No. |
Part Name |
Description |
Manufacturer |
1 |
HCPL-0710 |
40 ns Prop. Delay, SO-8 Optocoupler |
Agilent (Hewlett-Packard) |
2 |
HCPL-0710-500 |
40ns prop. delay, SO-8 optocoupler |
Agilent (Hewlett-Packard) |
3 |
HCPL-0710500 |
40 ns Prop. Delay, SO-8 Optocoupler |
Agilent (Hewlett-Packard) |
4 |
HCPL0710 |
40 ns Prop. Delay, SO-8 Optocoupler |
Agilent (Hewlett-Packard) |
5 |
LM748CN |
LM748 Operational Amplifier |
National Semiconductor |
6 |
MAX7321 |
I2C Port Expander with 8 Open-Drain I/Os |
MAXIM - Dallas Semiconductor |
7 |
MAX7321AEE+ |
I2C Port Expander with 8 Open-Drain I/Os |
MAXIM - Dallas Semiconductor |
8 |
MAX7321AEE+T |
I2C Port Expander with 8 Open-Drain I/Os |
MAXIM - Dallas Semiconductor |
9 |
MAX7321ATE+ |
I2C Port Expander with 8 Open-Drain I/Os |
MAXIM - Dallas Semiconductor |
10 |
MAX7321ATE+T |
I2C Port Expander with 8 Open-Drain I/Os |
MAXIM - Dallas Semiconductor |
11 |
MAX7325 |
I2C Port Expander with 8 Push-Pull and 8 Open-Drain I/Os |
MAXIM - Dallas Semiconductor |
12 |
MAX7325AEG |
I2C Port Expander with 8 Push-Pull and 8 Open-Drain I/Os |
MAXIM - Dallas Semiconductor |
13 |
MAX7325AEG+ |
I2C Port Expander with 8 Push-Pull and 8 Open-Drain I/Os |
MAXIM - Dallas Semiconductor |
14 |
MAX7325AEG+T |
I2C Port Expander with 8 Push-Pull and 8 Open-Drain I/Os |
MAXIM - Dallas Semiconductor |
15 |
MAX7325AEG-T |
I2C Port Expander with 8 Push-Pull and 8 Open-Drain I/Os |
MAXIM - Dallas Semiconductor |
16 |
MAX7325AEG/V+ |
I2C Port Expander with 8 Push-Pull and 8 Open-Drain I/Os |
MAXIM - Dallas Semiconductor |
17 |
MAX7325AEG/V+T |
I2C Port Expander with 8 Push-Pull and 8 Open-Drain I/Os |
MAXIM - Dallas Semiconductor |
18 |
MAX7325ATG+ |
I2C Port Expander with 8 Push-Pull and 8 Open-Drain I/Os |
MAXIM - Dallas Semiconductor |
19 |
MAX7325ATG+T |
I2C Port Expander with 8 Push-Pull and 8 Open-Drain I/Os |
MAXIM - Dallas Semiconductor |
20 |
MCP608 |
The MCP608 operational amplifier (op amp) has a gain bandwidth product of 155 kHz with a low typical operating current of 18.7 �A and an offset voltage that is less than 250 �V. The MCP608uses Microchip's advanced CMOS technology, which pr |
Microchip |
21 |
MCP608-I/P |
The MCP608 operational amplifier (op amp) has a gain bandwidth product of 155 kHz with a low typical operating current of 18.7 and ... |
Microchip |
22 |
MCP608-I/SN |
The MCP608 operational amplifier (op amp) has a gain bandwidth product of 155 kHz with a low typical operating current of 18.7 and ... |
Microchip |
23 |
MCP608-I/ST |
The MCP608 operational amplifier (op amp) has a gain bandwidth product of 155 kHz with a low typical operating current of 18.7 and ... |
Microchip |
24 |
MCP608T-I/SN |
The MCP608 operational amplifier (op amp) has a gain bandwidth product of 155 kHz with a low typical operating current of 18.7 and ... |
Microchip |
25 |
MCP608T-I/ST |
The MCP608 operational amplifier (op amp) has a gain bandwidth product of 155 kHz with a low typical operating current of 18.7 and ... |
Microchip |
26 |
MCP618 |
The MCP618 operational amplifier (op amp) has a gain bandwidth product of 190 kHz with a low typical operating current of 19 �A and an offset voltage that is less than 150 �V. The MCP618 uses Microchip's advanced CMOS technology, which pro |
Microchip |
27 |
MCP618-I/MS |
The MCP618 operational amplifier (op amp) has a gain bandwidth product of 190 kHz with a low typical operating current of 19 µA ... |
Microchip |
28 |
MCP618-I/P |
The MCP618 operational amplifier (op amp) has a gain bandwidth product of 190 kHz with a low typical operating current of 19 µA ... |
Microchip |
29 |
MCP618-I/SN |
The MCP618 operational amplifier (op amp) has a gain bandwidth product of 190 kHz with a low typical operating current of 19 µA ... |
Microchip |
30 |
MCP618T-I/MS |
The MCP618 operational amplifier (op amp) has a gain bandwidth product of 190 kHz with a low typical operating current of 19 µA ... |
Microchip |
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