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Features
TC56
Package Type
5-Pin SOT-23A
VOUT 5 NC 4
150mA, 10V LDO with Shutdown
* Low Dropout Voltage: 200mV typ. at 80mA, 380mV typ. at 160mA * High Output Current: 180mA (VOUT = 5.0V) * High Accuracy Output Voltage (2%) * Low Power Consumption: 11A (Oper.), 0.1A (Shutdown) * Low Temperature Drift (100ppm/C typ.) * Excellent Line Regulation (0.2%/V typ.) * Space Saving 5-Pin SOT-23A Package * Short Circuit Protection * Standard 2.5V, 3.0V and 3.3V Output Voltages
TC56
1 VSS 2 VIN 3 SHDN
Applications
* * * * * Battery Powered Devices Cameras and Portable Video Equipment Pagers and Cellular Phones Solar Powered Instruments Consumer Products
General Description
The TC56 is a low supply current (11A typical at VOUT = 3V), low dropout CMOS linear regulator, with a 10V maximum input voltage range. CMOS construction eliminates wasted ground current, typical of bipolar regulators, for greater system efficiencies and longer operating time in battery-powered systems. The TC56 enters shutdown mode when the shutdown control input (SHDN) is low. During shutdown, the regulator is shut off, and supply current falls to 0.1A maximum. Normal operation is restored when SHDN is returned to a logic high. Low current consumption, 10V supply tolerance and space-saving 5-Pin SOT-23A packaging makes the TC56 ideal for a wide variety of applications.
Device Selection Table
Output Part Number Voltage (V)* TC562502ECT TC563002ECT TC563302ECT 2.5 3.0 3.3 Package Temperature Range
5-Pin SOT-23A -40C to +85C 5-Pin SOT-23A -40C to +85C 5-Pin SOT-23A -40C to +85C
*Other output voltages are available. Please contact Microchip Technology Inc. for details.
Functional Block Diagram
VOUT 10F Tantalum 5 VOUT 4 (NC)
TC56
VSS 1 VIN 2 SHDN 3 ON OFF Shutdown Control 4.7F Tantalum
VIN
2002 Microchip Technology Inc.
DS21436B-page 1
TC56
1.0 ELECTRICAL CHARACTERISTICS
*Stresses above those listed under "Absolute Maximum Ratings" may cause permanent damage to the device. These are stress ratings only and functional operation of the device at these or any other conditions above those indicated in the operation sections of the specifications is not implied. Exposure to Absolute Maximum Rating conditions for extended periods may affect device reliability.
Absolute Maximum Ratings*
Input Voltage ........................................................+12V Output Current ..................................................500mA Output Voltage.......................VSS - 0.3V to VIN + 0.3V SHDN Input Voltage ..............VSS - 0.3V to VIN + 0.3V Power Dissipation (SOT-23).............................150mW Operating Temperature Range.............-40C to +85C Storage Temperature Range ..............-40C to +125C
TC56 ELECTRICAL SPECIFICATIONS
Electrical Characteristics: VIN = VOUT +1V, TA = 25C, CIN = 4.7F, COUT = 10F, unless otherwise noted. Symbol VIN VOUT IOUTMAX
VOUT
Parameter Input Voltage Output Voltage Maximum Output Current Load Regulation Dropout Voltage
Min -- 150 180 -- -- -- -- -- -- -- -- -- -- -- 1.5 -- -- -0.2
Typ -- -- -- 45 40 200 380 165 330 11 13 -- 0.2 100 -- -- -- -0.05
Max 10 -- -- 90 80 395 770 330 660 19 21 0.1 0.3 -- -- 0.25 5.0 0
Units V V mA mV mV
Test Conditions
0.98 x VR VR 0.5% 1.02 x VR
IOUT = 40mA (Note 1) VR 2.7V, VOUT = 3V (Note 1) VR 4.5V, VOUT = 5V (Note 1) 1mA IOUT 80mA, VOUT = 3V 1mA IOUT 80mA, VOUT = 5V IOUT = 80mA, VOUT = 3V IOUT = 160mA, VOUT = 3V IOUT = 100mA, VOUT = 5V IOUT = 200mA, VOUT = 5V (Note 2) VSHDN = VIN = 4V VSHDN = VIN = 6V VSHDN = GND IOUT = 40mA, 4V VIN 10V IOUT = 10mA, -40C < TJ < +85C
VIN - VOUT
IDD ISHDN
VOUT/VIN VOUT/T
Supply Current Shutdown Supply Current Line Regulation VOUT Temperature Coefficient SHDN Input High Logic Threshold SHDN Input Low Logic Threshold SHDN Input Current @VIH SHDN Input Current @VIL
A A
%/V ppm/C V V
A A
VIH VIL IIH IIL
Note 1: 2:
VSHDN = VIN VSHDN = GND
VR is the regulator output voltage setting. Dropout voltage is defined as the input to output differential at which the output voltage drops 2% below its nominal value measured at a 1V differential.
