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 ST6200L/01L/03L
LOW VOLTAGE 8-BIT ROM MCUs WITH A/D CONVERTER, TWO TIMERS & SAFE RESET
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Memories - 1K or 2K bytes Program memory with readout protection - 64 bytes RAM Clock, Reset and Supply Management - Enhanced reset system - Clock sources: crystal/ceramic resonator or RC network, external clock - 2 Power Saving Modes: Wait and Stop Interrupt Management - 4 interrupt vectors plus NMI and RESET - 9 external interrupt lines (on 2 vectors) 9 I/O Ports - 9 multifunctional bidirectional I/O lines - 4 alternate function lines - 3 high sink outputs (12mA) 2 Timers - Configurable watchdog timer - 8-bit timer/counter with a 7-bit prescaler Analog Peripheral - 8-bit ADC with 4 input channels (except on ST6203L) Instruction Set - 8-bit data manipulation - 40 basic instructions - 9 addressing modes - Bit manipulation
PDIP16
SO16
SSOP16
(See Section 1.3 for Ordering Information)
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Development Tools - Full hardware/software development package
Device Summary
Features Program memory - bytes RAM - bytes Operating Supply Analog Inputs Clock Frequency Operating Temperature Packages 4 4MHz Max 0C to +70C PDIP16 / SO16 / SSOP16 ST6200L 1K ST6201L 2K 64 2.4V to 3.9V ST6203L 1K
Rev. 1.1
July 2001
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ST6200L/01L/03L
1 GENERAL DESCRIPTION
1.1 INTRODUCTION The ST6200L/01L and 03L are low voltage mask programmed ROM version of ST62T00C,T01C and T03C OTP devices. They offer the same functionality as OTP devices, selecting as ROM options the options defined in the programmable option byte of the OTP version, with the exception of the LVD Reset and the OSG that are not available. Figure 1. Programming wave form 1.2 ROM READOUT PROTECTION If the ROM READOUT PROTECTION option is selected, a protection fuse can be blown to prevent any access to the program memory content. In case the user wants to blow this fuse, high voltage must be applied on the VPP pin.
Figure 2. Programming Circuit
VPP
0.5s min 100 s max
5V 47m F
15 14V typ 10 5 t VPP 100mA max 150 s typ
VSS VDD
100nF
PROTECT VPP 100nF ZPD15 15V
VR02003
14V
4mA typ t
VR02001
Note: ZPD15 is used for overvoltage protection
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1.3 ORDERING INFORMATION The following section deals with the procedure for transfer of customer codes to STMicroelectronics. 1.3.1 Transfer of Customer Code Customer code is made up of the ROM contents and the list of the selected mask options. The ROM contents are to be sent on diskette, or by electronic means, with the hexadecimal file generated by the development tool. All unused bytes must be set to FFh. The selected mask options are communicated to STMicroelectronics using the correctly filled OPTION LIST appended. See page 4. 1.3.2 Listing Generation and Verification When STMicroelectronics receives the user's ROM contents, a computer listing is generated from it. This listing refers exactly to the mask which will be used to produce the specified MCU. The listing is then returned to the customer who must thoroughly check, complete, sign and return it to STMicroelectronics. The signed listing forms a part of the contractual agreement for the creation of the specific customer mask. Table 3. ROM version Ordering Information
Sales Type ST6200LB1/XXX ST6200LM1/XXX ST6200LN1/XXX ST6201LB1/XXX ST6201LM1/XXX ST6201LN1/XXX ST6203LB1/XXX ST6203LM1/XXX ST6203LN1/XXX ROM 1036 Bytes 4 1836 Bytes 0 to +70C Analog inputs Temperature Range Package PDIP16 PSO16 SSOP16 PDIP16 PSO16 SSOP16 PDIP16 PSO16 SSOP16
The STMicroelectronics Sales Organization will be pleased to provide detailed information on contractual points. Table 1. ROM Memory Map for ST6200L,03L
Device Address 0000h-0B9Fh 0BA0h-0F9Fh 0FA0h-0FEFh 0FF0h-0FF7h 0FF8h-0FFBh 0FFCh-0FFDh 0FFEh-0FFFh Description Reserved User ROM Reserved Interrupt Vectors Reserved NMI Interrupt Vector Reset Vector
Table 2. ROM Memory Map for ST6201L
Device Address 0000h-087Fh 0880h-0F9Fh 0FA0h-0FEFh 0FF0h-0FF7h 0FF8h-0FFBh 0FFCh-0FFDh 0FFEh-0FFFh Description Reserved User ROM Reserved Interrupt Vectors Reserved NMI Interrupt Vector Reset Vector
1036 Bytes
None
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ST6200L/01L/03L
ST6200L/01L/03L MICROCONTROLLER OPTION LIST Customer: . . . . Address: .... .... Contact: .... Phone: .... Reference: . . . . ....... ....... ....... ....... ....... ....... ...... ...... ...... ...... ...... ...... ...... ...... ...... ...... ...... ...... ....... ....... ....... ....... ....... ....... ...... ...... ...... ...... ...... ...... ....... ....... ....... ....... ....... ....... ...... ...... ...... ...... ...... ...... ....... ....... ....... ....... ....... ....... ...... ...... ...... ...... ...... ...... ... ... ... ... ... ...
