TC1044S. Charge Pump DC-TO-DC Voltage Converter FEATURES GENERAL DESCRIPTION ORDERING INFORMATION

Size: px
Start display at page:

Download "TC1044S. Charge Pump DC-TO-DC Voltage Converter FEATURES GENERAL DESCRIPTION ORDERING INFORMATION"

Transcription

1 EVALUATION KIT AVAILABLE Charge Pump DC-TO-DC Voltage Converter FEATURES Converts V Logic Supply to ±V System Wide Input Voltage Range....V to V Efficient Voltage Conversion % Excellent Power Efficiency... 9% Low Power Consumption... V IN = V Low Cost and Easy to Use Only Two External Capacitors Required RS- Negative Power Supply Available in -Pin Small Outline (SOIC) and -Pin Plastic DIP Packages Improved ESD Protection... Up to kv No External Diode Required for High Voltage Operation Frequency Boost Raises F OSC to khz PIN CONFIGURATION (DIP AND SOIC) GENERAL DESCRIPTION The is a pin-compatible upgrade to the Industry standard TC charge pump voltage converter. It converts a.v to V input to a corresponding.v to V output using only two low cost capacitors, eliminating inductors and their associated cost, size and EMI. Added features include an extended supply range to V, and a frequency boost pin for higher operating frequency, allowing the use of smaller external capacitors. The on-board oscillator operates at a nominal frequency of khz. Frequency is increased to khz when pin is connected to V. Operation below khz (for lower supply current applications) is possible by connecting an external capacitor from OSC to ground (with pin open). The is available in both -pin DIP and -pin small outline (SOIC) packages in commercial and extended temperature ranges. ORDERING INFORMATION Part No. Package Temp. Range BOOST CAP GND CAP CPA EPA IJA MJA V OSC LOW VOLTAGE (LV) BOOST CAP GND CAP FUNCTIONAL BLOCK DIAGRAM BOOST COA EOA V OSC LOW VOLTAGE (LV) COA -Pin SOIC C to C CPA -Pin Plastic DIP C to C EOA -Pin SOIC C to C EPA -Pin Plastic DIP C to C IJA -Pin CerDIP C to C MJA -Pin CerDIP C to C TCEV V CAP Charge Pump Family Evaluation Kit OSC RC OSCILLATOR VOLTAGE LEVEL TRANSLATOR CAP LV INTERNAL VOLTAGE REGULATOR LOGIC NETWORK GND Microchip Technology Inc. DSA - 9//9

2 ABSOLUTE MAXIMUM RATINGS* Supply Voltage... V LV, Boost and OSC Inputs Voltage (Note )....V to (V.V) for V <.V (V.V) to (V.V) for V >.V Current Into LV (Note )... µa for V >.V Output Short Duration (V SUPPLY.V)... Continuous Lead Temperature (Soldering, sec)... C Package Power Dissipation (T A C) (Note ) -Pin CerDIP...mW -Pin Plastic DIP...mW -Pin SOIC...mW Operating Temperature Range C Suffix... C to C I Suffix... C to C E Suffix... C to C M Suffix... C to C Storage Temperature Range... C to C *Static-sensitive device. Unused devices must be stored in conductive material. Protect devices from static discharge and static fields. 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. ELECTRICAL CHARACTERISTICS: T A = C, V = V, C OSC =, Test Circuit (Figure ), unless otherwise indicated. Symbol Parameter Test Conditions Min Typ Max Unit I Supply Current R L = µa C < T A < C C < T A < C C < T A < C I Supply Current C < T A < C µa (Boost Pin = V ) C < T A < C C < T A < C V H Supply Voltage Range, High Min T A Max, V R L = kω, LV Open V L Supply Voltage Range, Low Min T A Max,.. V R L = kω, LV to GND R OUT Output Source Resistance I OUT = ma Ω I OUT = ma, C T A C I OUT = ma, C T A C I OUT = ma, C T A C V = V, I OUT = ma, LV to GND C T A C Ω C T A C F OSC Oscillator Frequency Pin open; Pin open or GND khz Boost Pin = V P EFF Power Efficiency R L = kω; Boost Pin Open 9 9 % T MIN < T A < T MAX ; Boost Pin Open 9 9 Boost Pin = V E FF Voltage Conversion Efficiency R L = % Z OSC Oscillator Impedance V = V MΩ V = V kω NOTES:. Connecting any input terminal to voltages greater than V or less than GND may cause destructive latch-up. It is recommended that no inputs from sources operating from external supplies be applied prior to "power up" of the.. Derate linearly above C by.mw/ C. - 9//9 Microchip Technology Inc. DSA

3 Circuit Description The contains all the necessary circuitry to implement a voltage inverter, with the exception of two external capacitors, which may be inexpensive µf polarized electrolytic capacitors. Operation is best understood by considering Figure, which shows an idealized voltage inverter. Capacitor C is charged to a voltage, V, for the half cycle when switches S and S are closed. (Note: Switches S and S are open during this half cycle.) During the second half cycle of operation, switches S and S are closed, with S and S open, thereby shifting capacitor C negatively by V volts. Charge is then transferred from C to C, such that the voltage on C is exactly V, assuming ideal switches and no load on C. The four switches in Figure are MOS power switches; S is a P-channel device, and S, S and S are N-channel devices. The main difficulty with this approach is that in integrating the switches, the substrates of S and S must always remain reverse-biased with respect to their sources, but not so much as to degrade their ON resistances. In addition, at circuit start-up, and under output short circuit conditions ( = V ), the output voltage must be sensed and the substrate bias adjusted accordingly. Failure to accomplish this will result in high power losses and probable device latch-up. This problem is eliminated in the by a logic network which senses the output voltage ( ) together with the level translators, and switches the substrates of S and S to the correct level to maintain necessary reverse bias. C µf V Microchip Technology Inc. DSA C OSC * I L C µf R L NOTE: For large values of C OSC (>pf), the values of C and C should be increased to µf. Figure. Test Circuit I S V (V) V GND S S S C S C = V IN Figure. Idealized Charge Pump Inverter The voltage regulator portion of the is an integral part of the anti-latch-up circuitry. Its inherent voltage drop can, however, degrade operation at low voltages. To improve low-voltage operation, the LV pin should be connected to GND, disabling the regulator. For supply voltages greater than.v, the LV terminal must be left open to ensure latch-up-proof operation and prevent device damage. Theoretical Power Efficiency Considerations In theory, a capacitive charge pump can approach % efficiency if certain conditions are met: () The drive circuitry consumes minimal power. () The output switches have extremely low ON resistance and virtually no offset. () The impedances of the pump and reservoir capacitors are negligible at the pump frequency. The approaches these conditions for negative voltage multiplication if large values of C and C are used. Energy is lost only in the transfer of charge between capacitors if a change in voltage occurs. The energy lost is defined by: E = / C (V V ) V and V are the voltages on C during the pump and transfer cycles. If the impedances of C and C are relatively high at the pump frequency (refer to Figure ) compared to the value of R L, there will be a substantial difference in voltages V and V. Therefore, it is desirable not only to make C as large as possible to eliminate output voltage ripple, but also to employ a correspondingly large value for C in order to achieve maximum efficiency of operation. - 9//9

4 Dos and Don'ts Do not exceed maximum supply voltages. Do not connect the LV terminal to GND for supply voltages greater than.v. Do not short circuit the output to V supply for voltages above.v for extended periods; however, transient conditions including start-up are okay. When using polarized capacitors in the inverting mode, the terminal of C must be connected to pin of the and the terminal of C must be connected to GND. Simple Negative Voltage Converter Figure shows typical connections to provide a negative supply where a positive supply is available. A similar scheme may be employed for supply voltages anywhere in the operating range of.v to V, keeping in mind that pin (LV) is tied to the supply negative (GND) only for supply voltages below.v. V The output characteristics of the circuit in Figure are those of a nearly ideal voltage source in series with Ω. Thus, for a load current of ma and a supply voltage of V, the output voltage would be.v. The dynamic output impedance of the is due, primarily, to capacitive reactance of the charge transfer capacitor (C ). Since this capacitor is connected to the output for only / of the cycle, the equation is: X C = =.Ω, πf C where f = khz and C = µf. Paralleling Devices Any number of voltage converters may be paralleled to reduce output resistance (Figure ). The reservoir capacitor, C, serves all devices, while each device requires its own pump capacitor, C. The resultant output resistance would be approximately: R OUT = R OUT (of ) n (number of devices) V OUT * C C µf µf *NOTES: Figure. Simple Negative Converter V C "" C R L "n" C Figure. Paralleling Devices Lowers Output Impedance - 9//9 Microchip Technology Inc. DSA

