ETC PJ317CW

PJ317
3-Terminal Adjustable Output Positive Voltage Regulator
T
he PJ317 is adjustable 3-terminal positive voltage
external resistors to set the output voltage. Further,
regulator capable of supplying in excess of 1.5 A
employs internal current limiting, thermal shutdown and
over an output voltage range of 1.25 V to 37 V. This voltage
safe area compensation, making it essentially blow-out
regulator is exceptionally easy to use and require only two
proof.
FEATURES
•
Output Current in Excess of 1.5 Ampere
•
Output Adjustable between 1.25 V and 37 V
•
Internal Thermal Overload Protection
•
Internal Short-Circuit Current Limiting
TO-220
Pin 1. Adjust
2. Vout
3. Vin
Heatsink surface
connected to Pin2
Constant with Temperature
•
Output Transistor Safe-Area Compensation
•
Floating Operation for High Voltage Applications
•
Standard 3-lead Transistor Packages
•
Eliminates Stocking Many Fixed Voltages
TO-263
TO-220 / TO-263 / TO92/ TO-252 / SOT-223
TO-92
TO-252
SOT-223
ORDERING INFORMATION
Device
Operating
Temperature
Package
Design
Load
Current
TO-220
1.5A
TO-263
1.5A
TO-92
0.1A
PJ317CP
TO-252
0.5A
PJ317CW
SOT-223
1A
PJ317CS
SOP-8
0.3A
PJ317CZ
PJ317CM
PJ317CT
-20℃ to 85℃
SOP-8
Pin 1. Vin
2. Vout
3. Vout
4. Adjust
5. Nc
6. Vout
7. Vout
8. Nc
CIRCUIT SCHEMATIC
STANDARD APPLICATION
* = Cin is required if regulator is located an appreciable distance from power supply filter.
** = Co is not needed for stability, however it does improve transient response.
Vout = 1.25 V (1 + R2 / R1 ) + IAdj R2
Since IAdj is controlled to less than 100 µA, the error associated with this term is negligible in most applications
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2002/10.rev.A
it
PJ317
3-Terminal Adjustable Output Positive Voltage Regulator
MAXIMUM RATINGS
RATING
Input-Output Voltage Differential
Power Dissipation
Operating Junction Temperature Range
Storage Temperature Range
SYMBOL
VI - V O
PD
TJ
Tstg
VALUE
40
Internally Limited
-20 to + 85
-65 to +150
UNIT
Vdc
℃
℃
PJ317 ELECTRICAL CHARACTERISTICS
(VI -VO = 5.0 V; IO = 0.5A for TO-220 packages; TJ =Tlow to Thigh [see Note 1]; Imax and Pmax per Note 2; unless otherwise
specified.)
CHARACTERISTIC
Line Regulation (Note 3)
TA = 25º C, 3.0 V ≤ VI -VO ≤ 40 V
Load Regulation (Note 3)
TA = 25℃, 10 mA ≤ IO ≤ Imax , VO ≤ 5.0
VO ≥ 5.0
Thermal Regulation (TA = 25℃) 20 ms Pulse
Adjustment Pin Current
Adjustment Pin Current Change , PD ≤ Pmax
10mA ≤ IL ≤ Imax, 2.5V ≤ VI - VO ≤ 40V
Reference Voltage (Note 4) , PD ≤ Pmax
10mA ≤ Io ≤ Imax,, 3.0 V ≤ VI - VO ≤ 40 V
Line Regulation (Note 3) , 3.0 V ≤ VI - VO ≤ 40V
Current Limit (VIN-VOUT) ≤15V
Package CZ,CM
Package CW
Package CP
Package CS
Package CT
Temperature Stability (Tlow ≤ TJ ≤ Thigh)
Minimum Load Current to
Maintain Regulation , (VI - VO = 40 V)
RMS Noise, % of VO
TA =25℃, 10 HZ ≤ f ≤ 10 KHZ
Long-Term Stability, TJ = Thigh (Note 6)
TA =25℃ for Endpoint Measurements ,1000hrs
Thermal Resistance Junction to Case
FIGURE
SYMBOL
MIN.
TYP.
MAX.
UNIT
1
REGline
--
0.01
0.04
%/V
2
REGload
3
△IAdj
-----
5.0
0.1
0.03
50
25
0.5
0.07
100
mV
%V
%W
µA
1.2
IAdj
--
0.2
5.0
µA
3
Vref
1.20
1.25
1.30
V
1
REGline
--
0.02
0.07
%V
--
%
3
TS
--
1.5
1
0.5
0.3
0.1
1
3
ILmin
--
3.5
10
mA
--
N
--
0.003
--
%
3
S
--
0.3
1.0
%
--
RθJC
--
5.0
--
℃ /W
A
NOTES:
(1) Tlow = -20℃
Thigh = + 85℃
(2) Imax = 1.5 A
Pmax : TO-220=20W, TO-263=3W, TO-252=2W, SOP-8=0.625W, TO-92=0.625W, SOT23=0.625W
(3) 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.
(4) Selected devices with tightened tolerance reference voltage available.
(5) CAdj, when used, is connected between the adjustment pin and ground.
(6) 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.
