LTC3704EMS Linear Technology, LTC3704EMS Datasheet - Page 3

IC INV SYNC 5.2V 50MA 10MSOP

LTC3704EMS

Manufacturer Part Number
LTC3704EMS
Description
IC INV SYNC 5.2V 50MA 10MSOP
Manufacturer
Linear Technology
Type
Invertingr
Datasheet

Specifications of LTC3704EMS

Internal Switch(s)
No
Synchronous Rectifier
No
Number Of Outputs
1
Voltage - Output
-5.2V
Current - Output
50mA
Frequency - Switching
50kHz ~ 1MHz
Voltage - Input
2.5 ~ 36 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
10-MSOP, Micro10™, 10-uMAX, 10-uSOP
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Power - Output
-

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The
V
SYMBOL
Oscillator
f
D
f
t
t
V
V
R
V
Low Dropout Regulator
V
ΔV
ΔV
V
V
I
GATE Driver
t
t
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
reliabilty and lifetime.
Note 2: The LTC3704E is guaranteed to meet performance specifications
from 0°C to 85°C. Specifications over the – 40°C to 85°C operating
temperature range are assured by design, characterization and correlation
with statistical process controls. The LTC3704I is guaranteed over the full
–40°C to 125°C operating temperature range.
Note 3: T
dissipation P
ELECTRICAL CHARACTERISTICS
OSC
SYNC/
SYNC(MIN)
SYNC(MAX)
INTVCC
r
f
IN
IL(MODE)
IH(MODE)
FREQ
INTVCC
LDO(LOAD)
DROPOUT
MAX
MODE/SYNC
ΔV
ΔV
INTVCC
INTVCC
T
= V
IN1
IN2
J
f
= T
OSC
denotes specifications which apply over the full operating temperature range, otherwise specifications are at T
INTVCC
J
A
is calculated from the ambient temperature T
+ (P
D
PARAMETER
Oscillator Frequency
Oscillator Frequency Range
Maximum Duty Cycle
Recommended Maximum Synchronized
Frequency Ratio
MODE/SYNC Minimum Input Pulse Width
MODE/SYNC Maximum Input Pulse Width
Low Level MODE/SYNC Input Voltage
High Level MODE/SYNC Input Voltage
MODE/SYNC Input Pull-Down Resistance
Nominal FREQ Pin Voltage
INTV
INTV
INTV
INTV
INTV
Bootstrap Mode INTV
Current in Shutdown
GATE Driver Output Rise Time
GATE Driver Output Fall Time
according to the following formula:
= 5V, V
D
• 120°C/W)
CC
CC
CC
CC
CC
Regulator Output Voltage
Regulator Line Regulation
Regulator Line Regulation
Load Regulation
Regulator Dropout Voltage
RUN
= 1.5V, R
CC
Supply
FREQ
= 80k, V
MODE/SYNC
A
and power
CONDITIONS
R
f
V
V
V
7.5V ≤ V
15V ≤ V
V
V
RUN = 0V, SENSE = 5V
C
C
= 0V, unless otherwise specified.
OSC
SYNC
SYNC
IN
IN
INTVCC
L
L
FREQ
= 3300pF (Note 7)
= 3300pF (Note 7)
= 7.5V
= 7.5V, 0 ≤ I
= 300kHz (Note 6)
= 80k
= 0V to 5V
= 0V to 5V
IN
= Open, INTV
IN
≤ 30V
≤ 15V
Note 4: The dynamic input supply current is higher due to power MOSFET
gate charging (Q
Note 5: The LTC3704 is tested in a feedback loop that servos V
reference voltage with the I
(the no load to full load operating voltage range for the I
1.23V).
Note 6: In a synchronized application, the internal slope compensation
gain is increased by 25%. Synchronizing to a significantly higher ratio will
reduce the effective amount of slope compensation, which could result in
subharmonic oscillation for duty cycles greater than 50%.
Note 7: Rise and fall times are measured at 10% and 90% levels.
INTVCC
CC
≤ 20mA
Load = 20mA
G
• f
OSC
). See Applications Information.
TH
pin forced to a voltage between 0V and 1.4V
MIN
250
1.2
5.0
87
– 2
50
0.8/f
1.25
0.62
– 0.2
TYP
300
280
5.2
92
25
50
70
10
17
8
8
OSC
LTC3704
A
TH
= 25°C.
1000
MAX
1.30
350
200
100
100
pin is 0.3V to
0.3
5.4
97
25
20
NFB
to the
UNITS
3704fb
3
kHz
kHz
mV
mV
mV
μA
ns
ns
ns
ns
%
%
V
V
V
V

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