
P715.D (9/13)1pulseelectronics.com
SMT POWER INDUCTORS
Power Beads - PA314xAHL Series Coupled Inductor
8mm Coupled Inductors for Volterra Gen2.5 Applications
For use only with Volterra chipsets
Coupled Inductors enable:
• Phase ripple current reduction due to AC
magnetic field cancellation within the
inductor core.
• Improved efficiency due to lower peak
currents
• Reduction in required output capacitance
Electrical Specifications @ 25°C - Operating Temperature -40°C to +130°C
Part Number Number of
Coupled Phases
Series
Inductance
(nH +/- 15%)
Equivalent
Transient
(nH)
Irms_TDC
(Adc)
Imax Peak3
per Phase
(Adc)
Open Circuit Inductance4,5 per Phase (nH)
Phase 1
(2-1) Phase 2
(4-3) Phase 3
(6-5) Phase 4
(8-7) Phase 5
(10-9) DCR per Phase6
(mΩ)
PA3142AHL 2 100
50 40 110
200nH Min at 0Adc (25C)
150nH Min at 25Adc (25C)
100nH Min at 23Adc (105C) na na na
0.25 Typical
0.30 Max
PA3143AHL 3 150 200nH Min at 0Adc (25C)
150nH Min at 25Adc (25C)
100nH Min at 23Adc (105C) na na
PA3144AHL 4 200 200nH Min at 0Adc (25C)
150nH Min at 25Adc (25C)
100nH Min at 23Adc (105C) na
PA3145AHL 5 250 200nH Min at 0Adc (25C)
150nH Min at 25Adc (25C)
100nH Min at 23Adc (105C)
Notes:
1. The series inductance is the inductance when all phases are tied in series and is measured and verified in
production at 100khz, 100mVrms:
(ie: for PA3144AHL: Inductance (2-7) with (1-4 and 3-6 and 5-8 shorted) )
2. In a non-coupled multi-phase topology, the power supply sees the same inductance during transient and
steady-state conditions. As a result, any attempt to lower the inductance to improve transient response has the
negative result of increasing ripple and peak currents throughout the system during steady-state operation.
However, in a coupled inductor multi-phase topology, the interaction of magnetic fields from each phase
enables an overall reduction in ripple current during steady-state operation and a lower equivalent inductance
during transient operation. The equivalent transient inductance per phase, as listed, represents the actual value
of inductance (Lk) that would be required in an non-coupled topology to realize the same transient perfor-
mance. The equivalent inductance per phase can be calculated as series inductance divided by the number of
phases. For more information on the operation of the coupled inductor topology, please contact Volterra.
3. The rated current (Irms_TDC) is the continuous current which results in a 55° C rise of the component temperature
above the ambient temperature (Conditions: Ta=55° C; 200LFM airflow; Tested on a Volterra evaluation board).
The peak current (Imax) is the current which causes a 20% reduction of the leakage inductance compared to no
load conditions at 105° C.
4. The open-circuit inductance per phase is the measured inductance across each phase when all other phases
are open circuit. Open circuit inductance is measured at 100kHz, 100mVrms. The open circuit inductance is equal
to the magnetizing inductance per phase (Lm) plus the equivalent transient inductance (Lk). The open circuit
inductance values at 25C (0Adc and 26 Adc) are measured and verified during production.
5. All elevated temperature measurements were verified during design but are not measured during production
and therefore are for reference only.
6. DCR is measured between points a and b as shown on the mechanical drawing.
7. Optional tape and reel packaging can be ordered by adding a T sux to the part number (ie: PA3144AHL
becomes PA3144AHLT). Pulse complies to the industry standard tape and reel specification EIA481. The tape
and reel for this product has the following dimensions:
PA3142AHL: W=32.0, Po =16.0, Ko = 8.0
PA3143AHL: W=44.0, Po = 16.0, Ko =7.6
PA3144AHL: W=56.0, Po=16.0, Ko=7.6
PA3145AHL: W=72, Po=16.0, Ko=8.0