XC6124C532ER-G [TOREX]

IC WATCHDOG TIMER 6-USP;
XC6124C532ER-G
型号: XC6124C532ER-G
厂家: Torex Semiconductor    Torex Semiconductor
描述:

IC WATCHDOG TIMER 6-USP

文件: 总26页 (文件大小:464K)
中文:  中文翻译
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XC6121/XC6122  
XC6123/XC6124Series  
ETR0209-011b  
Voltage Detector with Watchdog Function and ON/OFF Control (VDF=1.6V~5.0V)  
GENERAL DESCRIPTION  
The XC6121/XC6122/XC6123/XC6124 series is a group of high-precision, low current consumption voltage detectors with  
watchdog functions incorporating CMOS process technology. The series consist of a reference voltage source, delay circuit,  
comparator, and output driver. With the built-in delay circuit, the series do not require any external components to output  
signals with release delay time. The output type is VDFL low when detected. The EN/ENB pin can control ON and OFF of the  
watchdog functions. By setting the EN/ENB pin to low or high level, the watchdog function can be OFF while the voltage  
detector remains operation. Since the EN/ENB pin of the XC6122 and XC6124 series is internally pulled up to the VIN pin or  
pulled down to the VSS pin, these series can be used with the EN/ENB pin left open when the watchdog functions is used. The  
detect voltages are internally fixed 1.6V ~ 5.0V in increments of 0.1V, using laser trimming technology. Six watchdog timeout  
periods are available in a range from 50ms to 1.6s. Five release delay times are available in a range from 3.13ms to 400ms.  
APPLICATIONS  
FEATURES  
Detect Voltage Range  
: 1.6V ~ 5.0V, +2%  
(0.1V increments)  
: VDFL x 5% (TYP.)  
: 1.0V ~ 6.0V  
Microprocessor watchdog monitoring  
and reset circuits  
Hysteresis Width  
Operating Voltage Range  
Detect Voltage Temperature  
Characteristics  
Output Configuration  
Watchdog Pin  
Memory battery backup circuits  
System power-on reset circuits  
Power failure detection  
: +100ppm/OC (TYP.)  
: N-channel open drain  
: Watchdog input  
If watchdog input maintains ‘H’ or  
‘L’ within the watchdog timeout  
period, a reset signal is output  
from the RESETB pin.  
: When the EN/ENB pin voltage is  
set to low or high level, the  
watchdog function is forced off.  
: 400ms, 200ms, 100ms, 50ms,  
3.13ms (TYP.)  
EN/ENB Pin  
Release Delay Time  
Watchdog Timeout Period  
: 1.6s, 800ms, 400ms, 200ms,  
100ms, 50ms (TYP.)  
Operating Ambient Temperature  
: -40~ +85℃  
: SOT-25, USP-6C  
: EU RoHS Compliant, Pb Free  
Packages  
Environmentally Friendly  
TYPICAL APPLICATION CIRCUIT TYPICAL PERFORMANCE  
CHARACTERISTICS  
Supply Current vs. Input Voltage  
XC6121~XC6124(V =2.7V)  
DF  
14.0  
12.0  
10.0  
8.0  
6.0  
4.0  
2.0  
0
Ta=85℃  
Ta=25℃  
Ta=-40℃  
0
1
2
3
4
5
6
Input Voltage:ꢀVIN (V)  
1/26  
XC6121/XC6122/XC6123/XC6124 Series  
PIN CONFIGURATION  
USP-6C  
(BOTTOM VIEW)  
SOT-25  
(TOP VIEW)  
* The dissipation pad for the USP-6C package should be  
solder-plated in reference mount pattern and metal masking  
so as to enhance mounting strength and heat release. If  
the pad needs to be connected to other pins, it should be  
connected to the VSS (No. 5) pin.  
PIN ASSIGNMENT  
PIN NUMBER  
PIN NAME  
FUNCTION  
SOT-25  
USP-6C  
RESETB  
VSS  
Reset Output  
Ground  
1
2
3
4
5
-
4
5
2
1
6
3
EN/ENB  
WD  
Watchdog ON/OFF Control  
Watchdog  
VIN  
Power Input  
NC  
No Connection  
2/26  
XC6121/XC6122/XC6123/XC6124  
Series  
PRODUCT CLASSIFICATION  
Selection Guide  
RESET OUTPUT  
SERIES  
EN/ENB PIN FUNCTION  
HYSTERESIS  
EN/ENB Input  
Logic(*2)  
Pull-Up or Down  
Resistor  
VDFL (RESETB)(*1)  
N-channel open drain  
N-channel open drain  
N-channel open drain  
N-channel open drain  
VDFH (RESET)  
With No Pull-Up  
Resistor  
XC6121  
XC6122  
XC6123  
XC6124  
-
-
-
-
EN  
EN  
With Pull-Up  
Resistor  
Available:  
VDFL x 5% (TYP.)  
With No Pull-Down  
Resistor  
ENB  
ENB  
With Pull-Down  
Resistor  
(*1) The output type of RESETB is set to L level at the time of detection.  
(*2) EN input logic: The watchdog function turns on when the EN pin becomes high level.  
