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BCM384P120M800AC0 Datasheet(PDF) 5 Page - Vicor Corporation

No. de pieza BCM384P120M800AC0
Descripción Electrónicos  Fixed Ratio DC-DC Converter
Download  25 Pages
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Fabricante Electrónico  VICOR [Vicor Corporation]
Página de inicio  http://www.vicorpower.com
Logo VICOR - Vicor Corporation

BCM384P120M800AC0 Datasheet(HTML) 5 Page - Vicor Corporation

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BCM® Bus Converter
Rev 1.2
vicorpower.com
Page 5 of 25
07/2015
800 927.9474
BCM384x120y800ACz
Electrical Specifications
Specifications apply over all line and load conditions, unless otherwise noted;
Boldface specifications apply over the temperature range of -40°C ≤ TINTERNAL
≤ 125°C (T-Grade); All other specifications are at TINTERNAL = 25ºC unless otherwise noted.
Attribute
Symbol
Conditions / Notes
Min
Typ
Max
Unit
General Powetrain PRIMARY to SECONDARY Specification (Forward Direction)
Primary Input Voltage range,
continuous
VPRI_DC
260
410
V
VPRI µController
VµC_ACTIVE
VPRI_DC voltage where µC is initialized,
(ie VAUX = Low, powertrain inactive)
130
V
PRI to SEC Input Quiescent Current
IPRI_Q
Disabled, EN Low, VPRI_DC = 384 V
2
mA
TINTERNAL ≤ 100ºC
4
PRI to SEC No Load Power
Dissipation
PPRI_NL
VPRI_DC = 384 V, TINTERNAL = 25ºC
9.3
13
W
VPRI_DC = 384 V
5
20
VPRI_DC = 260 V to 410 V, TINTERNAL = 25 ºC
16
VPRI_DC = 260 V to 410 V
22
PRI to SEC Inrush Current Peak
IPRI_INR_PK
VPRI_DC = 410 V, CSEC_EXT = 1000
µF, RLOAD_SEC = 50%
of full load current
10
A
TINTERNAL ≤ 100ºC
15
DC Primary Input Current
IPRI_IN_DC
At ISEC_OUT_DC = 68 A, TINTERNAL ≤ 100ºC
2.2
A
Transformation Ratio
K
Primary to secondary, K = VSEC_DC / VPRI_DC, at no load
1/32
V/V
Secondary Output Power
(continuous)
PSEC_OUT_DC
Specified at VPRI_DC = 410 V
800
W
Secondary Output Power (pulsed)
PSEC_OUT_PULSE
Specified at VPRI_DC = 410 V; 10 ms pulse, 25% Duty
cycle, PSEC_AVG = 50% rated PSEC_OUT_DC
1100
W
Secondary Output Current
(continuous)
ISEC_OUT_DC
68
A
Secondary Output Current (pulsed)
ISEC_OUT_PULSE
10 ms pulse, 25% Duty cycle, ISEC_OUT_AVG = 50% rated
ISEC_OUT_DC
91
A
PRI to SEC Efficiency (ambient)
ηAMB
VPRI_DC = 384 V, ISEC_OUT_DC = 68 A
96.2
97.2
%
VPRI_DC = 260 V to 410 V, ISEC_OUT_DC = 68 A
95.7
VPRI_DC = 384 V, ISEC_OUT_DC = 34 A
96.3
97
PRI to SEC Efficiency (hot)
ηHOT
VPRI_DC = 384 V, ISEC_OUT_DC = 68 A
96
97
%
PRI to SEC Efficiency
(over load range)
η20%
14 A < ISEC_OUT_DC < 68 A
90
%
PRI to SEC Output Resistance
RSEC_COLD
VPRI_DC = 384 V, ISEC_OUT_DC = 68 A, TINTERNAL = -40°C
1.0
1.65
2.2
RSEC_AMB
VPRI_DC = 384 V, ISEC_OUT_DC = 68 A
1.6
2.3
2.9
RSEC_HOT
VPRI_DC = 384 V, ISEC_OUT_DC = 384 A, TINTERNAL = 100°C
2.3
2.9
3.4
Switching Frequency
FSW
Frequency of the Output Voltage Ripple = 2x FSW
0.97
1.03
1.09
MHz
Secondary Output Voltage Ripple
VSEC_OUT_PP
CSEC_EXT = 0
µF, ISEC_OUT_DC = 68 A, VPRI_DC = 384 V,
20 MHz BW
210
mV
TINTERNAL ≤ 100ºC
300
Primary Input Leads Inductance
(Parasitic)
LPRI_IN_LEADS
Frequency 2.5 MHz (double switching frequency),
Simulated lead model
7
nH
Secondary Output Leads Inductance
(Parasitic)
LSEC_OUT_LEADS
Frequency 2.5 MHz (double switching frequency),
Simulated lead model
0.64
nH


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