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 Voltage Regulator
TLE 4117
Target Data Sheet Features * Fixed output voltage regulator 1.8 V, 2.5 V, 3.3 V or 5 V * Adjustable Output down to 1.25 V * Low Drop typical 1 V * 800 mA output current * Short circuit protected * Overtemperature protected
P-TO252-3-1

Type TLE 4117 D V TLE 4117 D V18 TLE 4117 D V25 TLE 4117 D V33 TLE 4117 D V50
Ordering Code
Package
Q67006-A9477 Q67006-A9479 Q67006-A9474 Q67006-A9461 Q67006-A9478
P-TO252-3-1 P-TO252-3-1 P-TO252-3-11 P-TO252-3-11 P-TO252-3-1
P-TO252-3-11
New device
Target Data Sheet Rev. 0.1
1
2000-05-26
TLE 4117
I
Q
Control with Overtemperature Protection; Overcurrent Protection
Adjust Internal Reference
AES02839
Figure 1
Block Diagram for Adjustable Output Voltage TLE 4117 D V
Target Data Sheet Rev. 0.1
2
2000-05-26
TLE 4117
I
Q
Control with Overtemperature Protection; Overcurrent Protection
Internal Reference
GND
AES02840
Figure 2
Block Diagram for Fixed Output Voltage TLE 4117 D V18, 25, 33, 50
Functional Description The TLE 4117 is a 3 terminal positive adjustable or fixed voltage regulator. It is capable to supply 800 mA output current. The fixed voltage devices are available for 1.8 V, 2.5 V, 3.3 V and 5 V output voltage. The adjustable device requires 2 external resistors to define an output voltage between 1.25 V and 40 V. The TLE 4117 is packaged in surface mounted D-Pak package. The TLE 4117 voltage regulator family offers full overload protection, current limitation, thermal protection and save operation area protection (SOA). An output capacitor of 10 F, ESR < 3 is necessary for stability of the regulator loop. The input capacitor is necessary for compensating line influences e.g. to filter glitches. Using a resistor of approx. 1=in series with CI , the oscillating circuit consisting of input inductance and input capacitance can be damped. De-coupling of the adjust pin at variable voltage regulator can improve the ripple rejection ratios.
Target Data Sheet Rev. 0.1
3
2000-05-26
TLE 4117
Pin Configuration (top view)
P-TO252-3-1
Q
1 Q Adjust
I
AEP02821
Figure 3 Pin Definitions and Functions TLE 4117 D V Pin No. 1 2 Symbol Adjust Q Function ADJUST Output; the output voltage is defined by the external voltage divider between Q, Adjust and Ground. A 10 F output capacitor with ESR < 3 is required. Input
3
I
Target Data Sheet Rev. 0.1
4
2000-05-26
TLE 4117
P-TO252-3-11
Q
1 Q GND
I
AEP02817
Figure 4 Pin Definitions and Functions TLE 4117 D Vx Fixed Voltage Devices Pin No. 1 2 3 Symbol GND Q I Function Ground Output; Output voltage is 1.8 V, 2.5 V, 3.3 V or 5 V. A 10 F output capacitor with ESR < 3 is required. Input
Target Data Sheet Rev. 0.1
5
2000-05-26
TLE 4117
Absolute Maximum Ratings Tj = 0 to 125 C Parameter Symbol Limit Values min. Voltage Regulator Input - Output Voltage Difference (variable device only) Voltage max. Unit Test Conditions
VI
- 0.3
40
V
-
Input Voltage (fixed voltage version only) Voltage
VI
- 0.3
15
V
-
Output (fixed voltage version only) Voltage Current
VQ IQ
- 0.3 -
40 -
V -
- Internally limited
Ground (fixed voltage version only) Current Temperature Storage temperature
IGND
-
1.2
mA
-
Tstg
- 50
150
C
-
Note: Stresses above those listed here may cause permanent damage to the device. Exposure to absolute maximum rating conditions for extended periods may affect device reliability.
Target Data Sheet Rev. 0.1
6
2000-05-26
TLE 4117
Operating Range Parameter Input - Output voltage difference Input - Voltage Input - Voltage Input - Voltage Input - Voltage Junction temperature Thermal Resistance Junction ambient Junction case
1)
Symbol
Limit Values min. max. 40 40 40 40 40 125 1.25 3.1 3.8 4.5 6.3 0
Unit Remarks V V V V V TLE 4117 D V TLE 4117 D V18 TLE 4117 D V25 TLE 4117 D V33 TLE 4117 D V50 -
VI - VQ VI VI VI VI Tj
C
Rthja Rthjc
- -
70 4
K/W TO-2521) K/W -
Soldered in, min. footprint.