ENB input logic: The watchdog function turns on when the ENB pin becomes low level.  
Ordering Information  
(
)
XC6121①②③④⑤⑥-⑦ *2 : N-channel Open Drain Output (RESETB), EN Pin: No Pull-Up Resistor  
(
)
XC6122①②③④⑤⑥-⑦ *2 : N-channel Open Drain Output (RESETB), EN Pin: Pull-Up Resistor  
(
)
XC6123①②③④⑤⑥-⑦ *2 : N-channel Open Drain Output (RESETB), ENB Pin: No Pull-Down Resistor  
(
)
XC6124①②③④⑤⑥-⑦ *2 : N-channel Open Drain Output (RESETB), ENB Pin: Pull-Down Resistor  
DESIGNATOR  
ITEM  
SYMBOL  
DESCRIPTION  
A
C
D
E
F
2
3.13ms (TYP.)  
50ms (TYP.)  
100ms (TYP.)  
200ms (TYP.)  
400ms (TYP.)  
50ms (TYP.)  
100ms (TYP.)  
200ms (TYP.)  
400ms (TYP.)  
1.6s (TYP.)  
Release Delay Time(*1)  
3
4
Watchdog Timeout Period  
Detect Voltage  
5
6
7
800ms (TYP.)  
Detect voltage  
③④  
16 ~ 50  
ex.) 4.5V: ③⇒4, ④⇒5  
SOT-25 (3,000/Reel)  
SOT-25 (3,000/Reel)  
USP-6C (3,000/Reel)  
USP-6C (3,000/Reel)  
MR  
MR-G  
ER  
Packages  
(*2)  
⑤⑥-⑦  
(Order Unit)  
ER-G  
(*1) Please set the release delay time shorter than or equal to the watchdog timeout period.  
ex.) XC6121D327MR or XC6121D627MR  
(*2) The “-G” suffix denotes Halogen and Antimony free as well as being fully EU RoHS compliant.  
3/26  
XC6121/XC6122/XC6123/XC6124 Series  
BLOCK DIAGRAMS  
XC6121 Series  
N-ch Open Drain Output  
XC6122 Series  
N-ch Open Drain Output  
4/26  
XC6121/XC6122/XC6123/XC6124  
Series  
BLOCK DIAGRAMS (Continued)  
XC6123 Series  
N-ch Open Drain Output  
XC6124 Series  
N-ch Open Drain Output  
5/26  
XC6121/XC6122/XC6123/XC6124 Series  
ABSOLUTE MAXIMUM RATINGS  
O
Ta=25 C  
PARAMETER  
Input Voltage  
SYMBOL  
VIN  
RATINGS  
UNITS  
VSS -0.3 ~ 7.0  
VSS-0.3VIN+0.37.0  
VSS -0.3 ~ 7.0  
20  
V
V
VEN/VENB  
VWD  
V
Output Current  
Output Voltage  
IRBOUT  
mA  
V
VSS -0.3 ~ 7.0  
VRESETB  
SOT-25  
USP-6C  
250  
120  
Power Dissipation  
Pd  
mW  
O
Operating Ambient Temperature  
Storage Temperature  
Topr  
Tstg  
-40 ~ +85  
-55 ~ +125  
C
O
C
6/26  
XC6121/XC6122/XC6123/XC6124  
Series  
Ta=25 OC  
ELECTRICAL CHARACTERISTICS  
PARAMETER  
SYMBOL  
CONDITIONS  
MIN.  
TYP.  
MAX.  
UNITS CIRCUIT  
VDFL(T)  
× 0.98  
VDFL  
VDFL(T)  
× 1.02  
VDFL  
Detect Voltage  
VDFL  
VDFL(T)  
VDFL  
V
V
V
EN=VSS  
Hysteresis Width  
VHYS  
VEN=VSS  
× 0.02 × 0.05 × 0.08  
VIN=VDFL(T)×0.9V  
-
5
11  
Supply Current (*1)  
Operating Voltage  
ISS  
VIN  
WD=OPEN  
VIN=VDFL(T)×1.1V  
VIN=6.0V  
-
10  
16  
μA  
-
12  
-
0.5  
18  
6.0  
-
1.0  
0.15  
V
VIN=1.0V  
VIN=2.0V (VDFL(T)> 2.0V)  
VIN=3.0V (VDFL(T) >3.0V)  
VIN=4.0V (VDFL(T) >4.0V)  
O
2.0  
3.0  
3.5  
2.5  
3.5  
4.0  
-
-
-
N-ch.  
VDS=0.5V  
Output Current  
IRBOUT  
mA  
Temperature  
Characteristics  
VDFL /  
O
O
ToprVDFL-40 C < Topr < 85 C  
-
+100  
-
ppm/ C  
2.00  
37  
3.13  
50  
5.00  
63  
Time until VIN is increased from  
Release Delay Time  
(VDFL<1.8V)  
1.0V to 2.0V  
tDR  
ms  
75  
100  
200  
400  
3.13  
50  
125  
250  
500  
5.00  
63  
and attains to the release time level,  
and the Reset output pin releases.  