5 V µf "" µf "n" * *NOTES:. = n(v ) for.v V V µf µf Figure. Increased Output Voltage by Cascading Devices Cascading Devices The may be cascaded as shown (Figure ) to produce larger negative multiplication of the initial supply voltage. However, due to the finite efficiency of each device, the practical limit is devices for light loads. The output voltage is defined by: = n(v IN ) where n is an integer representing the number of devices cascaded. The resulting output resistance would be approximately the weighted sum of the individual R OUT values. Changing the Oscillator Frequency It may be desirable in some applications (due to noise or other considerations) to increase the oscillator frequency. Pin, frequency boost pin may be connected to V to increase oscillator frequency to khz from a nominal of khz for an input supply voltage of. volts. The oscillator may also be synchronized to an external clock as shown in Figure. In order to prevent possible device latch-up, a kω resistor must be used in series with the clock output. In a µf V kω V µf CMOS GATE situation where the designer has generated the external clock frequency using TTL logic, the addition of a kω pullup resistor to V supply is required. Note that the pump frequency with external clocking, as with internal clocking, will be / of the clock frequency. Output transitions occur on the positive-going edge of the clock. It is also possible to increase the conversion efficiency of the at low load levels by lowering the oscillator frequency. This reduces the switching losses, and is achieved by connecting an additional capacitor, C OSC, as shown in Figure. Lowering the oscillator frequency will cause an undesirable increase in the impedance of the pump (C ) and the reservoir (C ) capacitors. To overcome this, increase the values of C and C by the same factor that the frequency has been reduced. For example, the addition of a pf capacitor between pin (OSC) and pin (V ) will lower the oscillator frequency to khz from its nominal frequency of khz (a multiple of ), and necessitate a corresponding increase in the values of C and C (from µf to µf). Positive Voltage Multiplication The may be employed to achieve positive voltage multiplication using the circuit shown in Figure. In this application, the pump inverter switches of the are used to charge C to a voltage level of V V F (where V is the supply voltage and V F is the forward voltage drop of diode D ). On the transfer cycle, the voltage on C plus the supply voltage (V ) is applied through diode D to capacitor C. The voltage thus created on C becomes (V ) (V F ), or twice the supply voltage minus the combined forward voltage drops of diodes D and D. The source impedance of the output ( ) will depend on the output current, but for V = V and an output current of ma, it will be approximately Ω. Figure. External Clocking Microchip Technology Inc. DSA - 9//9

6 C Figure. Lowering Oscillator Frequency Combined Negative Voltage Conversion and Positive Supply Multiplication Figure 9 combines the functions shown in Figures and to provide negative voltage conversion and positive voltage multiplication simultaneously. This approach would be, for example, suitable for generating 9V and V from an existing V supply. In this instance, capacitors C and C perform the pump and reservoir functions, respectively, for the generation of the negative voltage, while capacitors C and C are pump and reservoir, respectively, for the multiplied positive voltage. There is a penalty in this configuration which combines both functions, however, in that the source impedances of the generated supplies will be somewhat higher due to the finite impedance of the common charge pump driver at pin of the device. Efficient Positive Voltage Multiplication/Conversion Since the switches that allow the charge pumping operation are bidirectional, the charge transfer can be performed backwards as easily as forwards. Figure shows a transforming V to V (or V to V, etc.). The only problem here is that the internal clock and switchdrive section will not operate until some positive voltage has been generated. An initial inefficient pump, as shown in Figure 9, could be used to start this circuit up, after which it V D D C V C OSC = ( V ) ( V F ) will bypass the other (D and D in Figure 9 would never turn on), or else the diode and resistor shown dotted in Figure can be used to "force" the internal regulator on. Voltage Splitting The same bidirectional characteristics used in Figure can also be used to split a higher supply in half, as shown in Figure. The combined load will be evenly shared between the two sides. Once again, a high value resistor to the LV pin ensures start-up. Because the switches share the load in parallel, the output impedance is much lower than in the standard circuits, and higher currents can be drawn from the device. By using this circuit, and then the circuit of Figure, V can be converted (via.v and.v) to a nominal V, though with rather high series resistance (~Ω). C C V D = V = ( V ) ( V F ) Figure 9. Combined Negative Converter and Positive Multiplier Negative Voltage Generation for Display ADCs The TC is designed to work from a 9V battery. With a fixed power supply system, the TC will perform conversions with input signal referenced to power supply ground. Negative Supply Generation for ¹ ₂ Digit Data Acquisition System The TC is a ¹ ₂ digit ADC operating from ±V supplies. The provides an inexpensive V source. (See AN and AN for TC interface details and software routines.) D C C C C Figure. Positive Voltage Multiplier - 9//9 Microchip Technology Inc. DSA

7 C µf = V MΩ V INPUT µf R L = V V R L µf µf kω µf kω MΩ V V Figure. Positive Voltage Conversion Figure. Splitting a Supply in Half TYPICAL CHARACTERISTICS Unloaded Osc Freq vs. Temperature Unloaded Osc Freq vs. Temperature with Boost Pin = V IN OSCILLATOR FREQUENCY (khz) V IN = V V IN = V - - TEMPERATURE ( C) OSCILLATOR FREQUENCY (khz) V IN = V V IN = V - - TEMPERATURE ( C) I DD (µa) Supply Current vs. Temperature (with Boost Pin = V IN ) - - TEMPERATURE ( C) Microchip Technology Inc. DSA V IN = V V IN = V VOLTAGE CONVERSION EFFICIENCY (%) Voltage Conversion Without Load K Load T A = C 9. 9 INPUT VOLTAGE V IN (V) - 9//9

8 TYPICAL CHARACTERISTICS (Cont.) Output Source Resistance vs. Supply Voltage Output Source Resistance vs. Temperature OUTPUT SOURCE RESISTANCE (Ω) I OUT = ma T A = C SUPPLY VOLTAGE (V) OUTPUT SOURCE RESISTANCE (Ω) V IN =.V V IN =.V - - TEMPERATURE ( C) OUTPUT VOLTAGE (V) Output Voltage vs. Output Current - 9 OUTPUT CURRENT (ma) SUPPLY CURRENT I DD (µa) POWER EFFICIENCY (%) 9 Supply Current vs. Temperature V IN =.V - - TEMPERATURE ( C) Power Conversion Efficiency vs. Load Boost Pin = Open Boost Pin = V V IN =.V LOAD CURRENT (ma) - 9//9 Microchip Technology Inc. DSA

9 PACKAGE DIMENSIONS -Pin Plastic DIP PIN. (.). (.). (.). (.). (.). (.). (.). (.). (.).9 (.). (.). (.). (.). (.9). (.). (.). (.). (.) MIN.. (.9).9 (.9). (.). (.). (.). (.). (.9).9 (.9) -Pin CerDIP PIN. (.). (.). (.) MAX.. (.) MIN.. (.). (9.). (.).9 (.). (.). (.). (.). (.). (.). (.). (.) MIN.. (.). (.) MIN.. (.). (.). (.). (.). (.). (.) Dimensions: inches (mm) Microchip Technology Inc. DSA 9-9//9

10 PACKAGE DIMENSIONS (CONT.) -Pin SOIC. (.99). (.). (.). (.9). (.) TYP..9 (.).9 (.). (.). (.). (.). (.).9 (.). (.) MAX.. (.). (.). (.). (.) Dimensions: inches (mm) - 9//9 Microchip Technology Inc. DSA

