参数资料
型号: LTC3865EFE#PBF
厂商: Linear Technology
文件页数: 4/38页
文件大小: 0K
描述: IC REG CTRLR BUCK PWM CM 38TSSOP
特色产品: LTC3865 Dual Synchronous Controllers
标准包装: 50
系列: PolyPhase®
PWM 型: 电流模式
输出数: 2
频率 - 最大: 880kHz
占空比: 95%
电源电压: 4.5 V ~ 38 V
降压:
升压:
回扫:
反相:
倍增器:
除法器:
Cuk:
隔离:
工作温度: -40°C ~ 125°C
封装/外壳: 38-TFSOP (0.173",4.40mm 宽)裸露焊盘
包装: 管件
产品目录页面: 1336 (CN2011-ZH PDF)
LTC3865/LTC3865-1
ELECTRICAL CHARACTERISTICS The l denotes the speci?cations which apply over the full operating
junction temperature range, otherwise speci?cations are at T A = 25°C (Note 2). V IN = 15V, V RUN1,2 = 5V unless otherwise noted.
SYMBOL
PARAMETER
CONDITIONS
MIN
TYP
MAX
UNITS
Main Control Loops
V IN
Input Voltage
4.5
38
V
V OSENSE1,2
I OSENSE1,2
V REFLNREG
V LOADREG
Output Voltage Sensing (E-Grade)
Output Voltage Sensing (I-Grade)
Feedback Current
Reference Voltage Line Regulation
Output Voltage Load Regulation
(Note 4) I TH1,2 Voltage = 1.2V
VID11 = VID21 = GND, VID12 = VID22 = GND
VID11 = VID21 = GND, VID12 = VID22 = Float
VID11 = VID21 = GND, VID12 = VID22 = INTV CC
VID11 = VID21 = Float, VID12 = VID22 = GND
VID11 = VID21 = Float, VID12 = VID22 = Float
VID11 = VID21 = Float, VID12 = VID22 = INTV CC
VID11 = VID21 = INTV CC , VID12 = VID22 = GND
VID11 = VID21 = INTV CC , VID12 = VID22 = Float
VID11 = VID21 = INTV CC , VID12 = VID22 = INTV CC
(Note 4) I TH1,2 Voltage = 1.2V
VID11 = VID21 = GND, VID12 = VID22 = GND
VID11 = VID21 = GND, VID12 = VID22 = Float
VID11 = VID21 = GND, VID12 = VID22 = INTV CC
VID11 = VID21 = Float, VID12 = VID22 = GND
VID11 = VID21 = Float, VID12 = VID22 = Float
VID11 = VID21 = Float, VID12 = VID22 = INTV CC
VID11 = VID21 = INTV CC , VID12 = VID22 = GND
VID11 = VID21 = INTV CC , VID12 = VID22 = Float
VID11 = VID21 = INTV CC , VID12 = VID22 = INTV CC
(Note 4) VID11 = VID21 = VID12 = VID22 = Float
V IN = 4.5V to 38V (Note 4)
(Note 4)
Measured in Servo Loop; Δ I TH Voltage = 1.2V to 0.7V
Measured in Servo Loop; Δ I TH Voltage = 1.2V to 1.6V
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
1.089
0.990
1.188
1.485
0.596
1.782
2.463
3.251
4.925
1.084
0.985
1.182
1.478
0.593
1.773
2.450
3.234
4.900
1.100
1.000
1.200
1.500
0.602
1.800
2.500
3.300
5.000
1.100
1.000
1.200
1.500
0.602
1.800
2.500
3.300
5.000
–10
0.002
0.01
–0.01
1.111
1.010
1.212
1.515
0.608
1.818
2.538
3.350
5.075
1.117
1.015
1.218
1.523
0.611
1.827
2.550
3.366
5.100
–50
0.02
0.1
–0.1
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
nA
%/V
%
%
g m1,2
I Q
Transconductance Ampli?er g m
Input DC Supply Current
Normal Mode
I TH1,2 = 1.2V; Sink/Source 5μA; (Note 4)
(Note 5)
V IN = 15V
2.2
3
mmho
mA
Shutdown
V RUN1,2 = 0V
30
50
μA
UVLO
UVLO HYS
Undervoltage Lockout on INTV CC
UVLO Hysteresis
V INTVCC Ramping Down
3.3
0.55
V
V
V OVL
I SENSE
DF MAX
I TK/SS1,2
V RUN1,2
Feedback Overvoltage Lockout
Sense Pins Total Current
Maximum Duty Cycle
Soft-Start Charge Current
RUN Pin On Threshold
Measured at V OSENSE1,2 with VID Pins Floating
(Each Channel); V SENSE1,2 = 3.3V
In Dropout
V TK/SS1,2 = 0V
V RUN1 , V RUN2 Rising
l
l
0.64
94
0.9
1.1
0.66
±1
95
1.3
1.22
0.68
±2
1.7
1.35
V
μA
%
μA
V
V RUN1,2HYS
I RUN1,2HYS
RUN Pin On Hysteresis
RUN Pin Current Hysteresis
80
4.5
mV
μA
V SENSE(MAX) Maximum Current Sense Threshold
(E-Grade)
Maximum Current Sense Threshold
(I-Grade)
TG Driver Pull-Up On-Resistance
TG R UP
TG Driver Pull-Down On-Resistance
TG R DOWN
BG Driver Pull-Up On-Resistance
BG R UP
V ITH1,2 = 3.3V, I LIM = 0V
V ITH1,2 = 3.3V, I LIM = Float (Note 8)
V ITH1,2 = 3.3V, I LIM = INTV CC
In Overvoltage Condition
V ITH1,2 = 3.3V, I LIM = 0V
V ITH1,2 = 3.3V, I LIM = Float (Note 8)
V ITH1,2 = 3.3V, I LIM = INTV CC
In Overvoltage Condition
TG High
TG Low
BG High
l
l
l
l
l
l
l
l
24
44
68
–63
22
42
66
–65
30
50
75
–53
30
50
75
–53
2.6
1.5
3
36
56
82
–43
38
58
84
–41
mV
mV
mV
mV
mV
mV
mV
mV
Ω
Ω
Ω
3865fb
4
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