150  
300  
2.00  
37  
Time until VIN is increased from  
1.0V to (VDFL x 1.1V)  
and attains to the release time level,  
and the Reset output pin releases.  
Release Delay Time  
(VDFL>1.9V)  
tDR  
ms  
75  
100  
200  
400  
125  
250  
500  
150  
300  
Time until VIN is decreased from 6.0V to  
1.0V and attains to the detect voltage  
level, and the Reset output pin detects  
while the WD pin left open.  
Detect Delay Time  
tDF  
-
5.5  
33  
μs  
VDFL  
Leakage Current  
ILEAK  
VIN=6.0V, VRESETB=6.0V  
-
0.01  
0.1  
μA  
37  
75  
50  
100  
200  
400  
800  
1600  
50  
63  
125  
250  
500  
1000  
2000  
63  
Time until VIN increases form  
1.0V to 2.0V and  
the Reset output pin is released to go  
into the detection state. (WD=OPEN)  
Watchdog  
Timeout Period  
(VDFL<1.8V)  
150  
300  
600  
1200  
37  
tWD  
ms  
ms  
75  
100  
200  
400  
800  
1600  
125  
250  
500  
1000  
2000  
Time until VIN increases from  
1.0V to (VDFLx1.1V)  
and the Reset output pin is released to  
go into the detection state. (WD=OPEN)  
Watchdog  
Timeout Period  
(VDFL>1.9V)  
150  
300  
600  
1200  
tWD  
7/26  
XC6121/XC6122/XC6123/XC6124 Series  
ELECTRICAL CHARACTERISTICS (Continued)  
Ta=25 OC  
PARAMETER  
SYMBOL  
CONDITIONS  
MIN.  
TYP.  
-
MAX.  
-
UNITS CIRCUIT  
VIN=6.0V,  
Watchdog  
Minimum Pulse Width  
tWDIN  
Apply pulse from 6.0V to 0V to the WD  
pin.  
300  
ns  
Watchdog  
High Level Voltage  
Watchdog  
VWDH  
VWDL  
RWD  
VIN=VDFL x 1.1V ~ 6.0V  
VIN=VDFL x 1.1V ~ 6.0V  
VWD=6V, RWD=VWD/IWD  
VIN x 0.7  
-
6
VIN x 0.3  
900  
V
V
0
300  
1.3  
0
-
Low Level Voltage  
Watchdog  
Pull-down Resistance  
EN/ENB  
600  
kΩ  
V
VENH/VENBH VIN=VDFL x 1.1V ~ 6.0V  
VENL/VENBL VIN=VDFL x 1.1V ~ 6.0V  
-
-
VIN  
High Level Voltage  
EN/ENB  
0.35  
V
Low Level Voltage  
EN Pull-up  
REN  
VIN=6.0V, VEN=0V, REN=VIN / IEN  
VIN=6.0V, VENB=6V, RENB=VENB / IENB  
Resistance (*2)  
ENB Pull-down  
Resistance (*3)  
1.0  
1.6  
2.4  
MΩ  
RENB  
NOTE:  
*
In case where no EN/ENB pin’s condition written in the test condition field, VEN=VIN and VENB=VSS  
** VDFL(T)=Setting detect voltage value  
(*1) The condition when the watchdog pin is ON.  
.
The EN/ENB pin is CMOS input. For the XC6122 (pull-up resistor) and XC6124 (pull-down resistor),  
supply current increases in the following values when the watchdog function is OFF.  
XC6122 SeriesVIN-VEHL/1.6MΩ(TYP.)  
XC6124 SeriesVEHBH/1.6MΩ(TYP.)  
(*2) For the XC6122 series only.  
(*3) For the XC6124 series only.  
8/26  
XC6121/XC6122/XC6123/XC6124  
Series  
OPERATIONAL EXPLANATION  
The XC6121/6122/6123/6124 series compare, using the error amplifier, the voltage of the internal voltage reference source  
with the voltage divided by R1, R2 and R3 connected to the VIN pin. The resulting output signal from the error amplifier  
activates the watchdog logic, delay circuit and the output driver. When the VIN pin voltage gradually falls and finally reaches  
the detect voltage, the RESETB pin output goes from high to low in the case of the VDFL type ICs.  
<RESETB / RESET Pin Output Signal>  
* VDFL (RESETB) type - output signal: Low when detected.  
The RESETB pin output goes from high to low whenever the VIN pin voltage falls below the detect voltage. The RESETB pin  
remains low for the release delay time (tDR) after the VIN pin voltage reaches the release voltage. If neither rising nor falling  
signals are applied to the WD pin within the watchdog timeout period, the RESETB pin output remains low for the release  
delay time (tDR), and thereafter the RESET pin outputs high level signal.  
<Hysteresis>  
When the internal comparator output is high, the NMOS transistor connected in parallel to R3 is turned ON, activating the  
hysteresis circuit. The difference between the release and detect voltages represents the hysteresis width, as shown by the  
following calculations:  
VDFL (detect voltage) = (R1+R2+R3) x Vref / (R2+R3)  
VDR (release voltage) = (R1+R2) x Vref / (R2)  
VHYS (hysteresis width) =VDR-VDFL (V)  
VDR > VDFL  
* Please refer to the block diagrams for R1, R2, R3 and Vref.  