11 WORLDWIDE SALES AND SERVICE AMERICAS Corporate Office West Chandler Blvd. Chandler, AZ -99 Tel: -9- Fax: -9- Technical Support: -9- Web Address: Rocky Mountain West Chandler Blvd. Chandler, AZ -99 Tel: -9-9 Fax: -9- Atlanta Sugar Mill Road, Suite B Atlanta, GA Tel: -- Fax: -- Austin Analog Product Sales MoPac Expressway North Suite A- Austin, TX 9 Tel: -- Fax: -- Boston Lan Drive, Suite Westford, MA Tel: 9-9- Fax: 9-9- Boston Analog Product Sales Unit A-- Millbrook Tarry Condominium 9 Lowell Road Concord, MA Tel: 9-- Fax: 9-- Chicago Pierce Road, Suite Itasca, IL Tel: -- Fax: -- Dallas Westgrove Drive, Suite Addison, TX Tel: 9-- Fax: 9--9 Dayton Two Prestige Place, Suite Miamisburg, OH Tel: 9-9- Fax: Detroit Tri-Atria Office Building Northwestern Highway, Suite 9 Farmington Hills, MI Tel: -- Fax: -- Los Angeles Von Karman, Suite 9 Irvine, CA 9 Tel: 99-- Fax: 99-- Mountain View Analog Product Sales Terra Bella Avenue Mountain View, CA 9- Tel: -9-9 Fax: -9-9 New York Motor Parkway, Suite Hauppauge, NY Tel: -- Fax: -- San Jose Microchip Technology Inc. North First Street, Suite 9 San Jose, CA 9 Tel: --9 Fax: --9 Toronto Northam Drive, Suite Mississauga, Ontario LV X, Canada Tel: Fax: 9--9 ASIA/PACIFIC China - Beijing Microchip Technology Beijing Office Unit 9 New China Hong Kong Manhattan Bldg. No. Chaoyangmen Beidajie Beijing,, No. China Tel: -- Fax: -- China - Shanghai Microchip Technology Shanghai Office Room, Bldg. B Far East International Plaza No. Xian Xia Road Shanghai, Tel: --- Fax: --- Hong Kong Microchip Asia Pacific RM, Tower, Metroplaza Hing Fong Road Kwai Fong, N.T., Hong Kong Tel: -- Fax: -- India Microchip Technology Inc. India Liaison Office Divyasree Chambers Floor, Wing A (A/A) No., OíShaugnessey Road Bangalore,, India Tel: 9--9 Fax: 9--9 Japan Microchip Technology Intl. Inc. Benex S- F --, Shinyokohama Kohoku-Ku, Yokohama-shi Kanagawa, -, Japan Tel: --- Fax: --- Korea Microchip Technology Korea -, Youngbo Bldg. Floor Samsung-Dong, Kangnam-Ku Seoul, Korea Tel: --- Fax: ---9 ASIA/PACIFIC (continued) Singapore Microchip Technology Singapore Pte Ltd. Middle Road #- Prime Centre Singapore, 9 Tel: -- Fax: -- Taiwan Microchip Technology Taiwan F-, No. Tung Hua North Road Taipei,, Taiwan Tel: --- Fax: ---9 EUROPE Australia Microchip Technology Australia Pty Ltd Suite, Rawson Street Epping, NSW Australia Tel: --9- Fax: --9- Denmark Microchip Technology Denmark ApS Regus Business Centre Lautrup hoj - Ballerup DK- Denmark Tel: 99 Fax: 99 France Arizona Microchip Technology SARL Parc díactivite du Moulin de Massy Rue du Saule Trapu Batiment A - ler Etage 9 Massy, France Tel: Fax: Germany Arizona Microchip Technology GmbH Gustav-Heinemann Ring D-9 Munich, Germany Tel: Fax: Germany Analog Product Sales Lochhamer Strasse D- Martinsried, Germany Tel: Fax: Italy Arizona Microchip Technology SRL Centro Direzionale Colleoni Palazzo Taurus V. Le Colleoni Agrate Brianza Milan, Italy Tel: Fax: United Kingdom Arizona Microchip Technology Ltd. Eskdale Road Winnersh Triangle Wokingham Berkshire, England RG TU Tel: 9 9 Fax: - 9- All rights reserved. Microchip Technology Incorporated. Printed in the USA. / Printed on recycled paper. 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 Microchipís 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, except as maybe explicitly expressed herein, under any intellectual property rights. The Microchip logo and name are registered trademarks of Microchip Technology Inc. in the U.S.A. and other countries. All rights reserved. All other trademarks mentioned herein are the property of their respective companies. /9/ Microchip Technology Inc. DSA - 9//9

TC7660S SUPER CHARGE PUMP DC-TO-DC VOLTAGE CONVERTER TC7660S GENERAL DESCRIPTION FEATURES ORDERING INFORMATION

TC7660S SUPER CHARGE PUMP DC-TO-DC VOLTAGE CONVERTER TC7660S GENERAL DESCRIPTION FEATURES ORDERING INFORMATION EVALUATION KIT AVAILABLE SUPER CHARGE PUMP DC-TO-DC FEATURES Oscillator boost from khz to khz Converts V Logic Supply to ±V System Wide Input Voltage Range....V to V Efficient Voltage Conversion... 99.9%

More information

SUPER CHARGE PUMP DC-TO-DC VOLTAGE CONVERTER

SUPER CHARGE PUMP DC-TO-DC VOLTAGE CONVERTER EVALUATION KIT AVAILABLE SUPER CHARGE PUMP DC-TO-DC FEATURES Oscillator boost from khz to khz Converts V Logic Supply to ±V System Wide Input Voltage Range....V to V Efficient Voltage Conversion... 99.9%

More information

TC4426 TC4427 TC A DUAL HIGH-SPEED POWER MOSFET DRIVERS GENERAL DESCRIPTION FEATURES ORDERING INFORMATION

TC4426 TC4427 TC A DUAL HIGH-SPEED POWER MOSFET DRIVERS GENERAL DESCRIPTION FEATURES ORDERING INFORMATION 1.A DUAL HIGH-SPEED POWER MOSFET DRIVERS FEATURES High Peak Output Current... 1.A Wide Operating Range....V to 1V High Capacitive Load Drive Capability... pf in nsec Short Delay Time... < nsec Typ. Consistent

More information

100mA CHARGE PUMP DC-TO-DC VOLTAGE CONVERTER

100mA CHARGE PUMP DC-TO-DC VOLTAGE CONVERTER 00 ma CHARGE PUMP DC-TO-DC EVALUATION KIT AVAILABLE 00mA CHARGE PUMP DC-TO-DC FEATURES Pin Compatible with TC0 High Output Current... 00mA Converts (.V to.v) to (.V to.v) Power Efficiency @00mA... % typ

More information

TC1225 TC1226 TC1227. Inverting Dual ( V IN, 2V IN ) Charge Pump Voltage Converters FEATURES GENERAL DESCRIPTION TYPICAL APPLICATIONS

TC1225 TC1226 TC1227. Inverting Dual ( V IN, 2V IN ) Charge Pump Voltage Converters FEATURES GENERAL DESCRIPTION TYPICAL APPLICATIONS Inverting Dual (, 2 ) FEATURES Small 8-Pin MSOP Package Operates from 1.8V to 5.5V Up to 5mA Output Current at Pin Up to 1mA Output Current at 2 Pin and 2 Outputs Available Low Supply Current... 120µA

More information

TCM828 TCM829. Switched Capacitor Voltage Converters FEATURES GENERAL DESCRIPTION APPLICATIONS ORDERING INFORMATION

TCM828 TCM829. Switched Capacitor Voltage Converters FEATURES GENERAL DESCRIPTION APPLICATIONS ORDERING INFORMATION Switched Capacitor FEATURES Charge Pump in -Pin SOT-A Package >9% Voltage Conversion Efficiency Voltage Inversion and/or Doubling Low µa () Quiescent Current Operates from +.V to +.V Up to ma Output Current

More information

TC4423 TC4424 TC4425 3A DUAL HIGH-SPEED POWER MOSFET DRIVERS GENERAL DESCRIPTION FEATURES ORDERING INFORMATION

TC4423 TC4424 TC4425 3A DUAL HIGH-SPEED POWER MOSFET DRIVERS GENERAL DESCRIPTION FEATURES ORDERING INFORMATION TC3 FEATURES High Peak Output Current... 3A Wide Operating Range....5V to V High Capacitive Load Drive Capability... pf in 5nsec Short Delay Times...

More information

HIGH FREQUENCY 7660 DC-TO-DC VOLTAGE CONVERTER TC7660H GENERAL DESCRIPTION FEATURES ORDERING INFORMATION

HIGH FREQUENCY 7660 DC-TO-DC VOLTAGE CONVERTER TC7660H GENERAL DESCRIPTION FEATURES ORDERING INFORMATION HIGH FREQUENCY DC-TO-DC EALUATION KIT AAILABLE HIGH FREQUENCY DC-TO-DC FEATURES Pin Compatible with, High Frequency Performance DC-to-DC Converter Low Cost, Two Low alue External Capacitors Required...