DS21436B-page 2
2002 Microchip Technology Inc.
TC56
2.0 PIN DESCRIPTIONS
The descriptions of the pins are listed in Table 2-1.
TABLE 2-1:
Pin No. (5-Pin SOT-23A) 1 2 3 4 5
PIN FUNCTION TABLE
Symbol VSS VIN SHDN (NC) VOUT Ground. Supply voltage input. Shutdown input. No connection. Regulated voltage output. Description
3.0
DETAILED DESCRIPTION
3.2
Shutdown Input
The TC56 is a precision, fixed output LDO. Unlike bipolar regulations, the TC56 supply current does not increase with load current.
3.1
Output Capacitor
A 10F tantalum capacitor from VOUT to ground is recommended. The output capacitor should have an effective series resistance greater than 0.1 and less than 5.0, and a resonant frequency above 1MHz. It is recommended that a 4.7F capacitor be connected from VIN to GND. When operating from sources other than batteries, supply noise rejection and transient response can be improved by increasing the value of the input and output capacitors and employing passive filtering techniques.
The TC56 enters a low power shutdown mode when the shutdown control input (SHDN) is low. During shutdown, the regulator is disabled and supply current is reduced to 0.1A (max). Normal operation is restored when SHDN is driven high. If not required, the SHDN input can be tied to VIN.
2002 Microchip Technology Inc.
DS21436B-page 3
TC56
4.0
4.1
THERMAL CONSIDERATIONS
Power Dissipation
Equation 4-1 can be used in conjunction with Equation 4-2 to ensure regulator thermal operation is within limits. For example: Given: VINMAX = 3.0V 10% VOUTMIN = 2.7V - 2% ILOADMAX = 98mA TJMAX TAMAX = 125C = 55C
The amount of power the regulator dissipates is primarily a function of input and output voltage, and output current. The following equation is used to calculate worst case actual power dissipation.
EQUATION 4-1:
PD (VINMAX - VOUTMIN)ILOADMAX Where: PD VINMAX VOUTMIN ILOADMAX = Worst case actual power dissipation = Maximum voltage on VIN = Minimum regulator output voltage = Maximum output (load) current
Find: 1. Actual power dissipation 2. Maximum allowable dissipation Actual power dissipation: PD (VINMAX - VOUTMIN)ILOADMAX = [(3.0 x 1.1) - (2.7 x .98)]98 x 10-3 = 64mW Maximum allowable power dissipation: PDMAX = (TJMAX - TAMAX) JA = (125 - 55) 220 = 318mW In this example, the TC56 dissipates a maximum of 64mW; below the allowable limit of 318mW. In a similar manner, Equation 4-1 and Equation 4-2 can be used to calculate maximum current and/or input voltage limits.
The maximum allowable power dissipation (Equation 4-2) is a function of the maximum ambient temperature (TAMAX), the maximum allowable die temperature (TJMAX) and the thermal resistance from junction-to-air (JA). The 5-Pin SOT-23A package has a JA of approximately 220C/Watt.
EQUATION 4-2:
PDMAX = (TJMAX - TAMAX) JA Where all terms are previously defined.
