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74OL6010 데이터시트 PDF




Fairchild Semiconductor에서 제조한 전자 부품 74OL6010은 전자 산업 및 응용 분야에서
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부품번호 74OL6010 기능
기능 HIGH-SPEED LOGIC-TO-LOGIC OPTOCOUPLERS
제조업체 Fairchild Semiconductor
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74OL6010 데이터시트, 핀배열, 회로
HIGH-SPEED
LOGIC-TO-LOGIC OPTOCOUPLERS
LSTTL TO
PACKAGE
TTL BUFFER
TTL INVERTER
CMOS BUFFER
CMOS INVERTER
74OL6000
74OL6001
74OL6010
74OL6011
SYMBOL
66
1
1
BUFFER
INVERTER
6
1
DESCRIPTION
OPTOLOGIC™ is the first family of truly logic compatible optically coupled logic interface gates.
The family consists of four device types offering LSTTL to TTL and LSTTL to CMOS interfacing. Each of these interfacing functions
is available as a buffer (A=B), or as an inverter (A=B).
The LSTTL input compatibility is provided by an input integrated circuit, with industry standard logic levels. This input amplifier IC
switches a temperature compensated current source driving a high speed 850 nm AlGaAs LED emitter. This novel integration
scheme eliminates CTR degradation over time and temperature.
The emitter is optically coupled to an integrated photodetector/high-gain, high-speed output amplifier IC. The superior 15kV/µS
common-mode noise rejection is ensured through the use of an optically transparent noise shield.
The TTL compatible output has a totem-pole with a fan-out of 10. The CMOS compatible output has an open collector Schottky-
clamped transistor that interfaces to any CMOS logic between 4.5 and 15 volts. The 74OL6010/11 may also by used to drive power
MOSFETS or transistors up to 15 volts.
The Optologic coupler family typically offers propagation of delays of 60 ns and can support 15 MBaud data communication.
The two input chips and the output chip are assembled in a 6-pin DIP high insulation voltage plastic package. It provides a with-
stand test voltage of 5300 VRMS (1 minute).
FEATURES
• Industry first LSTTL to TTL and LSTTL to CMOS complete
logic-to-logic optocoupler
• Incorporates LED drive circuitry — use as logic gate
• Very high speed
• Choice of buffer or inverter
• Choice of TTL or CMOS compatible output up to 15 volts
• Fan-out of 10 TTL loads, fan-in 1 LSTTL load
• Internal noise shield — very high CMR of ±15 kV/µS
• UL recognized (File #E90700)
• Same noise immunity as LSTTL/TTL.
APPLICATIONS
• Transmission line interface — receiver and driver
• Excellent as bridged receiver in fast LAN highways
• Bus interface
• Logic family interface with ground loop noise elimination
• High speed AC/DC voltage sensing
• Driver for power semiconductor devices
• Level shifting
• Replaces fast pulse transformers
© 2003 Fairchild Semiconductor Corporation
Page 1 of 15
3/19/03




