HFD3009
Abstract: preamplifier st block diagram for optical fiber receiver
Text: 28 January 1998 HFD3009-002/BBA Schmitt Input, Non-Inverting TTL Output Receiver FEATURES • Converts fiber optic input signals to TTL totem pole outputs • Sensitivity is 1.5 µW peak -28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and
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HFD3009-002/BBA
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HFD3009-002/BBA
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FIBER038
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HFD3009
preamplifier st
block diagram for optical fiber receiver
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preamplifier st
Abstract: block diagram for optical fiber receiver HFD3009
Text: 10 November 1997 HFD3009-002/BBA Schmitt Input, Non-Inverting TTL Output Receiver FEATURES • Converts fiber optic input signals to TTL totem pole outputs • Sensitivity is 1.5 µW peak -28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and
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HFD3009-002/BBA
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HFD3009-002/BBA
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FIBER041
FIBER040
preamplifier st
block diagram for optical fiber receiver
HFD3009
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HFD3009
Abstract: HFD3009-002 HFD3029 Honeywell DBM 01 PCB
Text: 18 September 1997 HFD3009 Schmitt Input, Non-Inverting TTL Output Receiver FEATURES • Converts fiber optic input signals to TTL totem pole outputs • Sensitivity is 1.5 µW peak -28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and low
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HFD3009
HFD3029)
FIBER003
HFD3009
FIBER101
FIBER038
FIBER040
HFD3009-002
HFD3029
Honeywell DBM 01 PCB
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block diagram for optical fiber receiver
Abstract: HFD3009-002 block diagram for optical fiber DETECTOR HFD3009
Text: 10 November 1997 HFD3009-002/ADA Schmitt Input, Non-Inverting TTL Output Receiver FEATURES • Converts fiber optic input signals to TTL totem pole outputs • Sensitivity is 1.5 µW peak -28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and
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HFD3009-002/ADA
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HFD3009-002/ADA
FIBER101
FIBER003
FIBER038
FIBER041
FIBER040
block diagram for optical fiber receiver
HFD3009-002
block diagram for optical fiber DETECTOR
HFD3009
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Untitled
Abstract: No abstract text available
Text: 10 November 1997 HFD3009-002/AAA Schmitt Input, Non-Inverting TTL Output Receiver FEATURES • Converts fiber optic input signals to TTL totem pole outputs • Sensitivity is 1.5 µW peak -28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and
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HFD3009-002/AAA
FIBER010
HFD3009-002/AAA
FIBER101
FIBER003
FIBER038
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HFD3009
Abstract: No abstract text available
Text: 28 January 1998 HFD3009-002/ABA Schmitt Input, Non-Inverting TTL Output Receiver FEATURES • Converts fiber optic input signals to TTL totem pole outputs • Sensitivity is 1.5 µW peak -28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and
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HFD3009-002/ABA
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HFD3009-002/ABA
FIBER101
FIBER003
FIBER038
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HFD3009
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preamplifier st
Abstract: HFD3009 HFD3009-002
Text: 28 January 1998 HFD3009-002/BAA Schmitt Input, Non-Inverting TTL Output Receiver FEATURES • Converts fiber optic input signals to TTL totem pole outputs • Sensitivity is 1.5 µW peak -28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and
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HFD3009-002/BAA
FIBER011
HFD3009-002/BAA
FIBER101
FIBER003
FIBER038
FIBER041
FIBER040
preamplifier st
HFD3009
HFD3009-002