STMicroelectronics references: Device: [ ] ST6200L (1 KB) [ ] ST6201L (2 KB) [ ] ST6203L (1 KB)
Package:
Conditioning option: Temperature Range: Marking:
[ ] Dual in Line Plastic [ ] Small Outline Plastic with conditioning [ ] Shrink Small Outline Plastic with conditioning [ ] Standard (Tube) [ ] Tape & Reel [ ] 0C to + 70C
[ ] Standard marking [ ] Special marking: PDIP16 (9 char. max): _ _ _ _ _ _ _ _ _ PSO16 (6 char. max): _ _ _ _ _ _ SSOP16 (10 char. max): _ _ _ _ _ _ _ _ _ _ Authorized characters are letters, digits, '.', '-', '/' and spaces only. Watchdog Selection: NMI pull-up: Oscillator Selection: Readout Protection: [ ] Software Activation [ ] Hardware Activation [ ] Enabled [ ] Disabled [ ] Quartz crystal / Ceramic resonator [ ] RC network [ ] Enabled: [ ] Fuse is blown by STMicroelectronics [ ] Fuse can be blown by the customer [ ] Disabled [ ] Enabled [ ] Disabled
External STOP Mode Control:
Comments: Oscillator Frequency in the application: .................................. Supply Operating Range in the application: .................................. Notes: .............................................................. Date: .............................................................. Signature: . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
... ... ... ... ...
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ST6200L/01L/03L
2 ELECTRICAL CHARACTERISTICS
2.1 ABSOLUTE MAXIMUM RATINGS This product contains devices to protect the inputs against damage due to high static voltages, however it is advisable to take normal precaution to avoid application of any voltage higher than the specified maximum rated voltages. For proper operation it is recommended that VI and VO be higher than V SS and lower than V DD. Reliability is enhanced if unused inputs are connected to an appropriate logic voltage level (VDD or V SS). Power Considerations.The average chip-junction temperature, Tj, in Celsius can be obtained from: Tj=TA + PD x RthJA Where:TA = Ambient Temperature. RthJA =Package thermal resistance (junction-to ambient). PD = Pint + Pport. Pint =IDD x VDD (chip internal power). Pport =Port power dissipation (determined by the user).
Value -0.3 to 7.0 VSS - 0.3 to VDD + 0.3
(1)
Symbol VDD VI VO IO IVDD IVSS Tj TSTG Supply Voltage Input Voltage Output Voltage
Parameter
Unit V V V mA mA mA C C
Current Drain per Pin Excluding VDD, VSS Total Current into VDD (source) Total Current out of VSS (sink) Junction Temperature Storage Temperature
VSS - 0.3 to VDD + 0.3(1) 10 50 50 150 -60 to 150
Notes: - Stresses above those listed as "absolute maximum ratings" may cause permanent damage to the device. This is a stress rating only and functional operation of the device at these conditions is not implied. Exposure to maximum rating conditions for extended periods may affect device reliability. - (1) Within these limits, clamping diodes are guarantee to be not conductive. Voltages outside these limits are authorised as long as injection current is kept within the specification.
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ST6200L/01L/03L
2.2 RECOMMENDED OPERATING CONDITIONS
Symbol TA VDD fOSC IINJ+ IINJParameter Operating Temperature Operating Supply Voltage Oscillator Frequency2) Pin Injection Current (positive) Test Conditions 1 Suffix Version fOSC = 2MHz fOSC = 4MHz VDD = 2.4V VDD = 3.0V VDD = 2.4 to 3.9V Value Min. 0 2.4 3 0 0 Typ. Max. 70 3.9 3.9 2.0 4.0 +5 -5 Unit C V MHz mA mA
Pin Injection Current (negative) VDD = 2.4 to 3.9V
Notes: 1. Care must be taken in case of negative current injection, where adapted impedance must be respected on analog sources to not affect the A/D conversion. For a -1mA injection, a maximum 10 K is recommended. 2.An oscillator frequency above 1MHz is recommended for reliable A/D results
Figure 3. Maximum Operating FREQUENCY (Fmax) Versus SUPPLY VOLTAGE (V DD)
Maximum FREQUENCY (MHz)
4.0 3.5 3.0 2.5 2.0 1.5 1 0.5 2.1
FUNCTIONALITY IS NOT GUARANTEED IN THIS AREA
2.4
2.7
3.0
3.3
3.6
3.9
SUPPLY VOLTAGE (VDD)
The shaded area is outside the recommended operating range; device functionality is not guaranteed under these conditions.