74OL6010 pdf, 반도체, 판매, 대치품
HIGH-SPEED
LOGIC-TO-LOGIC OPTOCOUPLERS
LSTTL TO
TTL BUFFER
TTL INVERTER
CMOS BUFFER
CMOS INVERTER
74OL6000
74OL6001
74OL6010
74OL6011
ELECTRICAL CHARACTERISTICS (TA = 0°C to 70°C Unless otherwise specified)
Parameter
Test Conditions
Symbol Min Typ* Max Units
74OL6000 74OL6001
74OL6000/01
Notes
TTL OUTPUT 74OL6000/01
Input Supply Voltage
Output Supply Voltage
High-Level Input Voltage
Low-Level Input Voltage
Input Clamp Voltage
High-Level Input Current
Low-Level Input Current
Input Supply Current (high)
Input Supply Current (low)
High-Level Output Voltage
Low-Level Output Voltage
VCCI
VCCO
VIH
VIL
VIK
IIH
IIL
ICCIH
ICCIL
VOH
4.5 5.0 5.5
4.5 5.0 5.5
2.0
0.8
-1.2
1.0 40.0
-200.0 -400.0
10.0 14.0
10.0 14.0
V
V
V
V
V
µA
µA
mA
mA
2.4 3.0
V
0.6
VOL 0.3
V
0.5
High-Level Output Current
IOH
-8.0 -10.0 mA
Low-Level Output Current
IOL 16.0
Short-Circuit Output Current IOS -5.0 -25.0 -40.0
Output Supply Current (high) ICCOH
9.0 15.0
mA
mA
mA
Output Supply Current (low) ICCOL
*All typical values are at TA=25°C
8.0 12.0 mA
VIN = 2.0 V
VIN = 0.8V
VIN = VIH
VIN = 0.8 V
VIN = VIH
VIN = VIH
VIN = VIL
VIN = 0.8 V
VIN = 2.0V
VIN = VIL
VIN = 2.0V
VIN = VIL
VIN = VIL
VIN = VIH
VCCI = 4.5 V, II = -18 mA
VCCI = 5.5 V, VIH = 4.5 V
VCCI = 5.5 V, VIL = 0.4 V
VCCI = 5.5 V, VIN = VIH
VCCI = 5.5 V, VIN = VIL
VCCI = 4.5 V, VCCO = 4.5 V,
IOH = -400 mA
VCCI = 4.5 V, VCCO = 4.5 V,
IOL = 16 mA
VCCI = 4.5 V, VCCO = 4.5 V,
IOL = 4 mA
VCCI = 4.5 V, VCCO = 4.5 V,
VOH = 2.4 V
VCCI = 4.5 V, VCCO = 4.5 V,
VOL = 0.6 V
VCCI = 5.5 V, VCCO = 5.5 V,
VCCI = 5.5 V, VO = VOH,
VCCO= 5.5 V
VCCI = 5.5 V, VO = VOL,
VCCO = 5.5 V
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
SWITCHING CHARACTERISTCS (TA = 25°C Unless otherwise specified)
Parameter
Symbol Min Typ Max Units Test Conditions
TTL OUTPUT 74OL6000/01
Propagation Delay Time For Output Low Level
Propagation Delay Time For Output High Level
Output Rise Time For Output High Level
Output Fall Time For Output Low Level
tPHL
tPLH
tr
tf
60 100 ns
70 100 ns VCCI = 5 V, VCCO = 5 V
45 n
5 ns
Fig.
15, 17
15, 17
15, 17
15, 17
Notes
1
1
1
1
© 2003 Fairchild Semiconductor Corporation
Page 4 of 15
3/19/03

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74OL6010 전자부품, 판매, 대치품
HIGH-SPEED
LOGIC-TO-LOGIC OPTOCOUPLERS
LSTTL TO
TTL BUFFER
TTL INVERTER
CMOS BUFFER
CMOS INVERTER
74OL6000
74OL6001
74OL6010
74OL6011
Figure 1. Input Current vs. Ambient Temperature
100
0
-100
VCCI = 5.5V
VIH = 4.5V
VIL = 0.4V
-200
IIH
IIL
-300
-40
-20 0 20 40 60 80
TA - AMBIENT TEMPERATURE (˚C)
100
Figure 3. Output Supply Current vs. Ambient Temperature
15
12
9
6
74OL6010/6011
VCCI = 5.5V
ICCOH
ICCOL
ICCOH
ICCOL
ICCOH
ICCOL
3 VCCO = 15V
74OL6010/6011
74OL6000/6001
VCCI = 5.5V
VCCI = 5.5V
VCCO = 5.5V
VCCO = 5.5V
0
-40 -20 0 20 40 60 80 100
TA - AMBIENT TEMPERATURE (˚C)
Figure 2. Input Supply Current vs. Ambient Temperature
15
14
13
12
ICCIH - 74OL6000-6010
11 ICCIL - 74OL6001-6011
10
9
8 ICCIH - 74OL6001-6011
7 ICCIL - 74OL6000-6010
6 VCCI = 5.5V
5
-40 -20 0
20 40 60 80 100
TA - AMBIENT TEMPERATURE (˚C)
Figure 4. Output Current vs. Ambient Temperature
60
50
40
30
VCCI = 4.5V
VCCO = 4.5V
VOL = 0.6V
20 VOH = 2.4V
10
IOL
0
-10 IOH
(74OL6000/6001)
-20
-30
-40
-20 0 20 40 60 80
TA - AMBIENT TEMPERATURE (˚C)
100
Figure 5. High-Level Output Voltage vs. Ambient Temperature
5
VCCI = 4.5V
4 VCCO = 4.5V
IOH = -400µA
3
2
1
0
-40 -20 0 20 40 60 80 100
TA - AMBIENT TEMPERATURE (˚C)
Figure 6. Low-Level Output Voltage vs. Ambient Temperature
0.5
0.4
@ IOL = 16mA
0.3
@ IOL = 4mA
0.2
0.1
-40
VCCI = 4.5V
VCCO = 4.5V
-20 0 20 40 60 80
TA - AMBIENT TEMPERATURE (˚C)
100
© 2003 Fairchild Semiconductor Corporation
Page 7 of 15
3/19/03

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