HT1117-25 HOLTEK [Holtek Semiconductor Inc], HT1117-25 Datasheet - Page 3

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HT1117-25

Manufacturer Part Number
HT1117-25
Description
1A General Purpose LDO
Manufacturer
HOLTEK [Holtek Semiconductor Inc]
Datasheet
Electrical Characteristics
Note:
Rev. 1.00
V
V
DV
DV
V
I
I
I
RR
D
LIMIT
ADJ
SS
Symbol
REF
OUT
DIF
D
LOAD
LINE
1. Specifications are production tested at room temperature, Ta. Specifications within the -40°C to 85°C
2. Load regulation is measured at a constant junction temperature, using pulse testing with a low ON time and
3. Dropout voltage is defined as the input voltage minus the output voltage that produces a 2% change in the
4. Current limit is measured by pulsing for a short time.
differential voltage and the output current. Guaranteed maximum power dissipation will not be available over
Controls (SQC).
is guaranteed up to the maximum power dissipation. Power dissipation is determined by the input/output
the full input/output range. The maximum allowable power dissipation at any ambient temperature is
P
output voltage from the value at V
operating temperature range are assured by design, characterization and correlation with Statistical Quality
D
Reference Voltage
Output Voltage
Load Regulation (see note 2)
Line Regulation
Dropout Voltage (see note 3)
Current Limit (see note 4)
Adjust Pin Current
(Variable Version)
Quiescent Current
(Fixed Version)
Ripple Rejection
Temperature Coefficient
= (T
J(MAX)
Parameter
- Ta) / q
JA
.
T
J
=25°C, V
IN
2.75V £ V
HT1117-18
HT1117-25
HT1117-28
HT1117-33
HT1117-50
10mA £ I
2.75V £ V
DV
DV
2.75V £ V
2.75V £ V
120Hz input ripple
C
-40°C<Ta<85°C
= V
OUT
OUT
OUT
Test Conditions
OUT
=22mF
IN
=2%, I
=10%
=V
+1.5V with a fixed load.
OUT
IN
IN
IN
IN
OUT
3
£ 12V
£ 12V
£ 12V
£ 12V
OUT
£ 1A
+1.5V, I
=1A
O
=10mA, unless otherwise specified (see note 1)
1.225
1.764
2.793
3.234
Min.
2.45
4.90
¾
¾
¾
¾
¾
¾
1
1
1.250
1.800
2.850
3.300
0.015
Typ.
2.50
5.00
±0.4
1.1
2.3
55
60
¾
8
HT1117 Series
1.275
1.836
2.907
3.366
0.150
Max.
2.55
5.10
120
1.3
30
13
¾
¾
¾
August 7, 2007
mV/°C
Unit
%/V
mV
mA
mA
dB
V
V
V
V
V
V
V
A

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