LTC4000-1
4
40001fa
For more information www.linear.com/LTC4001-1
elecTrical characTerisTics
The l denotes the specifications which apply over the full operating
junction temperature range, otherwise specifications are at T
A
= 25°C. V
IN
= V
CLN
= 3V to 60V unless otherwise noted (Notes 2, 3).
SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS
Charge Termination
CX Pin Pull-Up Current V
CX
= 0.1V
l
–5.5 –5.0 –4.5 µA
V
CX,IBMON(OS)
CX Comparator Offset Voltage, IBMON Falling V
CX
= 0.1V
l
0.5 10 25 mV
V
CX,IBMON(HYS)
CX Comparator Hysteresis Voltage 5 mV
TMR Pull-Up Current V
TMR
= 0V –5.0 μA
TMR Pull-Down Current V
TMR
= 2V 5.0 μA
TMR Pin Frequency C
TMR
= 0.01μF 400 500 600 Hz
TMR Threshold for CX Termination
l
2.1 2.5 V
t
T
Charge Termination Time C
TMR
= 0.1μF
l
2.3 2.9 3.5 h
t
T
/t
BB
Ratio of Charge Terminate Time to Bad Battery
Indicator Time
C
TMR
= 0.1μF
l
3.95 4 4.05 h/h
V
NTC(COLD)
NTC Cold Threshold V
NTC
Rising, % of V
BIAS
l
73 75 77 %
V
NTC(HOT)
NTC Hot Threshold V
NTC
Falling, % of V
BIAS
l
33 35 37 %
V
NTC(HYS)
NTC Thresholds Hysteresis % of V
BIAS
5 %
V
NTC(OPEN)
NTC Open Circuit Voltage % of V
BIAS
l
45 50 55 %
R
NTC(OPEN)
NTC Open Circuit Input Resistance 300
Voltage Monitoring and Open Drain Status Pins
V
VM(TH)
VM Input Falling Threshold
l
1.176 1.193 1.204 V
V
VM(HYS)
VM Input Hysteresis 40 mV
VM Input Current V
VM
= 1.2V ±0.1 µA
I
RST,CHRG,F LT (LKG)
Open Drain Status Pins Leakage Current V
PIN
= 60V ±1 µA
V
RST,CHRG,F LT (VOL)
Open Drain Status Pins Voltage Output Low I
PIN
= 1mA
l
0.4 V
Input PowerPath Control
Input PowerPath Forward Regulation Voltage V
IID,CSP
, 3V ≤ V
CSP
≤ 60V
l
0.1 8 20 mV
Input PowerPath Fast Reverse Turn-Off
Threshold Voltage
V
IID,CSP
, 3V ≤ V
CSP
≤ 60V,
V
IGATE
= V
CSP
– 2.5V,
∆I
IGATE
/∆ V
IID,CSP
≥ 100μA/mV
l
–90 –50 –20 mV
Input PowerPath Fast Forward Turn-On
Threshold Voltage
V
IID,CSP
, 3V ≤ V
CSP
≤ 60V,
V
IGATE
= V
IID
– 1.5V,
∆I
IGATE
/∆ V
IID,CSP
≥ 100μA/mV
l
40 80 130 mV
Input Gate Turn-Off Current V
IID
= V
CSP
, V
IGATE
= V
CSP
– 1.5V –0.3 μA
Input Gate Turn-On Current V
CSP
= V
IID
– 20mV,
V
IGATE
= V
IID
– 1.5V
0.3 μA
I
IGATE(FASTOFF)
Input Gate Fast Turn-Off Current V
CSP
= V
IID
+ 0.1V,
V
IGATE
= V
CSP
– 5V
–0.5 mA
I
IGATE(FASTON)
Input Gate Fast Turn-On Current V
CSP
= V
IID
– 0.2V,
V
IGATE
= V
IID
– 1.5V
0.7 mA
V
IGATE(ON)
Input Gate Clamp Voltage I
IGATE
= 2µA, V
IID
= 12V to 60V,
V
CSP
= V
IID
– 0.5V, Measure
V
IID
– V
IGATE
l
13 15 V
Input Gate Off Voltage I
IGATE
= – 2μA, V
IID
= 3V to 59.5V,
V
CSP
= V
IID
+ 0.5V, Measure
V
CSP
– V
IGATE
l
0.45 0.7 V
LTC4000-1
5
40001fa
For more information www.linear.com/LTC4001-1
Note 1: Stresses beyond those listed under Absolute Maximum Ratings
may cause permanent damage to the device. Exposure to any Absolute
Maximum Rating condition for extended periods may affect device
reliability and lifetime.
