HEP32
Abstract: MC10EP32DR2G 5P J TRANSISTOR MARKING
Text: MC10EP32, MC100EP32 3.3V / 5V ECL B2 Divider • 350 ps Typical Propagation Delay • Maximum Frequency > 4 GHz Typical Figure 3 • PECL Mode Operating Range: • VCC = 3.0 V to 5.5 V with VEE = 0 V NECL Mode Operating Range: VCC = 0 V with VEE = −3.0 V to −5.5 V
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MC10EP32,
MC100EP32
MC10/100EP32
MC10EP32/D
HEP32
MC10EP32DR2G
5P J TRANSISTOR MARKING
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KEP32
Abstract: HEP32 HP32 MC100EP32 MC10EP32
Text: MC10EP32, MC100EP32 3.3V / 5VĄECL B2 Divider The MC10/100EP32 is an integrated B2 divider with differential CLK inputs. The VBB pin, an internally generated voltage supply, is available to this device only. For single-ended input conditions, the unused differential input is connected to VBB as a switching reference voltage.
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MC10EP32,
MC100EP32
MC10/100EP32
r14525
MC10EP32/D
KEP32
HEP32
HP32
MC100EP32
MC10EP32
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A1560
Abstract: No abstract text available
Text: MC10EP32, MC100EP32 3.3V / 5V ECL B2 Divider Description The MC10/100EP32 is an integrated B2 divider with differential CLK inputs. The VBB pin, an internally generated voltage supply, is available to this device only. For single−ended input conditions, the unused
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MC10EP32,
MC100EP32
MC10/100EP32
MC10EP32/D
A1560
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KLT20
Abstract: k1648 klt22 KEL32 MC100 HEP64 KLT21 LP17 KEP32 HEP139
Text: AND8002/D ECLinPS, ECLinPS Lite, ECLinPS Plus, ECLinPS MAX, and GigaComm Marking and Ordering Information Guide http://onsemi.com APPLICATION NOTE Prepared by: Paul Shockman ON Semiconductor HFPD Applications Engineer Introduction This application note describes the device markings and
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AND8002/D
KLT20
k1648
klt22
KEL32
MC100
HEP64
KLT21
LP17
KEP32
HEP139
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motorola HEP cross reference
Abstract: EPT 4045 KPT23 motorola HEP 320 cross reference vef 202 manual KEP52 MC10EP016 HEP 801 hep51 HEP64
Text: BR1513/D Rev. 2, Apr-2001 ECLinPS Plus Device Data ECLinPS Plus Device Data Advanced ECL in Picoseconds BR1513/D Rev. 2, Apr–2001 SCILLC, 2001 Previous Edition 2000 “All Rights Reserved” ECLinPS, ECLinPS Lite, and ECLinPS Plus are trademarks of Semiconductor Components Industries, LLC.
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BR1513/D
Apr-2001
r14525
DLD601
motorola HEP cross reference
EPT 4045
KPT23
motorola HEP 320 cross reference
vef 202 manual
KEP52
MC10EP016
HEP 801
hep51
HEP64
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kvt22
Abstract: KVL11 KPT23 ON Semiconductor marking k1648 KLT20 HEL16 KEL32 KEL01 xaa9646
Text: AND8002/D ECLinPS, ECLinPS Lite and ECLinPS Plus Device Type and Date Code Marking Guide Gary Richards, ECL Logic Product Engineering http://onsemi.com APPLICATION NOTE need ON Semiconductor’s marking spec 12MON00232D and S.O.P. 7–19 ID of Products to Location of
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AND8002/D
12MON00232D
r14525
kvt22
KVL11
KPT23
ON Semiconductor marking
k1648
KLT20
HEL16
KEL32
KEL01
xaa9646
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Untitled
Abstract: No abstract text available
Text: MC10EP32, MC100EP32 3.3V / 5VĄECL B2 Divider The MC10/100EP32 is an integrated B2 divider with differential CLK inputs. The VBB pin, an internally generated voltage supply, is available to this device only. For single–ended input conditions, the unused
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PDF
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MC10EP32,
MC100EP32
MC10/100EP32
r14525
MC10EP32/D
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KEP32
Abstract: HEP32 HP32 MC100EP32 MC10EP32