More information

TC4467 TC4468 TC4469 LOGIC-INPUT CMOS QUAD DRIVERS GENERAL DESCRIPTION FEATURES APPLICATIONS ORDERING INFORMATION

TC4467 TC4468 TC4469 LOGIC-INPUT CMOS QUAD DRIVERS GENERAL DESCRIPTION FEATURES APPLICATIONS ORDERING INFORMATION FEATURES High Peak Output Current....A Wide Operating Range.... to V Symmetrical Rise and Fall Times... nsec Short, Equal Delay Times... nsec Latchproof! Withstands ma Inductive Kickback Input Logic Choices

More information

TC643 INTEGRATED FAN / MOTOR DRIVER GENERAL DESCRIPTION FEATURES APPLICATIONS ORDERING INFORMATION

TC643 INTEGRATED FAN / MOTOR DRIVER GENERAL DESCRIPTION FEATURES APPLICATIONS ORDERING INFORMATION INTEGRATED / MOTOR DRIVER FEATURES Integrates Current Limited Power Driver and Diagnostic/Monitoring Circuits in a Single IC Works with Standard DC Brushless Fans/Motors Supports Efficient PWM Drive with

More information

TCM680 +5V TO ±10V VOLTAGE CONVERTER GENERAL DESCRIPTION FEATURES APPLICATIONS ORDERING INFORMATION

TCM680 +5V TO ±10V VOLTAGE CONVERTER GENERAL DESCRIPTION FEATURES APPLICATIONS ORDERING INFORMATION EVALUATION KIT AVAILABLE FEATURES 99% Voltage onversion Efficiency 85% Power onversion Efficiency Wide Voltage Range...0V to 5.5V Only 4 External apacitors Required Space Saving 8-Pin SOI Design APPLIATIONS

More information

AN566. Using the PORTB Interrupt on Change as an External Interrupt USING A PORTB INPUT FOR AN EXTERNAL INTERRUPT INTRODUCTION

AN566. Using the PORTB Interrupt on Change as an External Interrupt USING A PORTB INPUT FOR AN EXTERNAL INTERRUPT INTRODUCTION M AN566 Using the PORTB Interrupt on Change as an External Interrupt Author INTRODUCTION Mark Palmer The PICmicro families of RISC microcontrollers are designed to provide advanced performance and a cost-effective

More information

TC57 Series. Linear Regulator Controller GENERAL DESCRIPTION FEATURES TYPICAL APPLICATIONS ORDERING INFORMATION PART CODE TC57 XX 02 ECT XX

TC57 Series. Linear Regulator Controller GENERAL DESCRIPTION FEATURES TYPICAL APPLICATIONS ORDERING INFORMATION PART CODE TC57 XX 02 ECT XX TC Series Linear Regulator Controller FEATURES Low Dropout Voltage: 1 mv @ ma with FZT9 PNP Transistor Output Voltage: V to V in.1v Increments.V to 8V Supply Range Low Operating Current:... µaoperating;.

More information

MCP100/101. Microcontroller Supervisory Circuit with Push-Pull Output FEATURES PACKAGES DESCRIPTION BLOCK DIAGRAM

MCP100/101. Microcontroller Supervisory Circuit with Push-Pull Output FEATURES PACKAGES DESCRIPTION BLOCK DIAGRAM Microcontroller Supervisory Circuit with Push-Pull Output FEATURES Holds microcontroller in reset until supply voltage reaches stable operating level Resets microcontroller during power loss Precision

More information

Voltage-To-Frequency/Frequency-To-Voltage Converters

Voltage-To-Frequency/Frequency-To-Voltage Converters FEATURES Voltage-to-Frequency Choice of Linearity:... 0.01%... 0.05%... 0.5% DC to 100 khz (F/V) or 1Hz to 100kHz (V/F) Low Power Dissipation... 7mW Typ Single/Dual Supply Operation... + 8V to + 15V or

More information

HCS410/WM. Crypto Read/Write Transponder Module FEATURES PACKAGE TYPES BLOCK DIAGRAM HCS410 IMMOBILIZER TRANSPONDER. Security. Operating.

HCS410/WM. Crypto Read/Write Transponder Module FEATURES PACKAGE TYPES BLOCK DIAGRAM HCS410 IMMOBILIZER TRANSPONDER. Security. Operating. M HCS410/WM Crypto Read/Write Transponder Module FEATURES Security Two programmable 64-bit encryption keys 16/32-bit bi-directional challenge and response using one of two keys Programmable 32-bit serial

More information

Charge Pump Voltage Converters TJ7660

Charge Pump Voltage Converters TJ7660 FEATURES Simple Conversion of +5V Logic Supply to ±5V Supplies Simple Voltage Multiplication (VOUT = (-) nvin) Typical Open Circuit Voltage Conversion Efficiency 99.9% Typical Power Efficiency 98% Wide

More information

TC623. 3V, Dual Trip Point Temperature Sensor. Package Type. Features. Applications. General Description. Device Selection Table

TC623. 3V, Dual Trip Point Temperature Sensor. Package Type. Features. Applications. General Description. Device Selection Table 3V, Dual Trip Point Temperature Sensor TC623 Features Integrated Temp Sensor and Detector Operate from a Supply Voltage as Low as 2.7V Replaces Mechanical Thermostats and Switches On-Chip Temperature Sense

More information

M TC3682/TC3683/TC3684

M TC3682/TC3683/TC3684 M // Inverting Charge Pump Voltage Doublers with Active Low Shutdown Features Small 8-Pin MSOP Package Operates from 1.8V to 5.5V 120 Ohms (typ) Output Resistance 99% Voltage Conversion Efficiency Only

More information

2-Wire Serial Temperature Sensor and Thermal Monitor

2-Wire Serial Temperature Sensor and Thermal Monitor EVALUATION KIT AVAILABLE 2-Wire Serial Temperature Sensor FEATURES Solid State Temperature Sensing; 0.5 C Accuracy (Typ.) Operates from 55 C to +25 C Operating Range... 2.7V - 5.5V Programmable Trip Point

More information

TC mA Charge Pump Voltage Converter with Shutdown. Features. Package Type. Applications. General Description. Device Selection Table

TC mA Charge Pump Voltage Converter with Shutdown. Features. Package Type. Applications. General Description. Device Selection Table M TC 00mA Charge Pump Voltage Converter with Shutdown Features Optional High-Frequency Operation Allows Use of Small Capacitors Low Operating Current (FC = GND) - 50µA High Output Current (00mA) Converts

More information

PIC14C000. Errata Sheet for PIC14C000 Revision A. USING THE I 2 C MODULE IN SMBus MODE USING AN1 AND AN5 AS ANALOG INPUTS

PIC14C000. Errata Sheet for PIC14C000 Revision A. USING THE I 2 C MODULE IN SMBus MODE USING AN1 AND AN5 AS ANALOG INPUTS Errata Sheet for PIC14C000 Revision A The PIC14C000 parts you have received conform functionally to the PIC14C000 data sheet (DS40122B), except for the anomalies described below. USING AN1 AND AN5 AS ANALOG

More information

TC1221/TC1222. High Frequency Switched Capacitor Voltage Converters with Shutdown in SOT Packages. 6-Pin SOT-23A. Features. General Description

TC1221/TC1222. High Frequency Switched Capacitor Voltage Converters with Shutdown in SOT Packages. 6-Pin SOT-23A. Features. General Description M / High Frequency Switched Capacitor Voltage Converters with Shutdown in SOT Packages Features Charge Pumps in 6-Pin SOT-23A Package 96% Voltage Conversion Efficiency Voltage Inversion and/or Doubling

More information

Connecting Sensor Buttons to PIC12CXXX MCUs

Connecting Sensor Buttons to PIC12CXXX MCUs Electromechanical Switch Replacement Connecting Sensor Buttons to PIC12CXXX MCUs Author: Vladimir Velchev AVEX Sofia, Bulgaria APPLICATION OPERATION The idea is to replace the electromechanical switches

More information

TC7662A. Charge Pump DC-to-DC Converter. Features. Package Type. General Description. Applications. Device Selection Table. 8-Pin PDIP 8-Pin CERDIP

TC7662A. Charge Pump DC-to-DC Converter. Features. Package Type. General Description. Applications. Device Selection Table. 8-Pin PDIP 8-Pin CERDIP M TCA Charge Pump DC-to-DC Converter Features Wide Operating Range - V to V Increased Output Current (0mA) Pin Compatible with ICL/SI/TC0/ LTC0 No External Diodes Required Low Output Impedance @ I L =

More information

Linear Building Block Low-Power Comparator with Op Amp and

Linear Building Block Low-Power Comparator with Op Amp and EVALUATION KIT AVAILABLE Linear Building Block Low-Power FEATURES Combines Low-Power,, and in a Single Package Optimized for Single-Supply Operation Small Package... 8-Pin MSOP (Consumes Only Half the

More information

M TC1426/TC1427/TC1428

M TC1426/TC1427/TC1428 M TC1426/TC1427/TC1428 1.2A Dual High-Speed MOSFET Drivers Features Low Cost Latch-Up Protected: Will Withstand 5mA Reverse Current ESD Protected ±2kV High Peak Current: 1.2A Wide Operating Range - 4.5V

More information

AN528. Implementing Wake-Up on Key Stroke. Implementing Wake-Up on Key Stroke INTRODUCTION IMPLEMENTATION FIGURE 1 - TWO KEY INTERFACE TO PIC16C5X

AN528. Implementing Wake-Up on Key Stroke. Implementing Wake-Up on Key Stroke INTRODUCTION IMPLEMENTATION FIGURE 1 - TWO KEY INTERFACE TO PIC16C5X AN58 INTRODUCTION In certain applications, the PIC16CXX is exercised only when a key is pressed, eg. remote keyless entry. In such applications, the battery life can be extended by putting the PIC16CXX

More information

TC52. Dual Channel Voltage Detector. Features. General Description. Typical Applications. Functional Block Diagram. Device Selection Table

TC52. Dual Channel Voltage Detector. Features. General Description. Typical Applications. Functional Block Diagram. Device Selection Table M TC52 Dual Channel Voltage Detector Features Two Independent Voltage Detectors in One Package Highly Accurate: ±2% Low Power Consumption: 2.0µA, Typ. Detect Voltage Range: 1.5V to 5.0V Operating Voltage:

More information

Using the TC1142 for Biasing a GaAs Power Amplifier. CTL High-Side. FET Switch GND V IN V OUT TC GND. Inductorless Boost/Buck Regulator

Using the TC1142 for Biasing a GaAs Power Amplifier. CTL High-Side. FET Switch GND V IN V OUT TC GND. Inductorless Boost/Buck Regulator Using the TC1142 for Biasing a GaAs Power Amplifier Author: INTRODUCTION Patrick Maresca, Microchip Technology, Inc. RF bandwidths for cellular systems such as AMPS, TACS, GSM, TDMA, and CDMA range from

More information

ICL7660S. Super Voltage Converter. Features. Applications. Pinouts. Ordering Information. Data Sheet April File Number 3179.