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HFD3009
Abstract: HFD3029 HFD3009-002
Text: HFD3009 Schmitt Input, Non-Inverting TTL Output Receiver FEATURES • Converts fiber optic input signals to TTL totem pole outputs • Sensitivity is 1.5 µW peak -28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and
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HFD3009
HFD3029)
FIBER003
HFD3009
FIBER101
FIBER038
FIBER041
HFD3029
HFD3009-002
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block diagram for optical fiber receiver
Abstract: HFD3009
Text: 10 November 1997 HFD3009-002/ABA Schmitt Input, Non-Inverting TTL Output Receiver FEATURES • Converts fiber optic input signals to TTL totem pole outputs • Sensitivity is 1.5 µW peak -28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and
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HFD3009-002/ABA
FIBER012
HFD3009-002/ABA
FIBER101
FIBER003
FIBER038
FIBER041
FIBER040
block diagram for optical fiber receiver
HFD3009
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HFD3009
Abstract: No abstract text available
Text: 28 January 1998 HFD3009-002/AAA Schmitt Input, Non-Inverting TTL Output Receiver FEATURES • Converts fiber optic input signals to TTL totem pole outputs • Sensitivity is 1.5 µW peak -28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and
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Original
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PDF
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HFD3009-002/AAA
FIBER010
HFD3009-002/AAA
FIBER101
FIBER003
FIBER038
FIBER041
FIBER040
HFD3009
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preamplifier st
Abstract: HFD3009
Text: 10 November 1997 HFD3009-002/BAA Schmitt Input, Non-Inverting TTL Output Receiver FEATURES • Converts fiber optic input signals to TTL totem pole outputs • Sensitivity is 1.5 µW peak -28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and
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HFD3009-002/BAA
FIBER011
HFD3009-002/BAA
FIBER101
FIBER003
FIBER038
FIBER041
FIBER040
preamplifier st
HFD3009
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HFD3009
Abstract: HFD3009-002
Text: 28 January 1998 HFD3009-002/ADA Schmitt Input, Non-Inverting TTL Output Receiver FEATURES • Converts fiber optic input signals to TTL totem pole outputs • Sensitivity is 1.5 µW peak -28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and
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HFD3009-002/ADA
FIBER014
HFD3009-002/ADA
FIBER101
FIBER003
FIBER038
FIBER041
FIBER040
HFD3009
HFD3009-002
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HFD3009
Abstract: HFD3029 HFD3029-002
Text: HFD3029 Schmitt Input, Non-Inverting TTL Output Receiver FEATURES • Converts fiber optic input signals to TTL totem pole outputs • Sensitivity is 1.5 µW peak -28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and
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HFD3029
HFD3009)
FIBER106
HFD3029
FIBER101
FIBER003
FIBER038
FIBER039
FIBER041
HFD3009
HFD3029-002
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HFD3029
Abstract: HFD3009 HFD3029-002
Text: 18 September 1997 HFD3029 Schmitt Input, Non-Inverting TTL Output Receiver FEATURES • Converts fiber optic input signals to TTL totem pole outputs • Sensitivity is 1.5 µW peak -28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and low
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HFD3029
HFD3009)
FIBER106
HFD3029
FIBER101
FIBER003
FIBER038
FIBER039
FIBER040
HFD3009
HFD3029-002
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Untitled
Abstract: No abstract text available
Text: HFD3009 Schmitt Input, Non-Inverting TTL Output Receiver FE A TU R ES • Converts fiber optic input signals to TTL totem pole outputs • Sensitivity is 1.5 pW peak -28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and
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HFD3009
FIBER003
FIBER03B
M551A3G
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Untitled
Abstract: No abstract text available