4.2
Layout Considerations
The primary path of heat conduction out of the package is via the package leads. Therefore, layouts having a ground plane, wide traces at the pads, and wide power supply bus lines combine to lower JA and therefore, increase the maximum allowable power dissipation limit.
DS21436B-page 4
2002 Microchip Technology Inc.
TC56
5.0
Note:
TYPICAL CHARACTERISTICS
The graphs and tables provided following this note are a statistical summary based on a limited number of samples and are provided for informational purposes only. The performance characteristics listed herein are not tested or guaranteed. In some graphs or tables, the data presented may be outside the specified operating range (e.g., outside specified power supply range) and therefore outside the warranted range.
1. OUTPUT VOLTAGE vs. OUTPUT CURRENT
TC565002 (5V)
5.1
TC563002 (3V)
VIN = 4V 3.1
OUTPUT VOLTAGE VOUT (V)
VIN = 6V CIN = 4.7F, CL = 10F (Tantalum) TOPR = 25C
CIN = 4.7F, CL = 10 TOPR = 25C C
OUTPUT VOLTAGE VOUT (V)
5.0 -30C 4.9 80C
3.0 2.9
-30C 80C C
4.8
2.8
4.7
2.7
0 20 40 60 80 100 120 140 160 180
0 20 40 60 80 100 120 140 160 180
OUTPUT CURRENT IOUT (mA)
OUTPUT CURRENT IOUT (mA)
2. OUTPUT VOLTAGE vs. INPUT VOLTAGE
TC565002 (5V)
5.2
OUTPUT VOLTAGE VOUT (V)
TC565002 (5V)
5.10 OUTPUT VOLTAGE VOUT (V) CIN = 4.7F, CL TOPR = 25C
TOPR = 25C CIN = 4.7F, CL = 10F (Tantalum)
5.0
5.05 IOUT = 1mA, 10m mA 5.00
IOUT = 1mA A
4.8
40mA
4.6
4.95
10mA
4.4
40mA
4.90
4.2 4.5
4.85
5 INPUT VOLTAGE VIN (V)
5.5
5
8 9 6 7 INPUT VOLTAGE VIN (V)
10
TC563002 (3V)
TOPR = 25C
3.2
OUTPUT VOLTAGE VOUT (V)
TC563002 (3V)
CIN = 4.7F, CL
3.10
CIN = 4.7F, CL = 10 OUTPUT VOLTAGE VOUT (V)
TOPR = 25C
3.0
3.05
IOUT = 1mA A
2.8
40mA
IOUT = 1mA
3.00
2.6
10mA
2.95
40mA
2.4
2.90
2.2 2.5
3.0
INPUT VOLTAGE VIN (V)
3.5
2.85
3
4
5
6
7
8
9
10
INPUT VOLTAGE VIN (V)
2002 Microchip Technology Inc.
DS21436B-page 5
TC56
5.0 TYPICAL CHARACTERISTICS (CONTINUED)
3. INPUT/OUTPUT VOLTAGE DIFFERENTIAL vs. OUTPUT CURRENT
CIN = 4.7F, CL = 10F (Tantalum) CIN = 4.7F, CL = 10F (Tantalum)
1.0
INPUT/OUTPUT DIFF. VDIF (V)
1.0
INPUT/OUTPUT DIFF. VDIF (V)
0.8
0.8 80C 0.6 TOPR = 25C 0.4 0.2 -30C
0.6
TOPR = 25C 0.4
0.2
80C
-30C
0.0
0.0
0 20 40 60 80 100 120 140 160 180
OUTPUT CURRENT IOUT (mA) 0 20 40 60 80 100 120 140 160 180 OUTPUT CURRENT IOUT (mA)
4. SHDN PIN THRESHOLD VOLTAGE vs. INPUT VOLTAGE
TC565002 (5V)
0.7
SHDN PIN THRE. VOL.VIH, VIL (V)
TC563002 (3V)
0.7 SHDN PIN THRE. VOL. VIH, VIL (V)
0.6
TOPR = 30C 25C
0.6 0.5
TOPR = 30C 25C 80C
0.5
80C
0.4
0.4
0.3
"L" Level Voltage "H" Level Voltage
0.3 "L" Level Voltage "H" Level Voltage 0.2 0 6 8 4 2 INPUT VOLTAGE VIN (V) 10
0.2 0
2 4 6 8 INPUT VOLTAGE VIN (V) 10
5. SUPPLY CURRENT vs. INPUT VOLTAGE
TC565002 (5V)
20
SUPPLY CURRENT IDD (A) 16
TC565002 (5V)
TOPR = 80C C
14
15
TOPR = 80C C
SUPPLY CURRENT IDD (A)