* Hysteresis width is selectable from VDFL x 0.05V (TYP.).  
<Watchdog (WD) Pin>  
The series use a watchdog timer to detect malfunction or “runaway” of the microprocessor. If neither rising nor falling signals  
are applied from the microprocessor within the watchdog timeout period, the RESETB pin output maintains the detection state  
for the release delay time (tDR), and thereafter the RESETB pin outputs low to high signal. The watchdog pin is pulled down  
to the VSS internally. When the watchdog pin is not connected, A reset signal comes out after the watchdog timeout period.  
Six watchdog timeout period settings (tWD) are available in 1.6s, 800ms, 400ms, 200ms, 100ms, and 50ms.  
<EN Pin>  
In case where the watchdog function is not used, When the EN pin input driven to low level, only the watchdog function is  
forced off while the detect voltage circuit remains operation. For using the watchdog function, the EN pin should be used in  
high level. Even after the input voltage and the EN pin voltage are driven back high, the RESETB pin output maintains the  
detection state for the release delay time (TDR). (Refer to the TIMING CHART 1-.) The watchdog function recovers  
immediately when the input voltage becomes higher than the release voltage and the EN pin voltage driven from low to high  
level. (Refer to the TIMING CHART 1-.) A diode, which is an input protection element, is connected between the EN pin  
and VIN pin. Therefore, if the EN pin is applied voltage that exceeds VIN, the current will flow to VIN through the diode. For  
avoiding any damage to the IC, please use this IC within the stated maximum ratings (VSS -0.3 ~ VIN +0.3) on the EN pin.  
<ENB Pin>  
In case where the watchdog function is not used, when the ENB pin input driven to high level, only the watchdog function is  
forced off while the detect voltage circuit remains operation. For using the watchdog function, the ENB pin should be used in  
low level. Even after the input voltage and the ENB pin voltage are driven back low, the RESETB pin output maintains the  
detection state for the release delay time (tDR). (Refer to the TIMING CHART 2-.) The watchdog function recovers  
immediately when the input voltage becomes higher than the release voltage and the ENB pin voltage driven from high to low  
level. (Refer to the TIMING CHART 2-.) A diode, which is an input protection element, is connected between the ENB pin  
and VIN pin. Therefore, if the ENB pin is applied voltage that exceeds VIN, the current will flow to VIN through the diode. For  
avoiding any damage to the IC, please use this IC within the stated maximum ratings (VSS -0.3 ~ VIN +0.3) on the ENB pin.  
<Release Delay Time>  
Release delay time (tDR) is the time that elapses from when the VIN pin reaches the release voltage, or when the watchdog  
timeout period expires with no rising signal applied to the WD pin, until the RESETB pin output is released from the detection  
state. Five release delay time (tDR) watchdog timeout period settings are available in 400ms, 200ms, 100ms, 50ms, and  
3.13ms.  
<Detect Delay Time>  
Detect Delay Time (tDF) is the time that elapses from when the VIN pin voltage falls to the detect voltage until the RESETB pin  
output goes into the detection state.  
9/26  
XC6121/XC6122/XC6123/XC6124 Series  
TIMING CHARTS  
1. XC6121/XC6122 Series (EN products)  
N-ch Open Drain Output (Rpull=100kΩ)  
Hysteresis Width  
tDF (N-ch Open Drain Output, Rpull=100kΩ)  
10/26  
XC6121/XC6122/XC6123/XC6124  
Series  
TIMING CHARTS (Continued)  
2. XC6123/XC6124 Series (ENB products)  
N-ch Open Drain Output (Rpull=100kΩ)  
Hysteresis Width  
tDF (N-ch Open Drain Output, Rpull=100kΩ)  
11/26  
XC6121/XC6122/XC6123/XC6124 Series  
NOTES ON USE  
1. Please use this IC within the stated maximum ratings. For temporary, transitional voltage drop or voltage rising  
phenomenon, the IC is liable to malfunction should the ratings be exceeded.  
2. When a resistor is connected between the VIN pin and the input, the VIN voltage drops while the IC is operating and a  
malfunction may occur as a result of the IC’s through current.  
3. In order to stabilize the IC’s operations, please ensure that the VIN pin’s input frequency’s rise and fall times are more than  
1 μ s/V.  
4. Noise at the power supply may cause a malfunction of the watchdog operation or the voltage detector. In such case,  
please strength VIN and GND lines. Also, please connect a capacitor such as 0.22μF between the VIN pin and the GND pin  
and evaluate the device on the actual board carefully before use.  
5. Protecting against a malfunction while the watchdog time out period, an ignoring time (no reaction time) occurs to the rise  
and fall times. Referring to the figure below, the ignoring time (no reaction time) lasts for 900μs at maximum. (refer to the  
Figure1 below)  
6. The EN pin of the XC6121 series is not internally pulled up. When using the watchdog function, please drive the VEN pin  
in high level. The EN pin of the XC6122 series is internally pulled up. The watchdog function can be used even the EN  
pin left open. The ENB pin of the XC6123 series is not internally pulled down. When using the watchdog function,  
please drive the VENB pin in low level. The ENB pin of the XC6124 series is internally pulled down. The watchdog function  
can be used even the ENB pin left open.  
