Figure 12.Ensuring RST
Figure 13.Supply current vs. temperature (V
Figure 14.Supply current vs. temperature (V
Figure 15.Supply current vs. temperature (V
Figure 16.Supply current vs. temperature (V
Figure 17.Normalized V
Figure 18.Maximum V
Figure 19.Normalized V
Figure 20.Normalized V
The STM6717/18/19/20 and STM6777/78/79/80 supervisors are a family of low-voltage/lowsupply current processor (micro or DSP) supervisors, designed to monitor two (or three)
system power supply voltages. They are targeted at applications such as set-top boxes
(STBs), portable, battery-powered systems, networking, and communication systems.
All device options have a push-button-type manual reset input (MR
). The
STM6777/78/79/80 also includes an option which enables the user to delay the start of the
manual reset process from 6 µs (MRC pin left open) or more with external capacitor. The
delay is implemented by connecting the appropriately sized capacitor between the MRC pin
and V
Two of the three supplies monitored (V
factory-trimmed) thresholds (V
(typical 4 s delay with a 3.3 µF capacitor, see Table 7 on page 21).
SS
RST1
CC1
and V
and V
RST2
) have fixed (customer-selectable,
CC2
). The third voltage is monitored using an
externally adjustable RSTIN threshold (0.626 V internal reference).
If any of the three monitored voltages drop below its factory-trimmed or adjustable
thresholds, or if MR
RST
is maintained at low for a minimum delay period (t
their respective thresholds and MR
the correct reset output logic state when V
is asserted to logic low, a RST is asserted (driven low). Once asserted,
) after ALL supplies rise above
rec
returns to high. These devices are guaranteed to be in
CC1
and/or V
is greater than 0.8 V.
CC2
These devices are available in standard 5-pin or 6-pin SOT23 packages (see Tab le 1 o n
This pin is either left open or connected to VSS via a capacitor. By selecting the appropriate
capacitor, the manual reset process, initiated by pressing the push-button manual reset
input, can be delayed by any value from 6 µs or more (see Table 7 on page 21).
1.1.5 Primary supply voltage monitoring input (V
CC1
)
It also is the input for the primary reset threshold monitor. Available fixed (customerselectable, factory-programmed) reset thresholds include 4.63 V to 1.58 V.
1.1.6 Secondary supply voltage monitoring input (V
CC2
)
This function is available on the STM6717/18/19/20/77/78. Fixed (customer-selectable,
factory-programmed) reset thresholds include 3.08 V to 0.79 V.
This is a high impedance input. RST is driven low when the voltage at the RSTIN pin falls
below 0.626 V (internal reference voltage at this comparator). The monitored voltage reset
threshold is set with an external resistor-divider network.
1.Interfacing to processors with bi-directional reset pins
Most processors with bi-directional reset pins can interface directly to the open drain
RST
outputs (STM6717/19/77/79). Systems simultaneously requiring a push-pull RST
output and a bi-directional reset interface can be in logic contention. To prevent this
contention, connect a 4.7 kΩ resistor between RST
shown in Figure 11.
2. Ensuring a valid RST
output down to VCC=0 V
The STM67xx supervisors are guaranteed to be in the correct RST
when V
levels down to V
and/or V
CC1
is greater than 0.8 V. In applications which require valid reset
CC2
= 0, a pull-down resistor to active-low outputs (push-pull only, see
CC
Figure 12) will ensure that the reset line is valid while the reset output can no longer
sink or source current. This scheme does NOT work with the open drain outputs of the
STM6717/19/77/79.
The resistor value used is not critical, but it must be large enough not to load the reset
output when V
is above the reset threshold. For most applications, 100 kΩ is
CC
adequate.
and the processor’s reset I/O as
output logic state
Figure 11. STM67xx interface to processor with bi-directional reset pins
Stressing the device above the rating listed in the Absolute Maximum Ratings” table may
cause permanent damage to the device. These are stress ratings only and operation of the
device at these or any other conditions above those indicated in the Operating sections of
this specification is not implied. Exposure to Absolute Maximum Rating conditions for
extended periods may affect device reliability. Refer also to the STMicroelectronics SURE
Program and other relevant quality documents.
Table 4.Absolute maximum ratings
SymbolParameterValueUnit
T
STG
T
SLD
V
IO
V
CC1, VCC2
I
IO
Storage temperature (VCC off)–55 to 150°C
(1)
Lead solder temperature for 10 seconds260°C
Input or output voltage
–0.3 to V
–0.3 to V
CC1
CC2
Supply voltage–0.3 to 7.0V
Input or output current (all pins)20mA
SOT23-5654mW
P
D
1. Reflow at peak temperature of 260 °C. The time above 255 °C must not exceed 30 seconds.
Power dissipation
SOT23-6675mW
+ 0.3V
+ 0.3V
Doc ID 11469 Rev 817/30
Page 18
DC and AC parametersSTM6717/6718/6719/6720/STM6777/6778/6779/6780
5 DC and AC parameters
This section summarizes the operating measurement conditions, and the DC and AC
characteristics of the device. The parameters in the DC and AC characteristics tables that
follow, are derived from tests performed under the measurement conditions summarized in
Table 5: Operating and AC measurement conditions. Designers should check that the
operating conditions in their circuit match the operating conditions when relying on the
quoted parameters.