ICL7660S. Super Voltage Converter. Features. Applications. Pinouts. Ordering Information. Data Sheet April File Number 3179. ICLS Data Sheet April 999 File Number 9. Super Voltage Converter The ICLS Super Voltage Converter is a monolithic CMOS voltage conversion IC that guarantees significant performance advantages over other

More information

AN820. System Supervisors in ICSP TM Architectures CIRCUITRY BACKGROUND INTRODUCTION. MCP120 Output Stage. Microchip Technology Inc.

AN820. System Supervisors in ICSP TM Architectures CIRCUITRY BACKGROUND INTRODUCTION. MCP120 Output Stage. Microchip Technology Inc. M AN820 System Supervisors in ICSP TM Architectures Author: Ken Dietz Microchip Technology Inc. CIRCUITRY BACKGROUND MCP120 Output Stage INTRODUCTION Semiconductor manufacturers have designed several types

More information

1.5A Dual High-Speed Power MOSFET Drivers. Temp. Range

1.5A Dual High-Speed Power MOSFET Drivers. Temp. Range M TC426/TC427/TC428 1.5A Dual High-Speed Power MOSFET Drivers Features High-Speed Switching (C L = 1000pF): 30nsec High Peak Output Current: 1.5A High Output Voltage Swing - V DD -25mV - GND +25mV Low

More information

AN797. TC4426/27/28 System Design Practice INTRODUCTION. FIGURE 1: TC4426 output. FIGURE 2: Output stage IC layout.

AN797. TC4426/27/28 System Design Practice INTRODUCTION. FIGURE 1: TC4426 output. FIGURE 2: Output stage IC layout. TC4426/27/28 System Design Practice AN797 Author: INTRODUCTION Scott Sangster, Microchip Technology, Inc. The TC4426/4427/4428 are high-speed power MOSFET drivers built using Microchip Technology's tough

More information

Using External RAM with PIC17CXX Devices PIC17C42 PIC17C43 PIC17C Microchip Technology Inc. DS91004A-page 1

Using External RAM with PIC17CXX Devices PIC17C42 PIC17C43 PIC17C Microchip Technology Inc. DS91004A-page 1 This document was created with FrameMaker 0 Using External RAM with PICCXX Devices TB00 Author: Introduction Rodger Richey Advanced Microcontroller and Technology Division This Technical Brief shows how

More information

PIC16C622A PIC16F628 Migration

PIC16C622A PIC16F628 Migration PIC16C622A PIC16F628 Migration DEVICE MIGRATIONS This document is intended to describe the functional differences and the electrical specification differences that are present when migrating from one device

More information

1.5A Dual Open-Drain MOSFET Drivers. 8-Pin PDIP/SOIC/CERDIP IN A A BOTTOM IN B B TOP A TOP B BOTTOM IN A B TOP IN B

1.5A Dual Open-Drain MOSFET Drivers. 8-Pin PDIP/SOIC/CERDIP IN A A BOTTOM IN B B TOP A TOP B BOTTOM IN A B TOP IN B M TC4404/TC4405 1.5A Dual Open-Drain MOSFET Drivers Features Independently Programmable Rise and Fall Times Low Output Impedance 7Ω Typ. High Speed t R, t F

More information

TC51. 1µA Voltage Detector with Output Delay TC51. General Description. Features. Applications. Device Selection Table. Functional Block Diagram

TC51. 1µA Voltage Detector with Output Delay TC51. General Description. Features. Applications. Device Selection Table. Functional Block Diagram M TC51 1µA Voltage Detector with Output Delay Features Precise Detection Thresholds: ±2.0% Small Package: 3-Pin SOT-23A Low Supply Current: Typ. 1µA Wide Detection Range: 1.6V to 6.0V Wide Operating Voltage

More information

Optical Pyrometer. Functions

Optical Pyrometer. Functions Optical Pyrometer Electromechanical Switch Replacement Author: Spehro Pefhany, Trexon Inc. 3-1750 The Queensway, #1298 Toronto, Ontario, Canada M9C 5H5 email: speff@trexon.com APPLICATION OPERATION An

More information

AN562. Using Endurance Predictive Software. Using the Microchip Endurance Predictive Software INTRODUCTION TOTAL ENDURANCE PREDICTIVE SOFTWARE

AN562. Using Endurance Predictive Software. Using the Microchip Endurance Predictive Software INTRODUCTION TOTAL ENDURANCE PREDICTIVE SOFTWARE AN562 Using the Microchip Endurance Predictive Software INTRODUCTION Endurance, as it applies to non-volatile memory, refers to the number of times an individual memory cell can be erased and/or written

More information

AN603. Continuous Improvement THE EEPROM TECHNOLOGY TEAM INTRODUCTION TO MICROCHIP'S CULTURE. Continuous Improvement is Essential

AN603. Continuous Improvement THE EEPROM TECHNOLOGY TEAM INTRODUCTION TO MICROCHIP'S CULTURE. Continuous Improvement is Essential Thi d t t d ith F M k AN63 Continuous Improvement Author: Randy Drwinga Product Enhancement Engineering INTRODUCTION TO MICROCHIP'S CULTURE The corporate culture at Microchip Technology Inc. is embodied

More information

4-1/2 Digit Analog-To-Digital Converter with On-Chip LCD Drivers

4-1/2 Digit Analog-To-Digital Converter with On-Chip LCD Drivers 4-1/2 Digit Analog-To-Digital Converter with On-Chip LCD Drivers FEATURES Count Resolution... ±19,999 Resolution on 200 mv Scale... 10µV True Differential Input and Reference Low Power Consumption... 500µA

More information

TC4427 TC A DUAL HIGH-SPEED POWER MOSFET DRIVERS 1.5A DUAL HIGH-SPEED POWER MOSFET DRIVERS TC4426 TC4426 GENERAL DESCRIPTION FEATURES

TC4427 TC A DUAL HIGH-SPEED POWER MOSFET DRIVERS 1.5A DUAL HIGH-SPEED POWER MOSFET DRIVERS TC4426 TC4426 GENERAL DESCRIPTION FEATURES FEATURES High Peak Output Current....A Wide Operating Range....V to V High Capacitive Load Drive Capability... pf in nsec Short Delay Time... < nsec Typ. Consistent Delay Times With Changes in Supply Voltage

More information

LMC7660 Switched Capacitor Voltage Converter

LMC7660 Switched Capacitor Voltage Converter LMC7660 Switched Capacitor Voltage Converter General Description The LMC7660 is a CMOS voltage converter capable of converting a positive voltage in the range of +1.5V to +10V to the corresponding negative

More information

PIC16C65A. PIC16C65A Rev. A Silicon Errata Sheet. 2. Module: CCP (Compare Mode) 1. Module: CCP (Compare Mode) SWITCHING

PIC16C65A. PIC16C65A Rev. A Silicon Errata Sheet. 2. Module: CCP (Compare Mode) 1. Module: CCP (Compare Mode) SWITCHING PIC16C65A Rev. A Silicon Errata Sheet The PIC16C65A (Rev. A) parts you have received conform functionally to the Device Data Sheet (DS30234D), except for the anomalies described below. All the problems

More information

TC620/TC621. 5V, Dual Trip Point Temperature Sensors. Features. Package Type. Applications. Device Selection Table. General Description

TC620/TC621. 5V, Dual Trip Point Temperature Sensors. Features. Package Type. Applications. Device Selection Table. General Description V, Dual Trip Point Temperature Sensors Features User Programmable Hysteresis and Temperature Set Point Easily Programs with External Resistors Wide Temperature Detection Range: -0 C to 0 C: (TC0/TCCCX)

More information

27C K (32K x 8) CMOS EPROM FEATURES PACKAGE TYPES DESCRIPTION

27C K (32K x 8) CMOS EPROM FEATURES PACKAGE TYPES DESCRIPTION 256K (32K x 8) CMS EPRM 27C256 FEATURES PACKAGE TYPES High speed performance - 9 ns access time available CMS Technology for low power consumption - 2 ma Active current - µa Standby current Factory programming

More information

AN765. Using Microchip's Micropower LDOs INTRODUCTION APPLICATIONS. Optimizing Output Voltage Accuracy of 1070/1071 Adjustable LDOs

AN765. Using Microchip's Micropower LDOs INTRODUCTION APPLICATIONS. Optimizing Output Voltage Accuracy of 1070/1071 Adjustable LDOs Using Microchip's Micropower LDOs AN765 Author: Paul Paglia, Microchip Technology, Inc. INTRODUCTION Microchip Technology, Inc. s family of micropower LDOs utilizes low-voltage CMOS process technology.