25C
12
10
-30C
10
-30C
5.0
25C
8
0 0 2 6 4 8 INPUT VOLTAGE VIN (V) 10
6
5 8 6 7 9 INPUT VOLTAGE VIN (V) 10
DS21436B-page 6
2002 Microchip Technology Inc.
TC56
5.0 TYPICAL CHARACTERISTICS (CONTINUED)
5. SUPPLY CURRENT vs. INPUT VOLTAGE (CONT.)
TC563002 (3V)
20
SUPPLY CURRENT IDD (A)
TC563002 (3V)
16
SUPPLY CURRENT IDD (A)
15
14 12
80C
10
80C 25C -30C
10
5.0
-30C 25C
8.0
0 0
2 4 8 6 INPUT VOLTAGE VIN (V) 10
6.0 3 4 5 7 8 9 6 INPUT VOLTAGE VIN (V) 10
6. OUTPUT VOLTAGE vs. AMBIENT TEMPERATURE
TC565002 (5V)
5.10
TC563002 (3V)
3.10 CIN = 4.7F, CL = 10 VIN = 4V
VIN = 6V CIN = 4.7F, CL = 10F (Tantalum)
OUTPUT VOLTAGE VOUT (V)
5.05 IOUT = 10mA A 5.00 40mA
4.95
OUTPUT VOLTAGE VOUT (V)
3.05 IOUT = 10mA 3.00 40mA
2.95
4.90 -40
-20
0
20
40
60
80
2.90 -40
-20
0
20
40
60
80
AMBIENT TEMP. TOPR (C)
AMBIENT TEMP. TOPR (C)
7. SUPPLY CURRENT vs. AMBIENT TEMPERATURE
TC565002 (5V)
16
SUPPLY CURRENT IDD (A)
VIN = 6V
TC563002 (3V)
16
SUPPLY CURRENT IDD (A)
VIN = 4V
14
14
12
12
10
10
8.0
8.0
6.0 -40
-20
0
20
40
60
80
6.0 -40
-20
0
20
40
60
80
AMBIENT TEMP. TOPR (C)
AMBIENT TEMP. TOPR (C)
2002 Microchip Technology Inc.
DS21436B-page 7
TC56
5.0 TYPICAL CHARACTERISTICS (CONTINUED)
8. INPUT TRANSIENT RESPONSE 1 TC565002 (5V)
8 6
INPUT VOLTAGE VIN (V)
IOUT = 1mA, CL = 10F (Tantalum)
8
OUT (V)
8 6
IN (V)
IOUT = 10mA, CL = 10F (Tantalum)
8
OUTPUT VOLTAGE VOUT (V)
OUTPUT VOLTAGE VOUT (V)
7
Input Voltage
7
Input Voltage
4 2 0 -2 -4 -6 -8 TIME: (0.1 msec/div)
Output Voltage
6 5 4 3 2 1 0
4 2 0 -2 -4 -6 -8
6 5
Output Voltage
4 3 2 1 0
TIME: (0.1 msec/div)
TC563002 (3V)
6 4 Input Voltage 2 Output Voltage
0 -2 -4 3 2 1
TC563002 (3V)
6 5 4
OUTPUT VOLTAGE VOUT (V)
IOUT = 1mA, CL = 10F (Tantalum) 6
IN (V)
IOUT = 10mA, CL = 10F (Tantalum)
6 5
OUTPUT VOLTAGE VOUT (V)
INPUT VOLTAGE VIN (V)
4 Input Voltage 2 Output Voltage
0 -2 -4
4
3 2 1
-6
0
-6
0
TIME: (0.1 msec/div)
TIME: (0.1 msec/div)
9. INPUT TRANSIENT RESPONSE 2 TC565002 (5V)
8 7 IOUT = 1mA, CL = 10F (Tantalum) Input Voltage
INPUT VOLTAGE VIN (V)
5.4 5.3
OUTPUT VOLTAGE VOUT (V)
8 7
IOUT = 10mA, CL = 10F (Tantalum) Input Voltage
5.4 5.3
6
5.2
INPUT VOLTAGE VIN (V)
6
5.2
5 Output Voltage 4
5.1
5 Output Voltage 4
5.1
5.0
5.0
3
4.9
3
4.9
TIME: (0.1 msec/div)
TIME: (0.1 msec/div)