7. Torex places an importance on improving our products and its reliability.  
However, by any possibility, we would request user fail-safe design and post-aging treatment on system or equipment.  
[Figure1]  
12/26  
XC6121/XC6122/XC6123/XC6124  
Series  
PIN LOGIC CONDITIONS  
PIN NAME  
LOGIC  
H
CONDITIONS  
VIN>VDFL+VHYS  
PIN NAME LOGIC  
CONDITIONS  
The state maintaining WD>VWDH  
for more than tWD  
H
L
VIN  
The state maintaining WD<VWDL  
for more than tWD  
L
VIN<VDFL  
WD  
H
L
VEN/VENB1.30V  
VEN/VENB0.35V  
LH  
HL  
VWDLVWDH, 300nstWDINtWD  
VWDHVWDL, 300nstWDINtWD  
EN/ENB  
NOTE:  
V
V
V
V
DFL: Detect Voltage  
HYS: Hysteresis Range  
WDH: WD High Level Voltage  
WDL: WD Low Level Voltage  
tWDIN: WD Pulse Width  
tWD: WD Timeout Period  
For the details of each parameter, please see the electrical characteristics.  
FUNCTION CHART  
XC6121/XC6122  
VEN  
XC6123/XC6124  
VENB  
(*2)  
VIN  
H
VWD  
VRESETB  
H
L
Repeating detect and release (HLH)  
H
L
L
OPEN  
LH  
H
H
L
H
L
H
L
*1  
NOTE:  
*1: Including all logics of the WD (VWD=H, L, OPEN, HL, LH).  
*2: When the VRESETB is High, the circuit is in the release state.  
When the VRESETB is Low, the circuit is in the detection state.  
*3: VIN=L and VEN/VENB=H can not be combined because the rated input voltage of the EN/ENB pin is Vss-0.3V to VIN+0.3V.  
*4: The RESETB pin becomes indefinite operation while 0.35V<VEN/VENB<1.3V.  
*5: The EN pin of the XC6121 series is not internally pulled up. When using the watchdog function, please drive the VEN pin in high  
level. The EN pin of the XC6122 series is internally pulled up. The watchdog function can be used even the EN pin left open.  
The ENB pin of the XC6123 series is not internally pulled down. When using the watchdog function, please drive the VENB pin in  
low level. The ENB pin of the XC6124 series is internally pulled down. The watchdog function can be used even the ENB pin  
left open.  
13/26  
XC6121/XC6122/XC6123/XC6124 Series  
TEST CIRCUITS  
Circuit ①  
Circuit ②  
Circuit ③  
VDS=0.5V  
DS=6.0V when measuring  
Leakage current  
V
14/26  
XC6121/XC6122/XC6123/XC6124  
Series  
TEST CIRCUITS (Continued)  
Circuit ④  
Circuit ⑤  
Circuit ⑥  
15/26  
XC6121/XC6122/XC6123/XC6124 Series  
TEST CIRCUITS (Continued)  
Circuit ⑦  
Circuit ⑧  
100kΩ  
Measurement waveform  
VIN  
RESETB  
WD  
EN/ENB  
VSS  
V
Note: The above reference is about the EN/ENB logic operation.  
Circuit ⑨  
100kΩ  
VIN  
RESETB  
WD  
REN=VIN/IEN  
IEN  
EN/ENB  
A
VSS  
IENB  
RENB=VENB/IENB  
Note:  
XC6122 series has EN pin,  
XC6124 Series has ENB pin.  
16/26  
XC6121/XC6122/XC6123/XC6124  
Series  
TYPICAL PERFORMANCE CHARACTERISTICS  
1.Supply Current vs. Input Voltage  
XC6121~XC6124(V =1.6V)  
DF  
XC6121~XC6124(V =2.7V)  
DF  
14.0  
12.0  
10.0  
8.0  
6.0  
4.0  
2.0  
0
14.0  
12.0  
10.0  
8.0  
6.0  
4.0  
2.0  
0
Ta=85℃  
Ta=85℃  
Ta=25℃  
Ta=25℃  
Ta=-40℃  
Ta=-40℃  
0
1
2
3
4
5
6
0
1
2
3
4
5
6
Input Voltage:ꢀVIN (V)  
Input Voltage:ꢀVIN (V)  
XC6121~XC6124(V =5.0V)  
DF  
14.0  
12.0  
10.0  
8.0  
6.0  
4.0  
2.0  
0
Ta=85℃  
Ta=25℃  
Ta=-40℃  
0
1
2
3
4
5
6
Input Voltage:ꢀVIN (V)  
2.Detect, Release Voltage vs. Ambient Temperature  
XC6121~XC6124(V =1.6V)  
DF  
XC6121~XC6124(V =2.7V)  
DF  
1.70  
1.65  
1.60  
1.55  
2.90  
2.80  
2.70  
2.60  
VDR  
VDR  
VDF  
VDF  
-50  
-25  
0
25  
50  
75  
100  
-50  
-25  
0
25  
50  
75  
100  
Ambient Temperature: Ta (℃)  
Ambient Temperature: Ta (℃)  
17/26  