More information

300mW Audio Power Amplifier with Shutdown Mode

300mW Audio Power Amplifier with Shutdown Mode 3mW Audio Power Amplifier with Shutdown Mode FEATURES.% (Max) THD at khz at 3mW Continuous Average Output Power into 8Ω.% (Max) THD at khz at 3mW Continuous Average Output Power into 6Ω Shutdown Current.µA

More information

LMC7660 Switched Capacitor Voltage Converter

LMC7660 Switched Capacitor Voltage Converter Switched Capacitor Voltage Converter General Description The LMC7660 is a CMOS voltage converter capable of converting a positive voltage in the range of +1.5V to +10V to the corresponding negative voltage

More information

TC7662A CHARGE PUMP DC-TO-DC CONVERTER GENERAL DESCRIPTION FEATURES ORDERING INFORMATION

TC7662A CHARGE PUMP DC-TO-DC CONVERTER GENERAL DESCRIPTION FEATURES ORDERING INFORMATION FEATURES EALUATION KIT AAILABLE GENERAL DESCRIPTION TCA Wide Operating Range... to Increased Output Current... ma Pin Compatible with ICL/SI/TC/ LTC No External Diodes Required Low Output Impedance @ I

More information

TC1029. Linear Building Block Dual Low Power Op Amp. General Description. Features. Applications. Device Selection Table. Functional Block Diagram

TC1029. Linear Building Block Dual Low Power Op Amp. General Description. Features. Applications. Device Selection Table. Functional Block Diagram Linear Building Block Dual Low Power Op Amp Features Optimized for Single Supply Operation Small Packages: 8-Pin MSOP, 8-Pin PDIP and 8-Pin SOIC Ultra Low Input Bias Current: Less than 1pA Low Quiescent

More information

TYPICAL SEGMENT OUTPUT. 0.5mA. 2mA INTERNAL DIGITAL GROUND C AZ C INT V INT INTEGRATOR TO DIGITAL SECTION A/Z COMPARATOR

TYPICAL SEGMENT OUTPUT. 0.5mA. 2mA INTERNAL DIGITAL GROUND C AZ C INT V INT INTEGRATOR TO DIGITAL SECTION A/Z COMPARATOR Hold and Differential Reference Inputs FEATURES Differential Reference Input Display Hold Function Fast Over-Range Recovery, Guaranteed Next Reading Accuracy Low Temperature Drift Internal Reference...

More information

Linear Building Block Low-Power Voltage Reference with Dual Op Amp, Dual Comparator, and Shutdown Mode

Linear Building Block Low-Power Voltage Reference with Dual Op Amp, Dual Comparator, and Shutdown Mode Linear Building Block Low-Power Voltage Reference with Dual Op Amp, FEATURES Combines Two Op Amps, Two s and a Voltage Reference into a Single Package Optimized for Single-Supply Operation Small Package...

More information

ME7660C Charge Pump DC-DC Voltage Converter

ME7660C Charge Pump DC-DC Voltage Converter ME7660C Charge Pump DC-DC Voltage Converter ME7660C is a charge pump dc-to-dc voltage converter using AL-gate CMOS technology and optimization design. It converters a +2.5V to +10V input to a corresponding

More information

rfpic Development Kit 1 Quick Start Guide

rfpic Development Kit 1 Quick Start Guide rfpic Development Kit 1 Quick Start Guide 2003 Microchip Technology Inc. Preliminary DS70092A Note the following details of the code protection feature on Microchip devices: Microchip products meet the

More information

TC mA Fixed Low Dropout Positive Regulator TC2117. General Description. Features. Applications. Typical Application Device Selection Table

TC mA Fixed Low Dropout Positive Regulator TC2117. General Description. Features. Applications. Typical Application Device Selection Table 800mA Fixed Low Dropout Positive Regulator Features Fixed Output Voltages: 1.8V, 2.5V, 3.0V, 3.3V Very Low Dropout Voltage Rated 800mA Output Current High Output Voltage Accuracy Standard or Custom Output

More information

TC4467 TC4468 LOGIC-INPUT CMOS QUAD DRIVERS TC4467 TC4468 TC4469 GENERAL DESCRIPTION FEATURES APPLICATIONS ORDERING INFORMATION

TC4467 TC4468 LOGIC-INPUT CMOS QUAD DRIVERS TC4467 TC4468 TC4469 GENERAL DESCRIPTION FEATURES APPLICATIONS ORDERING INFORMATION TC TC LOGIC-INPUT CMOS FEATURES High Peak Output Current....A Wide Operating Range.... to V Symmetrical Rise and Fall Times... nsec Short, Equal Delay Times... nsec Latchproof! Withstands ma Inductive

More information

TC Low Power, Quad Input, 16-Bit Sigma-Delta A/D Converter Features Package Type 16-Pin PDIP 16-Pin QSOP TC3402 Applications

TC Low Power, Quad Input, 16-Bit Sigma-Delta A/D Converter Features Package Type 16-Pin PDIP 16-Pin QSOP TC3402 Applications +1.8 Low Power, Quad Input, 16-Bit Sigma-Delta A/D Converter Features 16-bit Resolution at Eight Conversions Per Second, Adjustable Down to 10-bit Resolution at 512 Conversions Per Second 1.8V 5.5V Operation,

More information

MCP V 10-Bit A/D Converter with SPI Serial Interface FEATURES PACKAGE TYPES APPLICATIONS FUNCTIONAL BLOCK DIAGRAM DESCRIPTION

MCP V 10-Bit A/D Converter with SPI Serial Interface FEATURES PACKAGE TYPES APPLICATIONS FUNCTIONAL BLOCK DIAGRAM DESCRIPTION 2.7V 1-Bit A/D Converter with SPI Serial Interface FEATURES PACKAGE TYPES 1-bit resolution ±1 LSB max DNL ±1 LSB max INL On-chip sample and hold SPI serial interface (modes, and 1,1) Single supply operation:

More information

TC652 Fan Control Demo Board User s Guide

TC652 Fan Control Demo Board User s Guide TC652 Fan Control Demo Board User s Guide 2002 Microchip Technology Inc. DS21506B Note the following details of the code protection feature on Microchip devices: Microchip products meet the specification

More information

AN798. TC4420/4429 Universal Power MOSFET Interface IC INTRODUCTION PARAMETERS AND ATTRIBUTES OF THE TC4420/4429 TIMING. Rise and Fall Times

AN798. TC4420/4429 Universal Power MOSFET Interface IC INTRODUCTION PARAMETERS AND ATTRIBUTES OF THE TC4420/4429 TIMING. Rise and Fall Times TC4420/4429 Universal Power MOSFET Interface IC AN798 Author: INTRODUCTION Ron Vinsant, Microchip Technology, Inc. The TC4420/4429 are 6A high-speed MOSFET drivers available in an 8-pin SOIC package, 8-pin

More information

TC7136 TC7136A. Low Power 3-1/2 Digit Analog-To-Digital Converters FEATURES GENERAL DESCRIPTION TYPICAL APPLICATIONS ORDERING INFORMATION

TC7136 TC7136A. Low Power 3-1/2 Digit Analog-To-Digital Converters FEATURES GENERAL DESCRIPTION TYPICAL APPLICATIONS ORDERING INFORMATION A Low Power -/2 Digit Analog-To- FEATURES Fast Overrange Recovery, Guaranteed First Reading Accuracy Low Temperature Drift Internal Reference... 70 ppm/ C Typ. A... 5ppm/ C Typ. Guaranteed Zero Reading

More information

27C64. 64K (8K x 8) CMOS EPROM PACKAGE TYPES FEATURES DESCRIPTION. This document was created with FrameMaker 404

27C64. 64K (8K x 8) CMOS EPROM PACKAGE TYPES FEATURES DESCRIPTION. This document was created with FrameMaker 404 This document was created with FrameMaker 44 64K (8K x 8) CMS EPRM 27C64 FEATURES PACKAGE TYPES High speed performance - 12 ns access time available CMS Technology for low power consumption - 2 ma Active

More information

TC1034/TC1035 Linear Building Block Single Operational Amplifiers in SOT Packages Features General Description Applications Device Selection Table

TC1034/TC1035 Linear Building Block Single Operational Amplifiers in SOT Packages Features General Description Applications Device Selection Table Linear Building Block Single Operational Amplifiers in SOT Packages Features Tiny SOT-23A Package Optimized for Single Supply Operation Ultra Low Input Bias Current: Less than 1pA Low Quiescent Current:

More information

AN763. Latch-Up Protection For MOSFET Drivers INTRODUCTION. CONSTRUCTION OF CMOS ICs PREVENTING SCR TRIGGERING. Grounds. Equivalent SCR Circuit.