Note 2: The LTC4000-1 is tested under conditions such that T
J
≈ T
A
.
The LTC4000E-1 is guaranteed to meet specifications from 0°C to 85°C
junction temperature. Specifications over the –40°C to 125°C operating
junction temperature range are assured by design, characterization
and correlation with statistical process controls. The LTC4000I-1 is
guaranteed over the full –40°C to 125°C operating junction temperature
range. Note that the maximum ambient temperature consistent with
elecTrical characTerisTics
The l denotes the specifications which apply over the full operating
junction temperature range, otherwise specifications are at T
A
= 25°C. V
IN
= V
CLN
= 3V to 60V unless otherwise noted (Notes 2, 3).
SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS
Battery PowerPath Control
Battery Discharge PowerPath Forward
Regulation Voltage
V
BAT,CSN
, 2.8V ≤ V
BAT
≤ 60V
l
0.1 8 20 mV
Battery PowerPath Fast Reverse Turn-Off
Threshold Voltage
V
BAT,CSN
, 2.8V ≤ V
BAT
≤ 60V, Not
Charging, V
BGATE
= V
CSN
– 2.5V,
∆I
BGATE
/∆V
BAT,CSN
≥ 100μA/mV
l
–90 –50 –20 mV
Battery PowerPath Fast Forward Turn-On
Threshold Voltage
V
BAT,CSN
, 2.8V ≤ V
CSN
≤ 60V,
V
BGATE
= V
BAT
– 1.5V,
∆I
BGATE
/∆ V
BAT,CSN
≥ 100μA/mV
l
40 80 130 mV
Battery Gate Turn-Off Current V
BGATE
= V
CSN
– 1.5V, V
CSN
≥ V
BAT
,
V
OFB
< V
OUT(INST_ON)
and Charging
in Progress, or V
CSN
= V
BAT
and Not
Charging
–0.3 μA
Battery Gate Turn-On Current V
BGATE
= V
BAT
– 1.5V, V
CSN
≥ V
BAT
,
V
OFB
> V
OUT(INST_ON)
and Charging in
Progress, or V
CSN
= V
BAT
– 20mV
0.3 μA
I
BGATE(FASTOFF)
Battery Gate Fast Turn-Off Current V
CSN
= V
BAT
+ 0.1V and Not
Charging, V
BGATE
= V
CSN
– 5V
–0.5 mA
I
BGATE(FASTON)
Battery Gate Fast Turn-On Current V
CSN
= V
BAT
– 0.2V,
V
BGATE
= V
BAT
– 1.5V
0.7 mA
V
BGATE(ON)
Battery Gate Clamp Voltage I
BGATE
= 2μA, V
BAT
= 12V to 60V,
V
CSN
= V
BAT
– 0.5V, Measure
V
BAT
– V
BGATE
l
13 15 V
Battery Gate Off Voltage I
BGATE
= – 2μA, V
BAT
= 2.8V to 59.5V,
V
CSN
= V
BAT
+ 0.5V and not Charging,
Measure V
CSN
– V
BGATE
l
0.45 0.7 V
BIAS Regulator Output and Control Pins
V
BIAS
BIAS Output Voltage No Load
l
2.4 2.9 3.5 V
∆V
BIAS
BIAS Output Voltage Load Regulation I
BIAS
= – 0.5mA –0.5 –10 %
BIAS Output Short-Circuit Current V
BIAS
= 0V –20 mA
Transconductance of Error Amp CC = 1V 0.5 mA/V
Open Loop DC Voltage Gain of Error Amp CC = Open 80 dB
I
ITH(PULL_UP)
Pull-Up Current on the ITH Pin V
ITH
= 0V, CC = 0V –6 –5 –4 μA
I
ITH(PULL_DOWN)
Pull-Down Current on the ITH Pin V
ITH
= 0.4V, CC = Open
l
0.5 1 mA
Open Loop DC Voltage Gain of ITH Driver ITH = Open 60 dB
these specifications is determined by specific operating conditions in
conjunction with board layout, the rated package thermal impedance
and other environmental factors. The junction temperature (T
J
, in °C) is
calculated from the ambient temperature (T
A
, in °C) and power dissipation
(P
D
, in Watts) according to the following formula:
T
J
= T
A
+ (P
D
θ
JA
), where θ
JA
(in °C/W) is the package thermal
impedance.