Note: In the operating range, the functions given in the circuit description are fulfilled.
v
Target Data Sheet Rev. 0.1
7
2000-05-26
TLE 4117
Characteristics Adjustable Output Voltage Device TLE 4117 D V 0 C < Tj < 125 C; CQ = 10 F, IQ = 10 mA; unless otherwise specified. Parameter Reference voltage Adjust current Adjust current change Line regulation Load regulation Symbol Limit Values min. typ. max. V 1.2 - - - - - - - 800 - - - - 60 1.25 1.3 100 1 0.3 0.3 1.0 0.3 1 - - 1 1.1 65 - 5 1.0 1.0 - - 2 - 0 1.1 1.2 - Unit Measuring Conditions
VADJ IADJ
IADJ VQ VQ
A A
% % % % mA mA mA V V V dB
VI - VQ = 2 V; IQ = 10 mA; Tj = 25 C VI =15 V 1 0 mA IQ 800 mA; 1.4 V VI - VQ 10 V 1.5 V VI - VQ =21 V IQ = 10 mA VI - VQ ==3 V 10 mA IQ 800 mA
1)
Temperature Stability VQ Long Term Stability Quiescent current Output current Minimum Load Current Drop voltage Drop voltage Drop voltage Power Supply Ripple Rejection
1) 2)
VQ
1000 h; Tj = 125 C1)
Iq IQ max IQ min VDr VDr VDr
PSRR
VI - VQ =21 V Tj = 25 C; VI - VQ =21 V
1.05 1.15
IQ = 100 mA2) IQ = 500 mA2) IQ = 800 mA2) fr = 120 Hz; Tj = 25 C1) Vr = 1 VPP; VI - VQ ==3 V
Guaranteed by Design. Measured when output voltage dropped 100 mV below nominal voltage.
Target Data Sheet Rev. 0.1
8
2000-05-26
TLE 4117
Characteristics 1.8 V Fixed Output Voltage Device TLE 4117 D V18 0 C < Tj < 125 C; CQ = 10 F, IQ = 10 mA; unless otherwise specified. Parameter Output voltage Output voltage Line regulation Load regulation Temperature Stability Long Term Stability Output current Minimum Load Current Drop voltage Drop voltage Drop voltage Power Supply Ripple Rejection
1) 2)
Symbol
Limit Values min. typ. 1.8 1.8 10 10 0.5 0.3 1 - - 1 1.05 1.1 65 max. 1.84 1.88 30 30 - - 2 - 0 1.1 1.15 1.2 - 1.76 1.72 - - - - - 800 - - - - 60
Unit V V mV mV % % mA mA mA V V V dB
Measuring Conditions
VQ VQ
VQ VQ VQ VQ
VI = 4 V, IQ = 10 mA, Tj = 25 C 3.2 V VI =10 V 0 IQ 800 mA 3.2 V VI 15 V IQ = 0 mA VI = 3.2 V 1 mA IQ 800 mA
1)
1000 h, Tj = 125 C1)
Quiescent current Iq
IQ max IQ min VDr VDr VDr
PSRR
VI < 21 V Tj = 25 C
IQ = 100 mA2) IQ = 500 mA2) IQ = 800 mA2) fr = 120 Hz, Tj = 25 C1) Vr = 0.5 VPP, VI = 5.5 V
Guaranteed by Design. Measured when output voltage dropped 100 mV below nominal voltage.