DS21436B-page 8
2002 Microchip Technology Inc.
TC56
5.0 TYPICAL CHARACTERISTICS (CONTINUED)
9. INPUT TRANSIENT RESPONSE 2 (CONT.)
TC563002 (3V)
6 5 4
3
TC563002 (3V)
3.20
OUTPUT VOLTAGE VOUT (V)
IOUT = 1mA, CL = 10F (Tantalum) Input Voltage
6 5 4
3
IOUT = 10mA, CL = 10F (Tantalum) Input Voltage
3.20 3.15 3.10
3.05 OUTPUT VOLTAGE VOUT (V)
INPUT VOLTAGE VIN (V)
3.10
3.05
Output Voltage
2 1 3.00 2.95
IN (V)
3.15
Output Voltage
2 1 3.00 2.95
0
2.90
0
2.90
TIME (1 msec/div)
TIME (1 msec/div)
10. LOAD TRANSIENT RESPONSE
VIN = 6V, CL = 10F (Tantalum) 240
OUTPUT CURRENT IOUT (mA) OUTPUT VOLTAGE VOUT (V)
VIN = 4V, CL = 10F (Tantalum) 3.2 3.1 Output Voltage 3.0
2.9 2.8
5.2
OUTPUT VOLTAGE VOUT (V)
240 200 160
120 80
5.1 Output Voltage 5.0
4.9 4.8
200 160
120 80
40mA Output Current
4.7 40
40mA Output Current
2.7 40
1mA 4.6 0 2.6
1mA 0
TIME (2 msec/div)
TIME (2 msec/div)
11. SHDN PIN TRANSIENT RESPONSE
TC565002 (5V)
8 7
OUTPUT VOLTAGE VOUT (V)
TC565002 (5V)
8
OUTPUT VOLTAGE VOUT (V)
VIN = 6V IOUT = 1mA, CL = 10F (Tantalum) V
VIN = 6V IOUT = 10mA, CL = 10F (Tantalum)
IH
= 1.5V 7 6 5 4 3
6 5 4 3
Output Voltage VIL = 0.25V
VIL = 0.25V
2 1 0 TIME (0.1 msec/div)
Output Voltage
2 1 0 TIME (0.1 msec/div)
2002 Microchip Technology Inc.
OUTPUT CURRENT IOUT (mA)
DS21436B-page 9
TC56
5.0 TYPICAL CHARACTERISTICS (CONTINUED)
11. SHDN PIN TRANSIENT RESPONSE (CONT.)
TC563002 (3V)
6
OUTPUT VOLTAGE VOUT (V)
TC563002 (3V)
6
OUTPUT VOLTAGE VOUT (V)
VIN = 4V IOUT = 1mA, CL = 10F (Tantalum) VIH = 1.5V
VIN = 4V IOUT = 10mA, CL = 10F (Tantalum) VIH = 1.5V
5 4
SHDN Pin Input Voltage HDN
VIL = 0.25V
5 4
SHDN Pin Input Voltage HDN
VIL = 0.25V
3 2
3 2
Output Current
1
Output Current
1
0
0
TIME: (0.1 msec/div)
TIME: (0.1 msec/div)
12. RIPPLE REJECTION RATE
TC565002 (5V)
80 70 60 50 40 30 20 10 0 0.01
1 V IOUT = 40mA, L
DC + 1 Vp-pAC,
TC563002 (3V)
V = 6VDC + 1 Vp-pAC, IOUT = 40mA, CL
RIPPLE REJECTION RATE RR (dB)
80 70 60 50 40 30 20 10
0.1 10
0 0.01
0.1
1
10
RIPPLE FREQUENCY f (kHz)
RIPPLE FREQUENCY f (kHz)