XC6121/XC6122/XC6123/XC6124 Series  
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)  
2.Detect, Release Voltage vs. Ambient Temperature (Continued)  
XC6121~XC6124(V =5.0V)  
DF  
5.30  
5.20  
5.10  
5.00  
4.90  
VDR  
VDF  
-50  
-25  
0
25  
50  
75  
100  
Ambient Temperature: Ta (℃)  
4.Driver Output Current vs. Input Voltage  
3.Nch Driver Output Current vs. VDS  
XC6121~XC6124  
XC6121~XC6124  
6.0  
30  
Ta=-40℃  
DS  
=0.5V  
V
Ta=25℃  
5.0  
4.0  
3.0  
2.0  
1.0  
0.0  
25  
Ta=25℃  
V
IN =5.0V  
20  
15  
10  
5
VIN =4.0V  
Ta=85℃  
VIN =3.0V  
VIN =2.0V  
VIN =1.0V  
0
0
1
2
3
4
5
6
0
1
2
3
4
5
6
VDS (V)  
Input Voltage:ꢀVIN (V)  
5.Release Delay Time vs. Ambient Temperature  
XC6121~XC6124  
XC6121~XC6124  
300  
3000  
2500  
2000  
1500  
1000  
500  
TDR=100ms  
TDR=1600ms  
250  
200  
150  
100  
50  
0
0
-50  
-25  
0
25  
50  
75  
100  
-50  
-25  
0
25  
50  
75  
100  
Ambient Temperature: Ta (℃)  
Ambient Temperature: Ta (℃)  
18/26  
XC6121/XC6122/XC6123/XC6124  
Series  
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)  
6.Watchdog Timeout Period vs. Ambient Temperature  
XC6121~XC6124  
300  
XC6121~XC6124  
TWD=1600ms  
3000  
2500  
2000  
1500  
1000  
500  
TWD=100ms  
250  
200  
150  
100  
50  
0
0
-50  
-25  
0
25  
50  
75  
100  
-50  
-25  
0
25  
50  
75  
100  
Ambient Temperature: Ta (℃)  
Ambient Temperature: Ta (℃)  
8.Watchdog Timeout Period vs. Input Voltage  
7.Release Delay Time vs. Input Voltage  
XC6121~XC6124  
XC6121~XC6124  
120  
4.0  
Ta=25℃  
Ta=25℃  
3.8  
3.6  
3.4  
3.2  
3.0  
2.8  
2.6  
TWD=100ms  
TDR=3.13ms  
115  
110  
105  
100  
95  
90  
0
1
2
3
4
5
6
7
0
1
2
3
4
5
6
7
Input Voltage:ꢀVIN (V)  
Input Voltage:ꢀVIN (V)  
9.Watchdog Low Level Threshould vs. Ambient Temperature  
10.  
Watchdog High Level Threshould vs. Ambient Temperature  
XC6121~XC6124  
XC6121~XC6124  
6.0  
5.0  
4.0  
3.0  
2.0  
1.0  
0.0  
6.0  
5.0  
4.0  
3.0  
2.0  
1.0  
0.0  
IN  
V =6.0V  
IN  
V =6.0V  
IN  
V =3.0V  
IN  
V =3.0V  
IN  
V =1.76V  
IN  
V =1.76V  
-50  
-25  
0
25  
50  
75  
100  
-50  
-25  
0
25  
50  
75  
100  
Ambient Temperature: Ta (℃)  
Ambient Temperature: Ta (℃)  
19/26  
XC6121/XC6122/XC6123/XC6124 Series  
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)  
11.Watchdog Pull-Down Resistance vs. Ambient Temperature  
XC6121~XC6124  
1100  
1000  
900  
800  
700  
600  
500  
400  
300  
-50  
-25  
0
25  
50  
75  
100  
Ambient Temperature: Ta (℃)  
13.ENB Pull-Down Resistance vs. Ambient Temperature  
12.EN Pull-Up Resistance vs. Ambient Temperature  
XC6121~XC6122  
3.0  
XC6123~XC6124  
3.0  
2.4  
1.8  
1.2  
0.6  
0.0  
2.4  
1.8  
1.2  
0.6  
0.0  
-50  
-25  
0
25  
50  
75  
100  
-50  
-25  
0
25  
50  
75  
100  
Ambient Temperature: Ta (℃)  
Ambient Temperature: Ta (℃)  
14.EN Ligh Level Voltage vs. Ambient Temperature  
15.EN High Level Voltage vs. Ambient Temperature  
XC6121~XC6122  
1.10  
XC6121~XC6122  
1.10  
1.00  
0.90  
1.00  
0.90  
IN  
V
V
=6.0V  
=3.0V  
0.80  
0.80  
0.70  
0.60  
0.50  
IN  
V
V
=6.0V  
=3.0V  
IN  
0.70  
0.60  
0.50  
IN  
IN  
V
=1.76V  
IN  
V
=1.76V  
-50  
-25  
0
25  
50  
75 100  
-50  
-25  
0
25  
50  
75  
100  
Ambient Temperature: Ta (℃)  
Ambient Temperature: Ta (℃)  
20/26  
XC6121/XC6122/XC6123/XC6124  
Series  
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)  
16.ENB Low Level Voltage vs. Ambient Temperature  
17.ENB High Level Voltage vs. Ambient Temperature  