Text: 18 September 1997 HFD3009 Schmitt Input, Non-Inverting TTL Output Receiver FEA TU R ES • Converts fiber optic input signals to TT L totem pole outputs • Sensitivity is 1.5 pW peak - 28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and low
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HFD3009
FIBER040
FtBEfl04t
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Untitled
Abstract: No abstract text available
Text: BASE COMPONENTS5 “ ° ° l S t 33 0L3 « H 0 N 1 HO NE YW EL L INC/ HICRO TTL DIGITAL INTEGRATED RECEIVERS All m easurem ents are typical values at 25 °C , 850 nm, and V co=5.0 V. PART NUMBER DESCRIPTION P K G # HFD3000 HFD3009 HFD3011 HFD3020 HFD3023
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HFD3000
HFD3009
HFD3011
HFD3020
HFD3023
HFD3029
HFD3031
SD3324
SD4324
HFD3006
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HFD3856
Abstract: 200kbps
Text: NONEYI'IFLL I N C / hunevweil MICRO S5E D • MS5163D DDlSbSM QSO ■ HON1 CONNECTORIZED c o m p o n e n ts y T- Ml ST Low-Profile Style ST-LP LEDs and Integrated Transmitters The ST-LP devices consist of a Base Part mounted in a Metal ST Low Profile style connector. LEDs and integrated
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MS5163D
HFD3874-002
HFD3856
200kbps
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HFE4807
Abstract: HFE4846 HFE4848 hfe4811 hfd3801 HFD3805 hfe4053 HFD-3000 HFD3850 HFD3882
Text: HONFYIIIFLL I N C / h u il« y W e il MICRO 5SE » • M 5S 1A 30 0D lS b2b ^23 H H O N 1 CONNECTORIZED C O M K U iN tiN io ■"T-Hi-<r>7 SMA Low-Profile Style SMA-LP LEDs and Integrated Transmitters The SMA-LP devices consist of a Base Part mounted in a Metal SMA Low Profile style connector. LEDs and integrated
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HFE4807
HFE4000
HFE4846
HFE4848
hfe4811
hfd3801
HFD3805
hfe4053
HFD-3000
HFD3850
HFD3882
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HFD3805
Abstract: HFE4814 HFE4848 hfd3801 HFD3882 HFD3881 HFD3850 hfe4811 HFE4807 HFD3886
Text: l-IO N F Y IilF L L I N C / h u n e y W e il MICRO 55E D • 4 5 S l f l 3 D OOl SbSb *iZ3 ■ HON1 c o n n e c t o r iz e d cuMKuiNtiN i o T -H i-< r>7 SMA Low-Profile Style SMA-LP LEDs and Integrated Transmitters The SMA-LP devices consist of a Base Part mounted in a Metal SMA Low Profile style connector. LEDs and integrated
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HFE4814
HFE4821
HFE4825
HFE4848
HFE4855
HFE4857
HFE4860
HFD3875-002
HFD3805
hfd3801
HFD3882
HFD3881
HFD3850
hfe4811
HFE4807
HFD3886
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hFE4022
Abstract: HFD3029 HFE4012
Text: HFD3029 Schmitt Input, Non-Inverting TTL Output Receiver FEATURES • • • • • • • • • Converts fiber optic input signals to TTL totem pole outputs Sensitivity is 1.5 peak -28.2 dBm Single 5 V supply requirem ent Schm itt circuitry gives 17 dB dynam ic range and
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HFD3029
HFD3009)
HFD3029
hFE4022
HFE4012
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Untitled
Abstract: No abstract text available
Text: HFD3029 Schmitt Input, Non-Inverting TTL Output Receiver FEATU R ES • Converts fiber optic input signals to T T L totem pole outputs • Sensitivity is 1.5 nW peak -28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and
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HFD3029
HFD3009)
HFD3029
RBER041
FBER04CLGRA
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HFE4012
Abstract: hFE4022 HFD3009 HFD3029 HFD3029-002 HFE4010 fiber optic link photodiode PN ir photodiode receiver
Text: HFD3029 Schmitt Input, Non-Inverting TTL Output Receiver FEATURES • Converts fiber optic input signals to TTL totem pole outputs • Sensitivity is 1.5 pSN peak -28.2 dBm • Single 5 V supply requirement • Schmitt circuitry gives 17 dB dynamic range and
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HFD3029
HFD3009)
100kHz
HFE4012
hFE4022
HFD3009
HFD3029-002
HFE4010
fiber optic link
photodiode PN
ir photodiode receiver
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