DS21436B-page 10
2002 Microchip Technology Inc.
TC56
6.0
6.1
PACKAGING INFORMATION
Package Marking Information
2
represents the integer of the output voltage Symbol Voltage .0 .1 .2 .3 .4 Symbol F H K L M Voltage .5 .6 .7 .8 .9
3
A B C D E
3
1
represents the integer of the output voltage Symbol A B C D E F H Voltage 0. 1. 2. 3. 4. 5. 6.
represents the transition response Symbol -- REGULAR
4
represents assembly lot code
6.2
Taping Form
Component Taping Orientation for 5-Pin SOT-23A (EIAJ SC-74A) Devices
User Direction of Feed
Device Marking
W
PIN 1
P Standard Reel Component Orientation TR Suffix Device (Mark Right Side Up)
Carrier Tape, Number of Components Per Reel and Reel Size
Package Carrier Width (W) Pitch (P) Part Per Full Reel Reel Size
5-Pin SOT-23A
8 mm
4 mm
3000
7 in
2002 Microchip Technology Inc.
DS21436B-page 11
TC56
6.3 Package Dimensions
SOT-23A-5
.075 (1.90) REF.
.122 (3.10) .098 (2.50) .020 (0.50) .012 (0.30) PIN 1 .122 (3.10) .106 (2.70) .057 (1.45) .035 (0.90) .006 (0.15) .000 (0.00)
.071 (1.80) .059 (1.50)
.037 (0.95) REF.
10 MAX. .024 (0.60) .004 (0.10)
.010 (0.25) .004 (0.09)
Dimensions: inches (mm)
DS21436B-page 12
2002 Microchip Technology Inc.
TC56
Sales and Support
Data Sheets Products supported by a preliminary Data Sheet may have an errata sheet describing minor operational differences and recommended workarounds. To determine if an errata sheet exists for a particular device, please contact one of the following: 1. 2. 3. Your local Microchip sales office The Microchip Corporate Literature Center U.S. FAX: (480) 792-7277 The Microchip Worldwide Site (www.microchip.com)
Please specify which device, revision of silicon and Data Sheet (include Literature #) you are using. New Customer Notification System Register on our web site (www.microchip.com/cn) to receive the most current information on our products.
2002 Microchip Technology Inc.
DS21436B-page13
TC56
NOTES:
DS21436B-page14
2002 Microchip Technology Inc.
TC56
Information contained in this publication regarding device applications and the like is intended through suggestion only and may be superseded by updates. It is your responsibility to ensure that your application meets with your specifications. No representation or warranty is given and no liability is assumed by Microchip Technology Incorporated with respect to the accuracy or use of such information, or infringement of patents or other intellectual property rights arising from such use or otherwise. Use of Microchip's products as critical components in life support systems is not authorized except with express written approval by Microchip. No licenses are conveyed, implicitly or otherwise, under any intellectual property rights.
Trademarks The Microchip name and logo, the Microchip logo, FilterLab, KEELOQ, microID, MPLAB, PIC, PICmicro, PICMASTER, PICSTART, PRO MATE, SEEVAL and The Embedded Control Solutions Company are registered trademarks of Microchip Technology Incorporated in the U.S.A. and other countries. dsPIC, ECONOMONITOR, FanSense, FlexROM, fuzzyLAB, In-Circuit Serial Programming, ICSP, ICEPIC, microPort, Migratable Memory, MPASM, MPLIB, MPLINK, MPSIM, MXDEV, MXLAB, PICC, PICDEM, PICDEM.net, rfPIC, Select Mode and Total Endurance are trademarks of Microchip Technology Incorporated in the U.S.A. Serialized Quick Turn Programming (SQTP) is a service mark of Microchip Technology Incorporated in the U.S.A. All other trademarks mentioned herein are property of their respective companies. (c) 2002, Microchip Technology Incorporated, Printed in the U.S.A., All Rights Reserved.
