S-1111 Copal Electronics Inc, S-1111 Datasheet - Page 9

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S-1111

Manufacturer Part Number
S-1111
Description
SWITCH ROTARY DIP 16-POS SIDE
Manufacturer
Copal Electronics Inc
Series
S-1000r
Datasheet

Specifications of S-1111

Circuit
Hexadecimal
Number Of Positions
16
Actuator Type
Rotary with Shaft
Actuator Level
Raised
Mounting Type
Through Hole
Orientation
Side Actuated
Washable
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Contact Rating @ Voltage
-
Other names
Q4215633
T0737709

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*1. V
*2. The output current at which the output voltage becomes 95% of V
*3. V
*4. The change in temperature [mV/°C] is calculated using the following equation.
*5. The output current can be at least this value.
Output voltage
Output current
Dropout voltage
Line regulation
Load regulation
Output voltage
temperature coefficient
Current consumption
during operation
Current consumption
during shutdown
Input voltage
Shutdown pin
input voltage “H”
Shutdown pin
input current “H”
Shutdown pin
input current “L”
Ripple rejection
Short-circuit current
Shutdown pin
input voltage “L”
Rev.4.1
Electrical Characteristics
V
Due to restrictions on the package power dissipation, this value may not be satisfied. Attention should be paid to the
power dissipation of the package when the output current is large.
This specification is guaranteed by design.
OUT(S)
OUT(E)
drop
V
voltage.
The output voltage when fixing I
V
*1. The change in temperature of the output voltage
*2. Specified output voltage
*3. Output voltage temperature coefficient
Δ
= V
Δ
OUT3
IN1
V
Ta
: Specified output voltage
: Actual output voltage at the fixed load
Item
OUT
_00
IN1
is the input voltage at which the output voltage becomes 98% of V
[
is the output voltage when V
mV/
*2
*1
− (V
*3
HIGH RIPPLE-REJECTION LOW DROPOUT CMOS VOLTAGE REGULATOR
°
OUT3
C
]
*1
*4
× 0.98)
=
V
OUT(S)
V
I
V
ΔV
I
I
V
V
V
I
I
I
Δ
OUT
SS1
SS2
SH
SL
short
Δ
RR
OUT(E)
drop
IN
SH
SL
V
Ta
Δ
OUT2
Symbol
Δ
[ ]
IN
V
V
V
OUT1
OUT
2 *
V
V
OUT
×
OUT
Δ
Ta
Δ
OUT
V
V
I
V
I
V
1.0 mA ≤ I
V
−40°C ≤ Ta ≤ 85°C
V
no load
V
no load
V
V
V
V
V
ΔV
V
V
V
OUT
OUT
IN
IN
OUT(S)
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
OUT
IN
OUT
V
rip
(= 30 mA) and inputting V
= V
= V
= V
= V
= V
= V
= V
= 6.5 V, V
= 6.5 V, V
= V
= V
≥ V
= V
= 30 mA
= 100 mA
OUT
= 0.5 Vrms, I
= 0 V
OUT(S)
OUT(S)
OUT(S)
OUT(S)
OUT(S)
OUT(S)
OUT(S)
OUT(S)
OUT(S)
+ 0.5 V ≤ V
OUT(S)
[
OUT(S)
ppm/
OUT
Seiko Instruments Inc.
+ 1.0 V, I
+ 1.0 V,
+ 1.0 V, I
+ 1.0 V, ON/OFF pin = ON,
+ 1.0 V, ON/OFF pin = OFF,
+ 1.0 V, R
+ 1.0 V, R
+ 1.0 V, f = 1.0 kHz,
+ 1.0 V, ON/OFF pin = ON,
+ 1.0 V
ON/OFF
ON/OFF
°
≤ 80 mA
+ 1.0 V and I
C
]
3 *
OUT
IN
Conditions
Table 6
= 6.5 V
= 0 V
÷
≤ 6.5 V,
1.5 V ≤ V
2.0 V ≤ V
2.5 V ≤ V
2.8 V ≤ V
3.4 V ≤ V
1000
OUT
OUT
= 30 mA
L
L
= 1.0 kΩ
= 1.0 kΩ
= 10 mA,
= 30 mA
OUT
OUT(S)
OUT(S)
OUT(S)
OUT(S)
OUT(S)
OUT(S)
OUT(E)
= 100 mA.
≤ 1.9 V
≤ 2.4 V
≤ 2.7 V
≤ 3.3 V
≤ 5.5 V
+ 1.0 V
after gradually increasing the output current.
(Ta = 25 °C unless otherwise specified)
OUT3
V
× 0.99
after gradually decreasing the input
150
Min.
−0.1
−0.1
OUT(S)
2.0
1.5
*5
V
S-1111/1121 Series
±100
Typ.
0.60
0.35
0.24
0.20
0.17
0.05
OUT(S)
250
0.1
20
35
70
V
× 1.01
Max.
1.40
0.70
0.35
0.30
0.26
OUT(S)
0.2
1.0
6.5
0.3
0.1
0.1
40
65
% / V
ppm
Unit
/ °C
mA
mV
mA
μA
μA
μA
dB
V
V
V
V
V
V
V
V
V
1
Circuit
Test
1
3
1
1
1
1
1
1
1
1
2
2
4
4
4
4
5
3
9

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