Text: MC10EP32, MC100EP32 3.3V / 5V ECL B2 Divider Description • 350 ps Typical Propagation Delay • Maximum Frequency > 4 GHz Typical Figure 3 • PECL Mode Operating Range: • MARKING DIAGRAMS* 8 8 1 SOIC−8 D SUFFIX CASE 751 1 8 8 1 VCC = 3.0 V to 5.5 V with VEE = 0 V
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MC10EP32,
MC100EP32
KEP32
HEP32
506AA
MC100
MC10EP32/D
KEP32
HEP32
HP32
MC100EP32
MC10EP32
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KEP32
Abstract: HEP32 HP32 MC100EP32 MC10EP32
Text: MC10EP32, MC100EP32 3.3V / 5V ECL B2 Divider Description Features • 350 ps Typical Propagation Delay • Maximum Frequency > 4 GHz Typical Figure 3 • PECL Mode Operating Range: • http://onsemi.com MARKING DIAGRAMS* 8 8 1 SOIC−8 D SUFFIX CASE 751
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PDF
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MC10EP32,
MC100EP32
KEP32
HEP32
506AA
MC100
MC10EP32/D
KEP32
HEP32
HP32
MC100EP32
MC10EP32
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HEL16
Abstract: DEVICE MARKING CODE table onsemi marking marking code onsemi marking code onsemi Diode kel33 on semiconductor traceability marking soic HEL32 HEL12 HEL31 HEL05
Text: AND8002/D ECLinPS, ECLinPS Lite, ECLinPS Plus, ECLinPS MAX, and GigaComm Marking and Ordering Information Guide http://onsemi.com APPLICATION NOTE Prepared by: Paul Shockman ON Semiconductor HFPD Applications Engineer Introduction This application note describes the device markings and
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PDF
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AND8002/D
HEL16
DEVICE MARKING CODE table
onsemi marking
marking code onsemi
marking code onsemi Diode
kel33
on semiconductor traceability marking soic
HEL32
HEL12 HEL31
HEL05
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KEP32
Abstract: MC100EP32DTG HEP32 HP32 MC100EP32 MC10EP32
Text: MC10EP32, MC100EP32 3.3V / 5V ECL B2 Divider Description • 350 ps Typical Propagation Delay • Maximum Frequency > 4 GHz Typical Figure 3 • PECL Mode Operating Range: • MARKING DIAGRAMS* 8 8 1 SOIC−8 D SUFFIX CASE 751 1 8 8 1 VCC = 3.0 V to 5.5 V with VEE = 0 V
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MC10EP32,
MC100EP32
KEP32
HEP32
506AA
MC100
MC10EP32/D
KEP32
MC100EP32DTG
HEP32
HP32
MC100EP32
MC10EP32
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KEP32
Abstract: HEP32 HP32 MC100 MC100EP32 MC10EP32
Text: MC10EP32, MC100EP32 3.3V / 5V ECL B2 Divider The MC10/100EP32 is an integrated B2 divider with differential CLK inputs. The VBB pin, an internally generated voltage supply, is available to this device only. For single−ended input conditions, the unused differential input is connected to VBB as a switching reference voltage.
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MC10EP32,
MC100EP32
MC10/100EP32
MC10EP32/D
KEP32
HEP32
HP32
MC100
MC100EP32
MC10EP32
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KEP32
Abstract: HEP32 HP32 MC100 MC100EP32 MC10EP32 100EP32 power transistor 3055
Text: MC10EP32, MC100EP32 3.3V / 5VĄECL B2 Divider The MC10/100EP32 is an integrated B2 divider with differential CLK inputs. The VBB pin, an internally generated voltage supply, is available to this device only. For single–ended input conditions, the unused
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PDF
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MC10EP32,
MC100EP32
MC10/100EP32
r14525
MC10EP32/D
KEP32
HEP32
HP32
MC100
MC100EP32
MC10EP32
100EP32
power transistor 3055
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KEP32
Abstract: MC100EP32 MC10EP32 HEP32 HP32 MC100
Text: MC10EP32, MC100EP32 3.3V / 5VĄECL B2 Divider The MC10/100EP32 is an integrated B2 divider with differential CLK inputs. The VBB pin, an internally generated voltage supply, is available to this device only. For single–ended input conditions, the unused
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Original
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PDF
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MC10EP32,
MC100EP32
MC10/100EP32
r14525
MC10EP32/D
KEP32
MC100EP32
MC10EP32
HEP32
HP32
MC100
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