IC MCU 8BIT OTP 4K 20 PDIP

ST62T20CB6

Manufacturer Part NumberST62T20CB6
DescriptionIC MCU 8BIT OTP 4K 20 PDIP
ManufacturerSTMicroelectronics
SeriesST6
ST62T20CB6 datasheet
 


Specifications of ST62T20CB6

Core ProcessorST6Core Size8-Bit
Speed8MHzPeripheralsLVD, POR, WDT
Number Of I /o12Program Memory Size4KB (4K x 8)
Program Memory TypeOTPRam Size64 x 8
Voltage - Supply (vcc/vdd)3 V ~ 6 VData ConvertersA/D 8x8b
Oscillator TypeInternalOperating Temperature-40°C ~ 85°C
Package / Case20-DIP (0.300", 7.62mm)Controller Family/seriesST6
No. Of I/o's12Ram Memory Size64Byte
Cpu Speed8MHzNo. Of Timers1
Rohs CompliantYesProcessor SeriesST62T2x
CoreST6Data Bus Width8 bit
Data Ram Size64 BMaximum Clock Frequency8 MHz
Number Of Programmable I/os12Number Of Timers2
Operating Supply Voltage3 V to 6 VMaximum Operating Temperature+ 85 C
Mounting StyleThrough HoleDevelopment Tools By SupplierST622XC-KIT/110, ST62GP-EMU2, ST62E2XC-EPB/110, ST62E6XC-EPB/US, STREALIZER-II
Minimum Operating Temperature- 40 COn-chip Adc8 bit
Lead Free Status / RoHS StatusLead free / RoHS CompliantEeprom Size-
Connectivity-Other names497-2098-5
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Page 70/104

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ST6208C/ST6209C/ST6210C/ST6220C
SUPPLY CURRENT CHARACTERISTICS (Cont’d)
10.4.3 STOP Mode
Symbol
Parameter
Supply current in STOP mode
I
DD
(see
Figure 47
&
Figure
Notes:
1. Typical data are based on V
=5.0V at T
DD
2. All I/O pins in input with pull-up mode (no load), all peripherals in reset state, OSG and LVD disabled, option bytes
programmed to 00H. Data based on characterization results, tested in production at V
3. Maximum STOP consumption for -40°C<Ta<90°C
4. Maximum STOP consumption for -40°C<Ta<125°C
Figure 47. Typical I
in STOP vs Temperature
DD
for OTP devices
IDD [nA]
1200
Ta=-40°C
Ta=95°C
Ta=25°C
Ta=125°C
1000
800
600
400
200
0
3
4
VDD [V]
70/104
1
Conditions
OTP devices
2)
48)
ROM devices
=25°C.
A
Figure 48. Typical I
for ROM devices
IDD [nA]
1500
1000
500
0
5
6
1)
Typ
Max
3)
10
0.3
4)
20
3)
2
0.1
4)
20
max. and f
max.
DD
CPU
in STOP vs Temperature
DD
Ta=-40°C
Ta=95°C
Ta=25°C
Ta=125°C
3
4
5
VDD [V]
Unit
μA
6