Target Data Sheet Rev. 0.1
9
2000-05-26
TLE 4117
Characteristics 2.5 V Fixed Output Voltage Device TLE 4117 D V25 0 C < Tj < 125 C; CQ = 10 F, IQ = 10 mA; unless otherwise specified. Parameter Output voltage Output voltage Line regulation Load regulation Temperature Stability Long Term Stability Output current Minimum Load Current Drop voltage Drop voltage Drop voltage Power Supply Ripple Rejection
1) 2)
Symbol
Limit Values min. typ. 2.5 2.5 10 10 1.0 0.3 1 - - 1 1.05 1.1 65 max. 2.55 2.6 30 30 - - 2 - 0 1.1 1.15 1.2 - 2.45 2.4 - - - - - 800 - - - - 60
Unit V V mV mV % % mA mA mA V V V dB
Measuring Conditions
VQ VQ
VQ VQ VQ VQ
VI = 4.5 V, IQ = 10 mA, Tj = 25 C 3.9 V VI =10 V 0 IQ 800 mA 3.9 V VI 10 V IQ = 0 mA VI = 3.9 V 1 mA IQ 800 mA
1)
1000 h, Tj = 125 C1)
Quiescent current Iq
IQ max IQ min VDr VDr VDr
PSRR
VI < 10 V Tj = 25 C, VI < 23 V
IQ = 100 mA2) IQ = 500 mA2) IQ = 800 mA2) fr = 120 Hz, Tj = 25 C1) Vr = 1 VPP, VI = 5.5 V
Guaranteed by Design. Measured when output voltage dropped 100 mV below nominal voltage.
Target Data Sheet Rev. 0.1
10
2000-05-26
TLE 4117
Characteristics 3.3 V Fixed Output Voltage Device TLE 4117 D V33 0 C < Tj < 125 C; CQ = 10 F, IQ = 10 mA; unless otherwise specified. Parameter Output voltage Output voltage Line regulation Load regulation Temperature Stability Long Term Stability Output current Minimum Load Current Drop voltage Drop voltage Drop voltage Power Supply Ripple Rejection
1) 2)
Symbol
Limit Values min. typ. 3.3 3.3 10 10 1.0 0.3 1 - - 1 1.05 1.1 65 max. 3.36 3.44 30 30 - - 2 - 0 1.1 1.15 1.2 - 3.24 3.16 - - - - - 800 - - - - 60
Unit V V mV mV % % mA mA mA V V V dB
Measuring Conditions
VQ VQ
VQ VQ VQ VQ
VI = 5.3 V, IQ = 10 mA, Tj = 25 C 4.75 V VI =10 V 0 IQ 800 mA 4.75 V VI 15 V IQ = 0 mA VI = 4.75 V 1 mA IQ 800 mA
1)
1000 h, Tj = 125 C1)
Quiescent current Iq
IQ max IQ min VDr VDr VDr
PSRR
VI < 15 V Tj = 25 C; VI < 24 V
IQ = 100 mA2) IQ = 500 mA2) IQ = 800 mA2) fr = 120 Hz, Tj = 25 C1) Vr = 0.5 VPP, VI = 5 V
Guaranteed by Design. Measured when output voltage dropped 100 mV below nominal voltage.
Target Data Sheet Rev. 0.1
11
2000-05-26
TLE 4117
Characteristics 5 V Fixed Output Voltage Device TLE 4117 D V50 0 C < Tj < 125 C; CQ = 10 F, IQ = 10 mA; unless otherwise specified. Parameter Output voltage Output voltage Line regulation Load regulation Temperature Stability Long Term Stability Output current Minimum Load Current Drop voltage Drop voltage Drop voltage Power Supply Ripple Rejection
1) 2)
Symbol
Limit Values min. typ. 5.0 5.0 10 10 1.0 0.3 1 - - 1 1.05 1.1 65 max. 5.1 5.2 50 50 - - 2 - 0 1.1 1.15 1.2 - 4.9 4.8 - - - - - 800 - - - - 60
Unit V V mV mV % % mA mA mA V V V dB
Measuring Conditions
VQ VQ
VQ VQ VQ VQ
VI = 7 V, IQ = 10 mA, Tj = 25 C 6.5 V VI =10 V 0 IQ 800 mA 6.5 V VI 15 V IQ = 0 mA VI = 6.5 V 1 mA IQ 800 mA
1)
1000 h, Tj = 125 C1)
Quiescent current Iq
IQ max IQ min VDr VDr VDr
PSRR
VI < 15 V Tj = 25 C; VI < 26 V
IQ = 100 mA2) IQ = 500 mA2) IQ = 800 mA2) fr = 120 Hz, Tj = 25 C Vr = 0.5 VPP, VI = 5 V
Guaranteed by Design. Measured when output voltage dropped 100 mV below nominal voltage.
Note: The listed characteristics are ensured over the operating range of the integrated circuit. Typical characteristics specify mean values expected over the production spread. If not otherwise specified, typical characteristics apply at TA = 25 C and the given supply voltage.