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PJ317
3-Terminal Adjustable Output Positive Voltage Regulator
SCHEMATIC DIAGRAM
FIGURE 1- LINE REGULATION AND LINE TEST CIRCUIT
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PJ317
3-Terminal Adjustable Output Positive Voltage Regulator
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PJ317
3-Terminal Adjustable Output Positive Voltage Regulator
FIGURE 5-LOAD REGULATION
FIGURE 6-CURRENT LIMIT
FIGURE 7-ADJUSTMENT PIN CURRENT
FIGURE 8-DROPOUT VOLTAGE
FIGURE 9-TEMPERATURE STABILITY
CURRENT
FIGURE 10-MINIMUM OPERATING
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PJ317
3-Terminal Adjustable Output Positive Voltage Regulator
FIGURE 11-RIPPLE REJECTION versus
OUTPUT VOLTAGE
FIGURE 12-RIPPLE REJECTION versus
OUTPUT CURRENT
FIGURE 13-RIPPLE REJECTION versus
FREQUENCY
FIGURE 14-OUTPUT IMPEDANCE
FIGURE 9-TEMPERATURE STABILITY
FIGURE 16-LOAD TRANSIENT RESPONSE
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PJ317
3-Terminal Adjustable Output Positive Voltage Regulator
BASIC CIRCUIT OPERATION
The PJ317 is a 3-terminal floating regulator. In
Although the PJ317 is stable with no output capa-
operation, the PJ317 develops and maintains a nominal
citance, like any feedback
circuit ,
certain
values of
1.25 volt reference (Vref) between its output and adjustment
external capacitance can cause excessive ringing. An output
to a
increased. A 10µF capacitor should improve ripple
programming current ( IPROG ) by R1 (see Figure 17), and this
capacitance (CO) in the form of a 1 µF tantalum or 25 µF
constant current flows through R2 to ground. The regulated
aluminum electrolytic capacitor on the output swamps this
output voltage is given by:
effect and insures stability.
terminals. This reference voltage is converted
Vout = Vref (1+ R2 / R1 )+ IAdj R2
Since the current from the adjustment terminal (Iadj)
PROTECTION DIODES
represents an error term in the equation, the PJ317 was
When external capacitors are used with any I.C. re-
designed to control Iadj to less than 100 µA and keep it
gulator it is sometimes necessary to add protection diodes to
constant. To do this, all quiescent
prevent the capacitors from discharging through low current
operating current is
returned to the output terminal. This imposes the requirement
for a minimum load current. If the load current is less than
points into the regulator.
Figure 18 shows the PJ317 with the recommended
protection diodes for output voltages in excess of 25 V or
this minimum, the output voltage will rise.
Since the PJ317 is a floating regulator, it is only the
high capacitance values (CO > 25 µF, CADJ > 10µF). Diode D1
voltage differential across the circuit which is important to
prevents CO from discharging thru the I.C. during an input
performance, and operation at high voltages with respect to
short circuit. Diode
ground is possible.
discharging through the I.C. during an output short circuit.
D2 protects against capacitor CADJ
The combination of diodes D1 and D2 prevents CADJ from
discharging through the I.C. during an input short circuit.
EXTERNAL CAPACITORS
A 0.1µF disc or 1µF tantalum input bypass capacitor
(Cin) is recommended to reduce the sensitivity to input line
impedance.
The adjustment terminal may be bypassed to ground
The PJ317 is capable of providing extremely good
to improve ripple rejection. This capacitor (CADJ) prevents
load regulation, but a few precautions are needed to obtain
ripple
maximum
from being
amplified as the output
voltage is
performance.
For
best
performance,
the
programming resistor (R1) should be connected as close to the
rejection about 15dB at 120 HZ in a 10 volt application.
regulator as possible to minimize line drops which effectively
appear in series with the reference, thereby degrading
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PJ317
3-Terminal Adjustable Output Positive Voltage Regulator
regulation . The ground end of R2 can be returned near the
load regulation.
load ground to provide remote ground sensing and improve
FIGURE 19 -"LABORATORY" POWER SUPPLY WITH ADJUSTABLE
CURRENT LIMIT AND OUTPUT VOLTAGE
FIGURE 20-ADJUSTABLE CURRENT LIMITER
FIGURE 21-5V ELECTRONIC SHUT DOWN
REGULATOR
FIGURE 22-SLOW TURN-ON REGULATOR
FIGURE 23-CURRENT REGULATOR
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PJ317
3-Terminal Adjustable Output Positive Voltage Regulator
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PJ317
3-Terminal Adjustable Output Positive Voltage Regulator
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PJ317
3-Terminal Adjustable Output Positive Voltage Regulator
DIM
A
B
C
D
F
G
K
M
P
R
11-11
MILLIMETERS
MIN
MAX
4.80
5.00
3.80
4.00
1.35
1.75
0.35
0.49
0.40
1.25
1.27BSC
0.10
0.25
0°
7°
5.80
6.20
0.25
0.50
INCHES
MIN
MAX
0.189
0.196
0.150
0.157
0.054
0.068
0.014
0.019
0.016
0.049
0.05BSC
0.004
0.009
0°
7°
0.229
0.244
0.010
0.019
2002/10.rev.A