XC6123~XC6124  
1.10  
XC6123~XC6124  
1.10  
1.00  
0.90  
1.00  
0.90  
0.80  
IN  
V =6.0V  
0.80  
IN  
V =6.0V  
IN  
V =3.0V  
0.70  
0.70  
IN  
V =3.0V  
IN  
V =1.76V  
0.60  
0.60  
0.50  
IN  
V =1.76V  
0.50  
-50  
-25  
0
25  
50  
75  
100  
-50  
-25  
0
25  
50  
75  
100  
Ambient Temperature: Ta (℃)  
Ambient Temperature: Ta (℃)  
21/26  
XC6121/XC6122/XC6123/XC6124 Series  
PACKAGING INFORMATION  
USP-6C  
SOT-25  
Unit :mm  
Unit :mm  
USP-6C Reference Pattern Layout  
USP-6C Reference Metal Mask Design  
2.4  
0.45  
0.45  
1
2
3
6
5
4
0.05  
0.05  
1.0  
22/26  
XC6121/XC6122/XC6123/XC6124  
Series  
MARKING RULE  
represents product series  
5
4
MARK  
PRODUCT SERIES  
XC6121******  
E
1
F
XC6122******  
XC6123******  
XC6124******  
2
3
H
SOT-25  
K
represents release delay time and watchdog timeout period  
XC6122/XC6123/XC6124Series  
XC6121Series  
WATCH DOG  
RELEASE  
WATCH DOG  
RELEASE  
DELAY  
TIME  
PRODUCT  
PRODUCT  
SERIES  
TIMEOUT  
DELAY  
TIME  
TIMEOUT  
PERIOD  
MARK  
MARK  
SERIES  
PERIOD  
0
1
3.13ms  
3.13 ms  
3.13 ms  
3.13 ms  
3.13 ms  
3.13 ms  
50ms  
50ms  
100ms  
200ms  
400ms  
800ms  
1.6s  
XC6121A2****  
XC6121A3****  
XC6121A4****  
XC6121A5****  
XC6121A7****  
XC6121A6****  
XC6121C2****  
XC6121C3****  
XC6121C4****  
XC6121C5****  
XC6121C7****  
XC6121C6****  
XC6121D3****  
XC6121D4****  
XC6121D5****  
XC6121D7****  
XC6121D6****  
XC6121E4****  
XC6121E5****  
XC6121E7****  
XC6121E6****  
XC6121F5****  
XC6121F7****  
XC6121F6****  
N
P
R
S
T
3.13ms  
3.13ms  
3.13ms  
3.13ms  
3.13ms  
3.13ms  
50ms  
50ms  
100ms  
200ms  
400ms  
800ms  
1.6s  
XC612*A2****  
XC612*A3****  
XC612*A4****  
XC612*A5****  
XC612*A7****  
XC612*A6****  
XC612*C2****  
XC612*C3****  
XC612*C4****  
XC612*C5****  
XC612*C7****  
XC612*C6****  
XC612*D3****  
XC612*D4****  
XC612*D5****  
XC612*D7****  
XC612*D6****  
XC612*E4****  
XC612*E5****  
XC612*E7****  
XC612*E6****  
XC612*F5****  
XC612*F7****  
XC612*F6****  
2
3
4
5
U
V
X
Y
Z
6
50ms  
50ms  
7
50ms  
100ms  
200ms  
400ms  
800ms  
1.6s  
50ms  
100ms  
200ms  
400ms  
800ms  
1.6s  
8
50ms  
50ms  
9
50ms  
50ms  
A
B
H
C
L
50ms  
A
B
A
C
B
D
C
D
E
H
F
50ms  
50ms  
50ms  
100ms  
100ms  
100ms  
100ms  
100ms  
200ms  
200ms  
200ms  
200ms  
400ms  
400ms  
400ms  
100ms  
200ms  
400ms  
800ms  
1.6s  
100ms  
100ms  
100ms  
100ms  
100ms  
200ms  
200ms  
200ms  
200ms  
400ms  
400ms  
400ms  
100ms  
200ms  
400ms  
800ms  
1.6s  
D
M
E
R
F
S
T
K
U
200ms  
400ms  
800ms  
1.6s  
200ms  
400ms  
800ms  
1.6s  
400ms  
800ms  
1.6s  
K
M
L
400ms  
800ms  
1.6s  
23/26  
XC6121/XC6122/XC6123/XC6124 Series  
MARKING RULE (Continued)  
represents detect voltage  
XC6122/XC6123/XC6124 Series  
XC6121 Series  
DETECT  
DETECT  
VOLTAGE  
(V)  
PRODUCT  
SERIES  
PRODUCT  
SERIES  
MARK  
VOLTAGE  
(V)  
MARK  
F
H
K
L
1.6  
1.7  
1.8  
1.9  
2.0  
2.1  
2.2  
2.3  
2.4  
2.5  
2.6  
2.7  
2.8  
2.9  
3.0  
3.1  
3.2  
3.3  
3.4  
3.5  
3.6  
3.7  
3.8  
3.9  
4.0  
41  
XC6121**16**  
XC6121**17**  
XC6121**18**  
XC6121**19**  
XC6121**20**  
XC6121**21**  
XC6121**22**  
XC6121**23**  
XC6121**24**  
XC6121**25**  
XC6121**26**  
XC6121**27**  
XC6121**28**  
XC6121**29**  
XC6121**30**  
XC6121**31**  
XC6121**32**  
XC6121**33**  
XC6121**34**  
XC6121**35**  
XC6121**36**  
XC6121**37**  
XC6121**38**  
XC6121**39**  
XC6121**40**  
XC6121**41**  
XC6121**42**  
XC6121**43**  
XC6121**44**  
XC6121**45**  