Table 5.Operating and AC measurement conditions
ParameterSTM67xxUnit
V
supply voltage0.8 to 5.5V
CC
Ambient operating temperature (T
Input rise and fall times≤ 5ns
Input pulse voltages0.2 to 0.8V
Input and output timing ref. voltages0.3 to 0.7V
)–40 to 85°C
A
CC
CC
V
V
Figure 25. AC testing input/output waveforms
0.8V
CC
0.2V
CC
Figure 26. MR
MR
RST
Figure 27. MR
MR
RST
timing waveform (STM6717/18/19/20)
t
MLMH
t
MLRL
t
rec
timing waveform (STM6777/78/79/80)
(1)
t
MLMH
t
MLRL
0.7V
0.3V
CC
CC
AI02568
AI10423a
1. By connecting a certain capacitor between the MRC pin and VSS, the RST can be delayed from 6 µs or
more (t
, see Table 7 on page 21).
MLMH
18/30Doc ID 11469 Rev 8
t
rec
AI10424c
Page 19
STM6717/6718/6719/6720/STM6777/6778/6779/6780DC and AC parameters
Table 6.DC and AC characteristics
Sym
V
CC
I
CC1
I
CC2
(2)
I
LI
I
LO
V
OL
V
OH
Alter-
native
DescriptionTest condition
Operating voltage0.85.5V
V
supply current
CC1
V
supply current
CC2
Input leakage current0 V = VIN = V
Open drain RST output
leakage current
Output low voltage (RST;
push-pull or open drain)
Output high voltage (RST;
push-pull only)
(1)
V
< 5.5 V, all I/O pins open1235µA
CC1
V
< 3.6 V, all I/O pins open823µA
CC1
V
< 3.6 V, all I/O pins open39µA
CC2
< 2.75 V, all I/O pins open2.57µA
V
CC2
CC
> V
V
CC1
RST
V
CC1
= 1 µA, RST asserted
I
SINK
V
CC1
= 50 µA, RST asserted
I
SINK
V
CC1
= 100 µA, RST asserted
I
SINK
V
CC1
= 1.2 mA, RST asserted
I
SINK
V
CC1
= 3.2 mA, RST asserted
I
SINK
≥ 1.8 V, I
V
CC1
RST
V
≥ 2.7 V, I
CC1
, V
RST1
CC2
not asserted
or V
or V
or V
or V
or V
≥ 0.8 V,
CC2
≥ 1.0 V,
CC2
≥ 1.2 V,
CC2
≥ 2.7 V,
CC2
≥ 4.5 V,
CC2
SOURCE
not asserted
SOURCE
> V
RST2
= 200 µA,
= 500 µA,
RST not asserted
MinTypMaxUnit
–1+1µA
;
0.8V
CC1
0.8V
CC1
0.5µA
0.3V
0.3V
0.3V
0.3V
0.4V
V
V
(3)
t
R
Reset thresholds
(4)
V
RST
V
TH1
Push-pull RST rise time
(STM6718/20/78/80)
V
reset threshold
CC1
V
≥ 4.5 V, I
CC1
RST not asserted
SOURCE
= 800 µA,
0.8V
CC1
V
Rise time measured from 10% to
90% of VCC;
525ns
CL = 5 pF, VCC = 3.3 V
L (falling)4.5004.625 4.750V
M (falling)4.2504.375 4.500V
T (falling)3.0003.075 3.150V
S (falling)2.8502.925 3.000V
R (falling)2.5502.625 2.700V
Z (falling)2.2502.313 2.375V
Y (falling)2.1252.188 2.250V
W (falling)1.6201.665 1.710V
V (falling)1.5301.575 1.620V
Doc ID 11469 Rev 819/30
Page 20
DC and AC parametersSTM6717/6718/6719/6720/STM6777/6778/6779/6780
In order to meet environmental requirements, ST offers these devices in different grades of
ECOPACK
specifications, grade definitions and product status are available at: www.st.com.
ECOPACK
®
packages, depending on their level of environmental compliance. ECOPACK®
®
is an ST trademark.
22/30Doc ID 11469 Rev 8
Page 23
STM6717/6718/6719/6720/STM6777/6778/6779/6780Package mechanical data
Updated Features; Ta bl e 6 , 8, 9, 11, 12; footnote 1 of Ta b le 4 ;
Section 6: Package mechanical data; added tape and reel
specifications (Figure 30, Ta bl e 1 0 , footnote 4 of Ta bl e 1 1 );
reformatted document.
Doc ID 11469 Rev 829/30
Page 30
STM6717/6718/6719/6720/STM6777/6778/6779/6780
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