Note 3: All currents into pins are positive; all voltages are referenced to
GND unless otherwise noted.
Note 4: These parameters are guaranteed by design and are not 100%
tested.
LTC4000-1
6
40001fa
For more information www.linear.com/LTC4001-1
Typical perForMance characTerisTics
Battery Thresholds: Rising Recharge,
Instant-On Regulation and Falling Low
Battery As a Percentage of Battery
Float Feedback Over Temperature
CL Pull-Up Current Over
Temperature
Maximum Programmable Current
Limit Voltage Over Temperature
Input Quiescent Current and
Battery Quiescent Current Over
Temperature
Battery Only Quiescent Current
Over Temperature
Input Voltage Regulation Feedback,
Battery Float Voltage Feedback, Output
Voltage Regulation Feedback and VM
Falling Threshold Over Temperature
TEMPERATURE (°C)
–60
I
BAT
(µA)
100
0.1
0.01
10
1
0.001
10020
40001 G02
14040 60 80–20 0–40 120
V
BAT
= 3V
V
BAT
= 60V
V
BAT
= 15V
TEMPERATURE (°C)
–60
PIN VOLTAGE (V)
1.20
1.12
1.18
1.16
1.14
1.00
1.02
1.08
1.06
1.04
1.00
10020
40001 G03
14040 60 80–20 0–40 120
V
BFB_REG
V
IFB_REG
V
VM(TH)
V
OFB_REG
TEMPERATURE (°C)
–60
V
IBMON
(V)
1.015
1.010
0.995
1.000
0.990
1.005
0.985
10020
40001 G06
14040 60 80–20 0–40 120
TEMPERATURE (°C)
–60
PERCENT OF V
BFB_REG
(%)
100
85
95
90
65
75
80
70
60
10020
40001 G04
14040 60 80–20 0–40 120
V
LOBAT
V
RECHRG(RISE)
V
OUT(INST_ON)
TEMPERATURE (°C)
–60
I
CL
(µA)
–45.0
–47.5
–52.5
–50.0
–55.0
10020
40001 G05
14040 60 80–20 0–40 120
TEMPERATURE (°C)
–60 –20–40
I
IN
/I
BAT
(mA)
0.1
0
80 10020 40
40001 G01
140600 120
I
IN
I
BAT
V
IN
= V
BAT
= 15V
V
CSN
= 15.5V
CX Comparator Offset Voltage with
V
IBMON
Falling Over Temperature
TEMPERATURE (°C)
–60
V
OS
(µV)
300
200
–100
0
–200
100
–300
10020
40001 G07
14040 60 80–20 0–40 120
V
OS(CSP, CSN)
V
OS(IN, CSN)
V
MAX(IN,CLN)
= V
MAX(CSP, CSN)
= 15V
Current Sense Offset Voltage Over
Common Mode Voltage Range
Current Sense Offset Voltage
Over Temperature
V
MAX(IN, CLN)
/V
MAX(CSP, CSN)
(V)
0
V
OS
(µV)
300
200
–100
0
–200
100
–300
40001 G08
6030 40 5020103
V
OS(CSP, CSN)
V
OS(IN, CSN)
TEMPERATURE (°C)
–60
V
CX,IBMON
(mV)
20
19
5
6
7
4
9
10
8
18
17
16
15
14
13
12
11
3
10020
40001 G09
14040 60 80–20 0–40 120

LTC4000IUFD-1#TRPBF

Mfr. #:
Manufacturer:
Analog Devices / Linear Technology
Description:
Battery Management High Voltage, High Current Controller for Battery Charging and Power Management
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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