Target Data Sheet Rev. 0.1
12
2000-05-26
TLE 4117
TLE 4117
II VI CI
100 nF
IQ I
Q
CQ R1
10 F Adjust
IAdjust
VQ
R2
AES02836
Figure 5
Measuring Circuit Variable Output Voltage TLE 4117 V
II VI CI
100 nF
TLE 4117DV18, 25, 33, 50
IQ CQ
10 F
I
Q
VQ
GND
IGND
AES02812
Figure 6
Measuring Circuit Fixed Output Voltage TLE 4117 D V18, 25, 33, 50
13 2000-05-26
Target Data Sheet Rev. 0.1
TLE 4117
TLE 4117
VI CI1 CI2
I
Q
CQ1
VQ CQ2 R1 VREF = VQ - VADJ
10 F Adjust
R2
CADJ
AES02837
2 V Q = V REF x ae 1 + ----- o + I ADJ x R 2 e
R R1
Figure 7
Appliation Circuit Variable Output Voltage TLE 4117 V
TLE 4117
Output Voltage 1.8 V, 2.5 V, 3.3 V or 5 V Q
VI CI1 CI2
I
CQ1
VQ CQ2
10 F GND
AES02838
Figure 8
Application Circuit Fixed Output Voltage TLE 4117 D V18, 25, 33, 50
14 2000-05-26
Target Data Sheet Rev. 0.1
TLE 4117
Package Outlines P-TO252-3-1 (Plastic Transistor Single Outline)
6.5 +0.15 -0.10 A 5.4 0.1 B
2.3 +0.05 -0.10 0.9 +0.08 -0.04
1 0.1
9.9 0.5 6.22 -0.2
0.8 0.15
0.51 min
0.15 max per side
3x 0.75 0.1 2.28
0...0.15 0.5 +0.08 -0.04 1 0.1
4.57
0.25
M
AB
0.1
GPT09051
All metal surfaces tin plated, except area of cut.
Sorts of Packing Package outlines for tubes, trays etc. are contained in our Data Book "Package Information". SMD = Surface Mounted Device Target Data Sheet Rev. 0.1 15
Dimensions in mm 2000-05-26
TLE 4117
P-TO252-3-11 (Plastic Transistor Single Outline)
6.5 +0.15 -0.05 5.4 0.1
(4.24) 1 0.1
A B 0.9 +0.20 -0.01 0...0.15
0.51 min.
2.3 +0.05 -0.10 0.5 +0.08 -0.04
(5)
9.98 0.5 6.22 -0.2
0.15 max. per side
3x 0.75 0.1 2.28
0.8 0.15
0.5 +0.08 -0.04 0.1 B
4.57
0.25
M
AB
GPT09277
All metal surfaces tin plated, except area of cut.
Sorts of Packing Package outlines for tubes, trays etc. are contained in our Data Book "Package Information". SMD = Surface Mounted Device Target Data Sheet Rev. 0.1 16
Dimensions in mm 2000-05-26
TLE 4117
Edition 2000-05-26 Published by Infineon Technologies AG, St.-Martin-Strasse 53, D-81541 Munchen, Germany
(c) Infineon Technologies AG 2000.
All Rights Reserved. Attention please! The information herein is given to describe certain components and shall not be considered as warranted characteristics. Terms of delivery and rights to technical change reserved. We hereby disclaim any and all warranties, including but not limited to warranties of non-infringement, regarding circuits, descriptions and charts stated herein. Infineon Technologies is an approved CECC manufacturer. Information For further information on technology, delivery terms and conditions and prices please contact your nearest Infineon Technologies Office in Germany or our Infineon Technologies Representatives worldwide (see address list). Warnings Due to technical requirements components may contain dangerous substances. For information on the types in question please contact your nearest Infineon Technologies Office. Infineon Technologies Components may only be used in life-support devices or systems with the express written approval of Infineon Technologies, if a failure of such components can reasonably be expected to cause the failure of that life-support device or system, or to affect the safety or effectiveness of that device or system. Life support devices or systems are intended to be implanted in the human body, or to support and/or maintain and sustain and/or protect human life. If they fail, it is reasonable to assume that the health of the user or other persons may be endangered.
Target Data Sheet Rev. 0.1
17
2000-05-26


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