AN763. Latch-Up Protection For MOSFET Drivers INTRODUCTION. CONSTRUCTION OF CMOS ICs PREVENTING SCR TRIGGERING. Grounds. Equivalent SCR Circuit. M Latch-Up Protection For MOSFET Drivers AN763 Author: INTRODUCTION Most CMOS ICs, given proper conditions, can latch (like an SCR), creating a short circuit from the positive supply voltage to ground.

More information

DATASHEET ICL7660, ICL7660A. Features. Applications. Pinouts. CMOS Voltage Converters. FN3072 Rev.7.00 Page 1 of 11. Oct 5, FN3072 Rev.7.

DATASHEET ICL7660, ICL7660A. Features. Applications. Pinouts. CMOS Voltage Converters. FN3072 Rev.7.00 Page 1 of 11. Oct 5, FN3072 Rev.7. DATASHEET ICL, ICLA CMOS Voltage Converters The Intersil ICL and ICLA are monolithic CMOS power supply circuits which offer unique performance advantages over previously available devices. The ICL performs

More information

HCS362. HCS362 Data Sheet Errata. Clarifications/Corrections to the Data Sheet: 1. Module: Low Voltage Detector LOW VOLTAGE DETECTOR

HCS362. HCS362 Data Sheet Errata. Clarifications/Corrections to the Data Sheet: 1. Module: Low Voltage Detector LOW VOLTAGE DETECTOR Data Sheet Errata HCS362 Clarifications/Corrections to the Data Sheet: In the Device Data Sheet (DS40189D), the following clarifications and corrections should be noted. 1. Module: Low Voltage Detector

More information

ICL7660S. Super Voltage Converter. Features. Applications. Ordering Information. Pinouts. Data Sheet January 2004 FN3179.3

ICL7660S. Super Voltage Converter. Features. Applications. Ordering Information. Pinouts. Data Sheet January 2004 FN3179.3 Data Sheet January FN9. Super Voltage Converter The Super Voltage Converter is a monolithic CMOS voltage conversion IC that guarantees significant performance advantages over other similar devices. It

More information

LM2662/LM2663 Switched Capacitor Voltage Converter

LM2662/LM2663 Switched Capacitor Voltage Converter LM2662/LM2663 Switched Capacitor Voltage Converter General Description The LM2662/LM2663 CMOS charge-pump voltage converter inverts a positive voltage in the range of 1.5V to 5.5V to the corresponding

More information

MCP V Dual Channel 12-Bit A/D Converter with SPI Serial Interface PACKAGE TYPES FEATURES APPLICATIONS FUNCTIONAL BLOCK DIAGRAM DESCRIPTION

MCP V Dual Channel 12-Bit A/D Converter with SPI Serial Interface PACKAGE TYPES FEATURES APPLICATIONS FUNCTIONAL BLOCK DIAGRAM DESCRIPTION 2.7V Dual Channel 12-Bit A/D Converter with SPI Serial Interface FEATURES 12-bit resolution ±1 LSB max DNL ±1 LSB max INL (-B) ±2 LSB max INL (-C) Analog inputs programmable as single-ended or pseudo-differential

More information

Design Alternatives To The TC682 For Performing Inverting Voltage Doubler Functions. DC/DC Converter +5V 6 V IN V OUT TC682 NC GND 5

Design Alternatives To The TC682 For Performing Inverting Voltage Doubler Functions. DC/DC Converter +5V 6 V IN V OUT TC682 NC GND 5 M AN80 Design Alternatives To The TC8 For Performing Inverting Voltage Doubler Functions Author: INTRODUCTION Pat Maresca Microchip Technology Inc. Creating a negative DC bias voltage from a positive DC

More information

27LV K (32K x 8) Low-Voltage CMOS EPROM FEATURES PACKAGE TYPES DESCRIPTION PDIP

27LV K (32K x 8) Low-Voltage CMOS EPROM FEATURES PACKAGE TYPES DESCRIPTION PDIP 256K (32K x 8) Low-oltage CMS EPRM FEATURES Wide voltage range 3. to 5.5 High speed performance - 2 ns access time available at 3. CMS Technology for low power consumption - 8 ma Active current at 3. -

More information

LM2660/LM2661 Switched Capacitor Voltage Converter

LM2660/LM2661 Switched Capacitor Voltage Converter LM2660/LM2661 Switched Capacitor Voltage Converter General Description The LM2660/LM2661 CMOS charge-pump voltage converter inverts a positive voltage in the range of 1.5V to 5.5V to the corresponding

More information

Distributed by: www.jameco.com 1-800-831-4242 The content and copyrights of the attached material are the property of its owner. This document was created with FrameMaker 404 64K (8K x 8) CMOS EEPROM 28C64A

More information

TC7650. Chopper Stabilized Operational Amplifier. Package Type. Features. Applications. Device Selection Table. 8-Pin DIP TC7650CPA.

TC7650. Chopper Stabilized Operational Amplifier. Package Type. Features. Applications. Device Selection Table. 8-Pin DIP TC7650CPA. Chopper Stabilized Operational Amplifier TC7650 Features Package Type Low Input Offset Voltage: 0.7µV Typ Low Input Offset Voltage Drift: 0.05µV/ C Max 8-Pin DIP Low Input Bias Current: 10pA Max C A 1

More information

TB059. Using The MCP2150 Developer s Board With The MCP2155 INTRODUCTION MCP2150 DEVELOPER S BOARD LAYOUT

TB059. Using The MCP2150 Developer s Board With The MCP2155 INTRODUCTION MCP2150 DEVELOPER S BOARD LAYOUT M TB059 Using The MCP50 Developer s Board With The MCP55 Author: INTRODUCTION Mark Palmer Microchip Technology Inc. This Technical Brief describes how the MCP50 Developer s Board can be used for development

More information

TC1030. Linear Building Block Quad Low Power Op Amp with Shutdown Modes. General Description. Features. Applications. Device Selection Table

TC1030. Linear Building Block Quad Low Power Op Amp with Shutdown Modes. General Description. Features. Applications. Device Selection Table Linear Building Block Quad Low Power Op Amp with Shutdown Modes Features Optimized for Single Supply Operation Small Package: 16-Pin QSOP Ultra Low Input Bias Current: Less than 1pA Low Quiescent Current,

More information

50mA, Frequency-Selectable, Switched-Capacitor Voltage Converters

50mA, Frequency-Selectable, Switched-Capacitor Voltage Converters 19-39; Rev ; /9 5mA, Frequency-Selectable, General Description The MAX6/MAX61 charge-pump voltage converters invert input voltages ranging from 1.5V to 5.5V, or double input voltages ranging from.5v to

More information

TC115. PFM/PWM Step-Up DC/DC Converter. Package Type. Features. Applications. General Description. Device Selection Table. Functional Block Diagram

TC115. PFM/PWM Step-Up DC/DC Converter. Package Type. Features. Applications. General Description. Device Selection Table. Functional Block Diagram PFM/PWM Step-Up DC/DC Converter Features High Efficiency at Low Output Load Currents via PFM Mode Assured Start-up at 0.9V 80µA (Typ) Supply Current 85% Typical Efficiency at 100mA 140mA Typical Output

More information

MCP3204/ V 4-Channel/8-Channel 12-Bit A/D Converters with SPI Serial Interface FEATURES PACKAGE TYPES APPLICATIONS FUNCTIONAL BLOCK DIAGRAM

MCP3204/ V 4-Channel/8-Channel 12-Bit A/D Converters with SPI Serial Interface FEATURES PACKAGE TYPES APPLICATIONS FUNCTIONAL BLOCK DIAGRAM 2.7V 4-Channel/8-Channel 12-Bit A/D Converters with SPI Serial Interface FEATURES 12-bit resolution ± 1 LSB max DNL ± 1 LSB max INL (MCP324/328-B) ± 2 LSB max INL (MCP324/328-C) 4 (MCP324) or 8 (MCP328)

More information

TC1240/TC1240A. Positive Doubling Charge Pumps with Shutdown in a SOT-23 Package. Features. General Description. Applications

TC1240/TC1240A. Positive Doubling Charge Pumps with Shutdown in a SOT-23 Package. Features. General Description. Applications M TC124/TC124A Positive Doubling Charge Pumps with Shutdown in a SOT-23 Package Features Charge Pumps in 6-Pin SOT-23A Package >99% Typical Voltage Conversion Efficiency Voltage Doubling Input Voltage

More information

TC7650. Chopper-Stabilized Operational Amplifier FEATURES GENERAL DESCRIPTION ORDERING INFORMATION

TC7650. Chopper-Stabilized Operational Amplifier FEATURES GENERAL DESCRIPTION ORDERING INFORMATION Chopper-Stabilized Operational mplifier FETURES Low Input Offset Voltage... 0.7µV Typ Low Input Offset Voltage Drift... 0.05µV/ C Max Low Input ias Current... 10p Max High Impedance Differential CMOS Inputs...