XC6121**46**  
XC6121**47**  
XC6121**48**  
XC6121**49**  
XC6121**50**  
H
K
L
1.6  
1.7  
1.8  
1.9  
2.0  
2.1  
2.2  
2.3  
2.4  
2.5  
2.6  
2.7  
2.8  
2.9  
3.0  
3.1  
3.2  
3.3  
3.4  
3.5  
3.6  
3.7  
3.8  
3.9  
4.0  
41  
XC612***16**  
XC612***17**  
XC612***18**  
XC612***19**  
XC612***20**  
XC612***21**  
XC612***22**  
XC612***23**  
XC612***24**  
XC612***25**  
XC612***26**  
XC612***27**  
XC612***28**  
XC612***29**  
XC612***30**  
XC612***31**  
XC612***32**  
XC612***33**  
XC612***34**  
XC612***35**  
XC612***36**  
XC612***37**  
XC612***38**  
XC612***39**  
XC612***40**  
XC612***41**  
XC612***42**  
XC612***43**  
XC612***44**  
XC612***45**  
XC612***46**  
XC612***47**  
XC612***48**  
XC612***49**  
XC612***50**  
M
N
P
R
S
T
U
V
X
Y
Z
0
M
N
P
R
S
T
U
V
X
Y
Z
0
1
1
2
2
3
3
4
4
5
5
6
6
7
7
8
8
9
9
A
B
C
D
E
F
H
K
L
A
B
C
D
E
F
H
K
L
4.2  
4.3  
4.4  
4.5  
4.6  
4.7  
4.8  
4.9  
5.0  
4.2  
4.3  
4.4  
4.5  
4.6  
4.7  
4.8  
4.9  
5.0  
M
N
M
represents production lot number  
0 to 9 and A to Z and inverted 0 to 9 and A to Z repeated. (G, I, J, O, Q, W excluded.)  
24/26  
XC6121/XC6122/XC6123/XC6124  
Series  
MARKING RULE (Continued)  
represents product series  
MARK  
PRODUCT SERIES  
XC6121******  
XC6122******  
XC6123******  
XC6124******  
1
2
3
6
P
K
R
U
5
4
represents release delay time  
USP-6C  
MARK  
RELEASE DELAY TIME  
PRODUCT SERIES  
XC612*A*****  
XC612*C*****  
XC612*D*****  
XC612*E*****  
XC612*F*****  
A
C
D
E
F
3.13ms  
50ms  
100ms  
200ms  
400ms  
represents watchdog timeout period  
MARK  
WATCHDOG TIMEOUT PERIOD  
PRODUCT SERIES  
XC612*2*****  
XC612*3*****  
XC612*4*****  
XC612*5*****  
XC612*7*****  
XC612*6*****  
2
3
4
5
7
6
50ms  
100ms  
200ms  
400ms  
800ms  
1.6s  
④⑤ represents detect voltage  
MARK  
DETECT VOLTAGE (V)  
PRODUCT SERIES  
3
3
3.3  
5.0  
XC612***33**  
XC612***50**  
5
0
represents production lot number  
0 to 9 and A to Z repeated. (G, I, J, O, Q, W excluded.)  
*No character inversion used.  
25/26  
XC6121/XC6122/XC6123/XC6124 Series  
1. The products and product specifications contained herein are subject to change without  
notice to improve performance characteristics. Consult us, or our representatives  
before use, to confirm that the information in this datasheet is up to date.  
2. We assume no responsibility for any infringement of patents, patent rights, or other  
rights arising from the use of any information and circuitry in this datasheet.  
3. Please ensure suitable shipping controls (including fail-safe designs and aging  
protection) are in force for equipment employing products listed in this datasheet.  
4. The products in this datasheet are not developed, designed, or approved for use with  
such equipment whose failure of malfunction can be reasonably expected to directly  
endanger the life of, or cause significant injury to, the user.  
(e.g. Atomic energy; aerospace; transport; combustion and associated safety  
equipment thereof.)  
5. Please use the products listed in this datasheet within the specified ranges.  
Should you wish to use the products under conditions exceeding the specifications,  
please consult us or our representatives.  
6. We assume no responsibility for damage or loss due to abnormal use.  
7. All rights reserved. No part of this datasheet may be copied or reproduced without the  
prior permission of TOREX SEMICONDUCTOR LTD.  
26/26  

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