and at 25
o
C.
60
65
70
75
80
85
0123456
Vin=14V
Vin=12V
Vin=4.5V
2
3
4
5
6
7
55 65 75 85 95 105
NC
0.5m/s
(100LFM)
1m/s
(200LFM)
2m/s
(400LFM)
Standard Part
(85
°
C)
Ruggedized (D)
Part (105
°
C)
EFFICIENCY, η (%)
OUTPUT CURRENT, I
O
(A)
OUTPUT CURRENT, Io (A)
AMBIENT TEMPERATURE, T
A
O
C
Figure 1. Converter Efficiency versus Output Current.
Figure 2. Derating Output Current versus Ambient
Temperature and Airflow.
OUTPUT VOLTAGE
V
O
(V) (10mV/div)
TIME, t (1μs/div)
OUTPUT CURRENT, OUTPUT VOLTAGE
I
O
(A) (2Adiv) V
O
(V) (200mV/div)
TIME, t (20μs /div)
Figure 3. Typical output ripple and noise (V
IN = 12V, Io =
I
o,max).
Figure 4. Transient Response to Dynamic Load
Change from 0% to 50% to 0% .
ON/OFF VOLTAGE OUTPUT VOLTAGE
V
ON/OFF
(V) (5V/div) V
O
(V) (200mV/div)
TIME, t (2 ms/div)
INPUT VOLTAGE OUTPUT VOLTAGE
V
IN
(V) (5V/div) V
O
(V) (200mV/div)
TIME, t (2 ms/div)
Figure 5. Typical Start-up Using On/Off Voltage (Io =
I
o,max).
Figure 6. Typical Start-up Using Input Voltage (V
IN =
12V, I
o = Io,max).
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