CYStech Electronics Corp.
Spec. No. : C513L3
Issued Date : 2003.04.09
Revised Date :2005.05.03
Page No. : 2/9
LM317L3 CYStek Product Specification
Maximum Ratings
Rating Symbol Value Unit
Input-Output Voltage Differential VI-VO40 V
Power Dissipation
TA=25℃ PD Internally Limited W
Operating Junction Temperature Range TJ -40 to +125 ℃
Storage Temperature Range Tstg -65 to +150 ℃
Electrical Characteristics(VI-VO=5V,IO=0.5A,TJ=0 to 125℃, unless otherwise noted)
Characteristics Symbol Conditions Min Typ Max Unit
Line Regulation(Note 1) Reg line TA=25℃,3.0VVI-VO40V - 0.01 0.04 %/V
Load Regulation(Note 1) Reg load TA=25℃,10mAIO1.5A
VO5.0V
VO5.0V
-
-
5.0
0.1
25
0.5
mV
%VO
Thermal Regulation(Note 4) Reg therm TA=25℃, 20ms pulse - 0.03 0.07 %VO/W
Adjust Pin Current IAdj - 50 100 µA
Adjust Pin Current Change IAdj 2.5VVI-VO40V,10mAIL1.5A
PD5W
- 0.2 5.0 µA
Reference Voltage Vref 3.0VVI-VO40V,10mAIO1.5A
PD5W
1.2 1.25 1.3 V
Temperature Stability Ts 0TJ125℃ - 0.7 - %VO
Minimum Load Current to
maintain Regulation
ILmin VI-VO=40V - 3.5 10 mA
Maximum Output Current Imax VI-VO15V,PD5W
VI-VO40V,PD5W,TA=25℃
1. 5
0.15
2.2
0.4
-
-
A
RMS Noise N % of VO,TA=25℃,10Hzf10kHz - 0.003 - %VO
Ripple Rejection(Note 2) RR VO=10V,f=120Hz
Without CAdj
CAdj=10µF
-
66
65
80
-
-
dB
Long-Term Stability(Note 3) S TJ=125℃,TA=25℃ for endpoint
measurements
- 0.3 1.0 %/1.0k
Hrs
Notes:1.Load and line regulation are specified at constant junction temperature. Changes in VO due to heating effects must be
taken into account separately. Pulse testing with low duty cycle is used.
2.CAdj, when used, is connected between the adjustment pin and ground.
3.Since long-term stability cannot be measured on each device before shipment, this specification is an engineering
estimate of average stability from lot to lot.
4.Power dissipation within an IC voltage regulator produces a temperature gradient on the die, affecting individual IC
components on the die. These effects can be minimized by proper integrated circuit design and layout techniques.
Thermal regulation is the effect of these temperature gradients on the output voltage and is expressed in percentage
of output change per watt of power change in a specified time.