More information

TC7652. Low Noise, Chopper Stabilized Operational Amplifier. General Description. Features. Applications. Device Selection Table.

TC7652. Low Noise, Chopper Stabilized Operational Amplifier. General Description. Features. Applications. Device Selection Table. Low Noise, Chopper Stabilized Operational Amplifier Features Low Offset Over Temperature Range: 10µV Ultra Low Long Term Drift: 150nV/Month Low Temperature Drift: 100nV/ C Low DC Input Bias Current: 15pA

More information

AN867. Temperature Sensing With A Programmable Gain Amplifier INTRODUCTION INTERFACING THE PGA TO THERMISTORS

AN867. Temperature Sensing With A Programmable Gain Amplifier INTRODUCTION INTERFACING THE PGA TO THERMISTORS M AN867 Temperature Sensing With A Programmable Gain Amplifier Author: INTRODUCTION Bonnie C. Baker Microchip Technology Inc. Although it is simple to measure temperature in a stand-alone system without

More information

OBSOLETE TTL/CMOS INPUTS* TTL/CMOS OUTPUTS TTL/CMOS TTL/CMOS OUTPUTS DO NOT MAKE CONNECTIONS TO THESE PINS INTERNAL 10V POWER SUPPLY

OBSOLETE TTL/CMOS INPUTS* TTL/CMOS OUTPUTS TTL/CMOS TTL/CMOS OUTPUTS DO NOT MAKE CONNECTIONS TO THESE PINS INTERNAL 10V POWER SUPPLY a FEATURES kb Transmission Rate ADM: Small (. F) Charge Pump Capacitors ADM3: No External Capacitors Required Single V Power Supply Meets EIA-3-E and V. Specifications Two Drivers and Two Receivers On-Board

More information

TB003. An Introduction to KEELOQ Code Hopping INTRODUCTION. Remote Control Systems. The Solution. Code Scanning. Code Grabbing

TB003. An Introduction to KEELOQ Code Hopping INTRODUCTION. Remote Control Systems. The Solution. Code Scanning. Code Grabbing An Introduction to KEELOQ Code Hopping TB003 Author: INTRODUCTION Remote Control Systems Remote control via RF or IR is popular for many applications, including vehicle alarms and automatic garage doors.

More information

TC Bit Digital-to-Analog Converter with Two-Wire Interface TC1321. General Description. Features. Applications. Device Selection Table

TC Bit Digital-to-Analog Converter with Two-Wire Interface TC1321. General Description. Features. Applications. Device Selection Table 10-Bit Digital-to-Analog Converter with Two-Wire Interface Features 10-Bit Digital-to-Analog Converter 2.7-5.5V Single Supply Operation Simple SMBus/I 2 C TM Serial Interface Low Power: 350µA Operation,

More information

CMOS Switched-Capacitor Voltage Converters ADM660/ADM8660

CMOS Switched-Capacitor Voltage Converters ADM660/ADM8660 CMOS Switched-Capacitor Voltage Converters ADM66/ADM866 FEATURES ADM66: Inverts or Doubles Input Supply Voltage ADM866: Inverts Input Supply Voltage ma Output Current Shutdown Function (ADM866) 2.2 F or

More information

HT7660. CMOS Switched-Capacitor Voltage Converter. Features. Applications. General Description. Block Diagram

HT7660. CMOS Switched-Capacitor Voltage Converter. Features. Applications. General Description. Block Diagram CMOS Switched-Capacitor Voltage Converter Features Simple conversion of V DD to V DD Cascade connection (two devices are connected V OUT = 2 V DD ) Boost pin for higher switching frequency Easy to use

More information

HCS509. KEELOQ Code Hopping Decoder* FEATURES PACKAGE TYPE BLOCK DIAGRAM DESCRIPTION. Security. Operating. Other. Typical Applications

HCS509. KEELOQ Code Hopping Decoder* FEATURES PACKAGE TYPE BLOCK DIAGRAM DESCRIPTION. Security. Operating. Other. Typical Applications KEELOQ Code Hopping Decoder* HCS509 FEATURES Security Secure storage of manufacturer s key Secure storage of transmitter s keys NTQ109 compatible learning mode Up to six transmitters Master transmitter

More information

Obsolete Product(s) - Obsolete Product(s)

Obsolete Product(s) - Obsolete Product(s) HEX INVERTER (SINGLE STATE) HIGH SPEED: t PD = 5ns (TYP.) at V CC = 6V LOW POWER DISSIPATION: I CC = 1µA(MAX.) at T A =25 C HIGH NOISE IMMUNITY: V NIH = V NIL = 10% V CC (MIN.) SYMMETRICAL OUTPUT IMPEDANCE:

More information

LM828 Switched Capacitor Voltage Converter

LM828 Switched Capacitor Voltage Converter LM828 Switched Capacitor Voltage Converter General Description The LM828 CMOS charge-pump voltage converter inverts a positive voltage in the range of +1.8V to +5.5V to the corresponding negative voltage

More information

CMOS Micro-Power Comparator plus Voltage Follower

CMOS Micro-Power Comparator plus Voltage Follower Freescale Semiconductor Technical Data Rev 2, 05/2005 CMOS Micro-Power Comparator plus Voltage Follower The is an analog building block consisting of a very-high input impedance comparator. The voltage

More information

High Speed, +5 V, 0.1 F CMOS RS-232 Driver/Receivers ADM202/ADM203

High Speed, +5 V, 0.1 F CMOS RS-232 Driver/Receivers ADM202/ADM203 a FEATURES kb Transmission Rate ADM: Small (. F) Charge Pump Capacitors ADM: No External Capacitors Required Single V Power Supply Meets EIA--E and V. Specifications Two Drivers and Two Receivers On-Board

More information

Electromechanical Switch Replacement

Electromechanical Switch Replacement Electromechanical Switch Replacement Electronic Key, Button Dimmer and Potentiometer Dimmer Controller Author: Slav Slavov Ell Sliven, Bulgaria email: ell@sliven.osf.acad.bg APPLICATION OPERATION These

More information

TC1026. Linear Building Block Low Power Comparator with Op Amp and Voltage Reference. General Description. Features. Applications

TC1026. Linear Building Block Low Power Comparator with Op Amp and Voltage Reference. General Description. Features. Applications Linear Building Block Low Power Comparator with Op Amp and Voltage Reference Features Combines Low-Power Op Amp, Comparator and Voltage Reference in a Single Package Optimized for Single Supply Operation

More information

ADC Bit µp Compatible A/D Converter

ADC Bit µp Compatible A/D Converter ADC1001 10-Bit µp Compatible A/D Converter General Description The ADC1001 is a CMOS, 10-bit successive approximation A/D converter. The 20-pin ADC1001 is pin compatible with the ADC0801 8-bit A/D family.

More information

MCP1252/3. Low Noise, Positive-Regulated Charge Pump. Description. Features. Applications. Package Types

MCP1252/3. Low Noise, Positive-Regulated Charge Pump. Description. Features. Applications. Package Types M MCP1252/3 Low Noise, Positive-Regulated Charge Pump Features Inductorless, Buck/Boost, DC/DC Converter Low Power: 80 µa (Typical) High Output Voltage Accuracy: - ±2.5% (V OUT Fixed) 120 ma Output Current

More information

LM2685 Dual Output Regulated Switched Capacitor Voltage Converter

LM2685 Dual Output Regulated Switched Capacitor Voltage Converter Dual Output Regulated Switched Capacitor Voltage Converter General Description The LM2685 CMOS charge-pump voltage converter operates as an input voltage doubler, +5V regulator and inverter for an input

More information