Printed on recycled paper.
Microchip received QS-9000 quality system certification for its worldwide headquarters, design and wafer fabrication facilities in Chandler and Tempe, Arizona in July 1999 and Mountain View, California in March 2002. The Company's quality system processes and procedures are QS-9000 compliant for its PICmicro(R) 8-bit MCUs, KEELOQ(R) code hopping devices, Serial EEPROMs, microperipherals, non-volatile memory and analog products. In addition, Microchip's quality system for the design and manufacture of development systems is ISO 9001 certified.
2002 Microchip Technology Inc.
DS21436B-page 15
M
WORLDWIDE SALES AND SERVICE
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EUROPE
Denmark
Microchip Technology Nordic ApS Regus Business Centre Lautrup hoj 1-3 Ballerup DK-2750 Denmark Tel: 45 4420 9895 Fax: 45 4420 9910
Detroit
Tri-Atria Office Building 32255 Northwestern Highway, Suite 190 Farmington Hills, MI 48334 Tel: 248-538-2250 Fax: 248-538-2260
China - Shanghai
Microchip Technology Consulting (Shanghai) Co., Ltd. Room 701, Bldg. B Far East International Plaza No. 317 Xian Xia Road Shanghai, 200051 Tel: 86-21-6275-5700 Fax: 86-21-6275-5060
Kokomo
2767 S. Albright Road Kokomo, Indiana 46902 Tel: 765-864-8360 Fax: 765-864-8387
France
Microchip Technology SARL Parc d'Activite du Moulin de Massy 43 Rue du Saule Trapu Batiment A - ler Etage 91300 Massy, France Tel: 33-1-69-53-63-20 Fax: 33-1-69-30-90-79
Los Angeles
18201 Von Karman, Suite 1090 Irvine, CA 92612 Tel: 949-263-1888 Fax: 949-263-1338
China - Shenzhen
Microchip Technology Consulting (Shanghai) Co., Ltd., Shenzhen Liaison Office Rm. 1315, 13/F, Shenzhen Kerry Centre, Renminnan Lu Shenzhen 518001, China Tel: 86-755-2350361 Fax: 86-755-2366086
New York
150 Motor Parkway, Suite 202 Hauppauge, NY 11788 Tel: 631-273-5305 Fax: 631-273-5335
Germany
Microchip Technology GmbH Gustav-Heinemann Ring 125 D-81739 Munich, Germany Tel: 49-89-627-144 0 Fax: 49-89-627-144-44
San Jose
Microchip Technology Inc. 2107 North First Street, Suite 590 San Jose, CA 95131 Tel: 408-436-7950 Fax: 408-436-7955
China - Hong Kong SAR
Microchip Technology Hongkong Ltd. Unit 901-6, Tower 2, Metroplaza 223 Hing Fong Road Kwai Fong, N.T., Hong Kong Tel: 852-2401-1200 Fax: 852-2401-3431
Italy
Microchip Technology SRL Centro Direzionale Colleoni Palazzo Taurus 1 V. Le Colleoni 1 20041 Agrate Brianza Milan, Italy Tel: 39-039-65791-1 Fax: 39-039-6899883
Toronto
6285 Northam Drive, Suite 108 Mississauga, Ontario L4V 1X5, Canada Tel: 905-673-0699 Fax: 905-673-6509
India
Microchip Technology Inc. India Liaison Office Divyasree Chambers 1 Floor, Wing A (A3/A4) No. 11, O'Shaugnessey Road Bangalore, 560 025, India Tel: 91-80-2290061 Fax: 91-80-2290062
United Kingdom
Microchip Ltd. 505 Eskdale Road Winnersh Triangle Wokingham Berkshire, England RG41 5TU Tel: 44 118 921 5869 Fax: 44-118 921-5820
05/01/02
' ! # '
DS21436B-page 16
2002 Microchip Technology Inc.


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