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2.3 DC ELECTRICAL CHARACTERISTICS (TA = 0 to +70C unless otherwise specified)
Symbol Parameter Test Conditions Value Min. Typ. Max. Unit
VIL VIH VHys
Input Low Level Voltage All Input pins Input High Level Voltage All Input pins Hysteresis Voltage (1) All Input pins Low Level Output Voltage All Output pins
VDD x 0.2 VDD x 0.8 VDD= 3V VDD= 3.0V; IOL = +10A VDD= 3.0V; IOL = + 3.0mA VDD= 2.4V; IOL = + 1.5mA VDD= 3.0V; IOL = +10A VDD= 3.0V; IOL = + 8mA VDD= 3.0V; IOL = +12mA VDD= 2.4V; IOL = + 5mA VDD= 3.0V; IOH = -10A VDD= 3.0V; IOH = -1.5mA VDD= 2.4V; IOH = -10A All Input pins RESET pin VIN = VSS (No Pull-Up configured) VIN = VDD VIN = VSS VIN = VDD VRESET=VSS fOSC=4MHz VDD=3.0V fINT=4MHz VDD=3.0V ILOAD=0mA VDD=3.0V fINT=4MHz 0.2 0.1 0.8 0.8 0.1 0.8 1.3 0.8 2.9 2.0 2.3 100 400
V V V
VOL Low Level Output Voltage 20 mA Sink I/O pins VOH High Level Output Voltage All Output pins Pull-up Resistance Input Leakage Current All Input pins but RESET Input Leakage Current RESET pin Supply Current in RESET Mode Supply Current in RUN Mode (2) Supply Current in WAIT Mode (3) Supply Current in STOP Mode(3)
V
V 250 600 0.1 600 1200 1.0 -30 10 1.5 1.5 0.5 2 A
RPU IIL IIH
-8
-16
mA mA mA A
IDD
Notes: (1) Hysteresis voltage between switching levels (2) All peripherals running (3) All peripherals in stand-by
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DC ELECTRICAL CHARACTERISTICS (Cont'd) 2.4 AC ELECTRICAL CHARACTERISTICS ((TA = 0 to +70C unless otherwise specified
Symbol tREC fRC CIN COUT Parameter Supply Recovery Time (1) Internal frequency with RC oscillator2) 3) Input Capacitance Output Capacitance VDD=3.0V R=47k R=100k R=470k All Inputs Pins All Outputs Pins Test Conditions Value Min. 100 2.5 1.4 450 3 1.7 520 3.5 2.1 600 10 10 Typ. Max. Unit ms MHz MHz kHz pF pF
Notes: 1. Period for which VDD has to be connected at 0V to allow internal Reset function at next power-up. 2 An oscillator frequency above 1MHz is recommended for reliable A/D results. 3. Measure performed with OSCin pin soldered on PCB, with an around 2pF equivalent capacitance.
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2.5 A/D CONVERTER CHARACTERISTICS (TA = 0 to +70C unless otherwise specified)
Symbol Res ATOT tC ZIR FSR ADI ACIN Parameter Resolution Total Accuracy (1) (2) Conversion Time Zero Input Reading Full Scale Reading fOSC > 1.2MHz, VDD=3.0V fOSC > 1.2MHz, VDD=2.4V fOSC > 32kHz, VDD=3.0V fOSC = 2MHz fOSC = 4 MHz Conversion result when VIN = VSS Conversion result when VIN = VDD Test Conditions Min. Value Typ. 8 Max. 25 35 50 280 140 00 FF 1.0 2 5 Unit Bit mV s Hex Hex A pF
Analog Input Current During VDD= 4.0V Conversion Analog Input Capacitance
Notes: 1. Noise at VDD, VSS <10mV 2. With oscillator frequencies less than 1MHz, the A/D Converter accuracy is decreased.
2.6 TIMER CHARACTERISTICS ((TA = 0 to +70C unless otherwise specified)
Symbol Parameter Test Conditions Min. Value Typ. Max. Unit
fIN tW
Input Frequency on TIMER Pin Pulse Width at TIMER Pin VDD = 2.4V 250
fINT --------4
MHz ns
.
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ST6200L/01L/03L
Notes:
Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products are not authorized for use as critical components in life support devices or systems without the express written approval of STMicroelectronics. The ST logo is a registered trademark of STMicroelectronics (c)2001 STMicroelectronics - All Rights Reserved. Purchase of I2C Components by STMicroelectronics conveys a license under the Philips I2C Patent. Rights to use these components in an I2C system is granted provided that the system conforms to the I2C Standard Specification as defined by Philips. STMicroelectronics Group of Companies Australia - Brazil - China - Finland - France - Germany - Hong Kong - India - Italy - Japan - Malaysia - Malta - Morocco - Singapore - Spain Sweden - Switzerland - United Kingdom - U.S.A. http://www.st.com
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